查看完整版本: 生命之花与史前能量(原创翻译)

Shrewd 2006-2-26 09:15

生命之花与史前能量(原创翻译)

来源:Robotech Unofficial 2060
翻译:Shrewd; 校改:moontree

   命运如同风中之沙,掠过大地。转眼五十年逝去,史前能量已牢牢的和人类的命运纠结在一起,尽管如此,它的真相却依然难以分辨。史前能量的本质,可以提炼出史前能量的那种植物,还有与这种植物共生的生命,所有这一切,都被笼罩在重重疑云中,充满了虚构、幻想和彻头彻尾的谎言。
   本文的目的就是为了驱散笼罩其上的疑云。我将试图去解释,哪怕仅仅是在有限的几个方面,史前能量、因维人和生命之花之间复杂的关系。虽然,他们之间那些极度复杂的内在联系使我很难将他们割裂开来个别讨论,事实上,在说起其中任何一个的时候我很难不提及其他。但是,我还是会努力将他们一个一个的介绍给你们。下面,我就从生命之花的生命循环说起。

I 生命之花

   生命之花原产于奥普特拉(Optera)星球。这是围绕着G2Z级恒星祖普特姆(Tzuptum)旋转的一个潮湿的沼泽星球,星球表面覆盖着浓密的大气。生命之花是原产于该行星的最大的开花植物群落之一,它们能在一定条件下使周围环境中的少量原子发生核聚变反应,因此被称为聚变植物。由于机器人统治者在奥普特拉星球全境喷洒了落叶剂,毁灭了星球的植被,所以现在我们只能从佐尔·戴瑞达保存的少量样本中去了解这个世界上其他植物的信息,这些样本是在泰洛人对这个行星的早期考察活动中取得的。正是由于缺少对星球上其它植物的了解,今天我们已无从知道,生命之花这种特殊的能力(诱发核聚变)的起源,它所服务的生物目的,以及它所面临的生物选择的压力,所有这些都成为了永远无法回答的问题。也许,打碎坚硬的种子壳并不是促使生命之花的祖先演化出这种特殊能力的诱因,那可能只是生命演化道路上一个偶然的收获,不然,普通的化学反应已经足以满足打碎果壳的需要。目前,科学界对于这个问题还没有一致的看法,我也不准备在这里深入讨论下去。
   虽然对于生命之花的祖先,以及与它在亲缘关系上较为接近的那些植物我们所知甚少,但是对于生命之花本身我们还是有了相当的了解。生命之花的成长分为几个阶段。它的生命形式始于孢子。孢子有一个伞状的蓬,借助风或水流的力量传播。孢子实质上是一个已分化的微型细胞块,一旦找到合适的土壤就可扎根。虽然大部分的孢子最终未能成活,但是剩下的那一些可以在相当大的土壤和湿度范围内存活,沼泽地当然是这种植物最佳的生存环境,但是在气候温和的地区,只要有适量的雨水和潮湿的土壤,生命之花也可以继续成长。
   一旦孢子在土中扎根——类似蒲公英,生命之花就开始生长,绿叶从分支成无数纤维状的中心茎状部分萌发出来。当然它也可以生长在水中,这种情况下的成长方式更加类似于莲花。生命之花成长所需的养料和能量来源于光合作用。这种植物在可见光的照耀下生长最佳。这可以解释为什么它能在地球生长良好,而在温度较低的红色恒星照耀下的行星中生长不佳,高温的蓝色恒星释放的大量紫外辐射同样不利于生命之花的成长。
   像上面提到的那样,生命之花的形态与它生长的环境有关。在水中,它会变成“浮子”,有特殊的根部和宽大平坦的叶子来保持植物呈漂浮状态。成熟之后生命之花会发展出螺旋状花絮的藤蔓,高出水面3-5米,依赖深入水中的根系以保持植株竖直。在土壤中,这种植物会长出丝状茎包围住厚而软的树干。生命之花的成长过程并不是一成不变的,干燥的气候有时会导致水面干涸,或者原生于水中的植株被移植到陆地上,它的形状就会很快变得像是一开始就生长在陆地上面一样。相比之下,原先生长在陆上的植株被水淹没之后适应新的环境的能力有限,唯一的变化就是在水面以下的枝干处生长出特殊的水生根系。
   在土壤或水中经过一年的成长以后,粉白相间的花朵就会在枝头盛开(三朵花一组的花序本来就是奥普特拉星球上最常见的一种,尤其是后来经过佐尔·戴瑞达的选育,几乎成为生命之花唯一的一种开花形态)。每朵花都有众多的雄蕊(通常是5~10株),生长于花的基部或花瓣外沿,花瓣内是一株雌蕊。生命之花不能自花授粉,也就是说雄蕊不能给同一植株上的雌蕊授粉。花粉的传播是依赖一种与生命之花共生的生物,在奥普特拉星球上,这种生命就是因维人。雄蕊本身很容易缠绕在其他东西上面,在温血生物接近的时候,雄蕊就会附着上去喷射出花粉。雌蕊对授粉过程没有任何影响,她要做的只是等待授粉者带来花粉,授粉者释放的信息素会最终把雌蕊激活。
   授粉作用完成以后,雌蕊就开始膨胀,花瓣和雄蕊则会死亡并从花苞上脱落。一个肉质果子开始在雌蕊周围形成,而雌蕊本身会长成具有厚厚外壳的种子。慢慢的果实凋落,或是被从植株上摘下,为奥普特拉星球的众多生物所食用。这些生物,包扩因维人在内,大多具有强大磨损能力的胃,所以包裹种子的外壳十分坚硬,以保护种子即使在最强大的消化器官中也不会遭到破坏。
   食用果实的动物最后会把种子排泄出体外。这时,生命之花最奇特的性质开始表现出来。种子的外壳十分坚硬,动物的消化作用仅能在一定程度上削弱它的强度,如果不经过特殊的处理,种子依然不能萌发。生命之花的种子多孔渗水,可以从环境中过滤无机矿物,种子在成长过程中就已经开始积蓄锂、硼元素,还有稀少的氢的同位素如氘,氚。为了使已经弱化的种子外壳破裂,种子中某种已分化的细胞器官,以存储和过滤的元素为原料引发了核聚变(详细过程将在下面介绍)。这个过程释放的热能将使种子的外皮脆化到足以破裂的程度。这种“有机聚变“过程是生命之花种子外壳破裂的主要途径,尽管如此,这个过程也不能保证一定可以击破种子的外壳。如果没有动物消化作用的帮助,至少有四分之一的种子不能萌发,而在消化作用的帮助下,大约只有十分之一的种子不能萌发。
   种子一旦萌发,它就会发展出一个专门用来产生孢子的亚器官,因而被称为孢子发生器(sporofer)。经过三个月的成长,它长成一个高大的喷射器,顶部类似退化的花朵。它会喷射出大量的孢子,然后死亡。孢子在空气中飘荡,遇到合适的条件就会生根发芽,新的循环过程于是又开始了。
   水中的生命之花经过几个季节的结实之后还能存活几十年,然后死亡。而在陆上,它可长成顶端有叶子组成的球状的叶子丛。陆上的生命之花大约可以在五十年中开花结果,之此之后它还可以继续生存数十年,但是即不能开花也不能结果。
   人工培植的生命之花通常会因为种植者的原因而将各个生长阶段隔离开来,然而在自然界中,处于不同生长阶段的生命之花也可以生长在一起,你可以在同一处找到植株、花朵、果实、花粉、孢子和孢子发生器。第二次宇宙大战晚期,佐尔的克隆体和南十字军第15小队在SDF-1的主反射炉的残骸里看到的就是这种情况。

II 史前能量

   在佐尔·戴瑞达发现生命之花后,种子如何令外壳破裂的独特机理引起了佐尔极大的兴趣。他决定将这个发现付诸于实用。实际上,在泰洛语中,“史前能量”和“机器人技术“从字面上来看就是“佐尔的发现”和“佐尔的科学”。而在奥普特拉语中,因维人给它的名字,则意为简单的“能量”。英语中的名称则是从泰洛语中对未处理过的生命之花种子的称呼直译而来的,这类种子是隐藏在SDF-1内部的宝藏中最总要的一种。
   史前能量是指从生命之花的种子中提取能量的过程。在这个过程中,通过增加压力阻止种子萌发,富含锂和氘的溶液渗透到种子和周围的环境中,其中的微量元素发生冷核聚变,释放出能量。在自然条件下,这个反应的强度受到反应所需的同位素丰度的限制,但在人工环境中,可以依据所需的能量产生速率来制备溶液,浓度可以相当的高。在种子细胞特定的分化组织中有一类特殊的蛋白质长链,通常被称为聚变序列,它可以结合必须的反应物,扭曲成紧密的一束,从而把锂-6原子核和氘原子核挤压到足够紧密发生聚变的程度。这些原子核属于波色子(自旋是普朗克常数的整数倍),因而可以被紧密挤压在一起,不受泡利不相容原理的影响。原子核之间的库伦斥力于是成为发生核聚变的唯一阻碍。
   (译者注:这段解释不必太当真了,前面关于生命之花的成长过程我不知道是否有什么明显的植物学上的漏洞,但是这里,分子之间的范德瓦尔斯力可以强大到超过核间的库伦斥力的确是一件匪夷所思的事情。作者本身是rice的天体物理博士,按理不该存有这样的想法。事实上,冷核聚变并非完全不可能的事情,利用超声波轰击氘氚混合溶液(加料的重水),理论上可以引发低温核聚变,超声波会在溶液中形成气泡,气泡长大,破裂的瞬间可以产生百万甚至千万度的高温,几年前science曾经冒失的发表过一篇此类文章,由于实验结果未能得到重复,science杂志和文章作者的声誉都受到了很大的影响。但是,一般物理学研究人员都还是承认这条道路在理论上是可行的。自然界中能够发出超声波的生物不少,完全可以设想生命之花也具有类似的能力)。
   这种溶液同时也含一些有利于种子存活的营养物质,它的正式名称是史前能量基质。但是,由于经常被简单的称为史前能量,从而产生一个普遍的误解,虽然史前能量本质上是指一个能量释放的过程,但是常常被误认为是一种供给机甲和反应堆需要的燃料。根据实用中对能量释放形式的不同需求,史前能量基质可以进行必要的调整。在生物活性处于停滞状态的情况下,生命之花种子/史前能量基质这一相互作用体系逐渐释放出它们储存的能量,锂-氘溶液浓度越高,能量释放的速度越快。为了维持一个稳定的能量输出,溶液的浓度和压强需要保持在适度的水平上 。大部分的民用和舰/船用史前能量反应堆都是在这样的条件下工作的。在理想的状态下,由于种子强大的自我修复能力,只要向溶液中持续补充反应原料和营养物质,发动机几乎可以无限制的输出能量。然而,在聚变反应中会产生碳原子和其他反应废料,这些物质会结合在一起形成简单的有机分子,并且同种子结合在一起,无法滤出。从而使得种子可以获得足够的营养,打破逐渐受到削弱的种子外壳而萌发。发芽的孢子产生器将不再消耗史前能量基质,能量的释放就此停止。机器人统治者实际上把生命之花当成了寄生植物,由于缺少因维人给在反应堆的新长出来的生命之花授粉(或者对机器人统治者种植的生命之花来说,缺少另一种信息素使生命之花授粉),这样长出来的新一代生命之花不能结果,也就无法用来产生能量。
   另一方面,某些应用场合要求发动机在短时间内释放出大量的能量。所以需要极高浓度的史前能量基质,而且种子必须被置于高压之下。史前能量电池就是在这种条件下工作的,它特别适用于需要尽可能减少发动机体积的场合,尽管工作的时间有限。与反应堆中的工作环境不同,电池中高浓度的基质和极高的压力大大的提高了能量释放的速率,但是也使得种子丧失了发芽的能力。等到电池中的大部分史前能量基质耗尽的时候,包含在电池中的种子也死了。
   无论在上述的哪一种情况下,聚变反应中产生的能量都是通过高能粒子的形式释放出来,这些粒子随后被种子吸收,产生热量。通过强导热体将能量从种子传输到热电偶处,从而将热能转变为电能。从反应堆中排出的余热几乎是这一过程中唯一的副产物。由于泰洛人的材料科学的进步,发明了一种工作效率非常接近于热力学效率极限的热电偶,从而使反应余热降到最小。包括因维人在内,每一个使用史前能量的种族都采用了这项技术。
   在反应堆工作模式下,能量释放的速率相对缓慢,史前能量基质必须时常排出反应堆进行过滤,排出反应废料,并补充聚变反应必需的反应原料--锂和重水。反应堆从而可以持续工作数十年之久,直到种子自然破裂开始长出孢子发生器。而在电池中,生命之花的种子一般会在剧烈的能量释放过程中被杀死,所以电池中的基质通常被有意制备成相当高的浓度,使得种子死亡时电池里的史前能量基质几乎全部耗尽。
   关于史前能量过程,这里还要提到另外一点。聚变反应本身,还有它释放的高能粒子,对于种子的细胞结构都是相当有害的。为了保护种子的活性,生命之花在种子阶段发展出了强大的自我修复机制,可以补偿能量释放过程中对种子细胞造成的破坏。在这个机制中,或者说至少在生命之花的人工应用中最重要的一个部分,是泰洛人命名的一种名为“zhailoni”的酶系物质(地球人称为zylonases)。这些酶可以大大加快蛋白质构建的速度,从而加速受损细胞的修复,没有这种酶的帮助,许多对细胞的伤害本该是致命的。然而,史前能量发生器中极端的工作条件(尤其是在史前能量电池中)会最终产生超出细胞自我修复能力的伤害,造成种子的死亡。

III 史前能量的工业应用

   (作者注:在上一章里,我们已经指出,“史前能量“这个词的真正含义是一种能量产生的过程。生命之花种子细胞中的一类特殊的蛋白链,可以在常温下将锂,氘原子核捆绑在一起,使他们接近到足以发生核聚变反应的程度,在此过程中释放的能量源于原子核的结合能。以下,为了行文方便,我们也使用“史前能量“这个词指代这个过程中放出的能量,需要强调的是,这种能量本身并不神秘,本质上与氢弹的能量来源没有区别,真正值得注意的是,这种能量产生的过程,这个过程才是“史前能量“的真实含义。)

A.电池和反应堆

   在上文中,我们已经提到了两种最基本的提取史前能量的方法。在地球历大约十四世纪中叶的时候,为了商业和军事应用的目的,泰洛人发展出了这两种方法,以绝对意义上最小的发动机质量和体积,以及最少的燃料消耗,提供了人们从来也不敢想象的强大动力。从那时起,尽管电池与反应堆的各项技术都有所发展,但是基本的工作原理却一直沿袭了下来。就电池而言,它的开发一直严格遵循着既定的工业标准,技术上的改进仅仅围绕着加快能量输出速率和提高能量储存能力这两个方面进行,从而避免了新型号的电池与旧的引擎设计之间的匹配问题。
   从军事观点上看,史前能量电池是诸多军事发明中最重要的一种。它使得装备强力推进器与射线枪的战斗机械得到了前所未有的应用。这不仅仅是因为电池带来的强大动力,也是因为它在极大程度上减轻了传统发动机带来的巨大重量。泰洛人在几乎所有的天顶星战斗机械中使用了这种电池(除了大型舰船和侦察工具)。他们把天顶星人/机甲当成了廉价的炮灰,因而采用电池的设计可以大大降低成本,同时也确保了天顶星人对机器人统治者的依赖性(补充史前能量电池)。比如对于那些“佐尔的追随者“(由被文化感染的天顶星部队与西沃尼亚独立武装组成的联军,参见“泰洛的历史与文化“一文),为他们的机甲补充能量始终是联军的大问题。联军的许多军事行动并没有很深刻的战略意义,仅仅是为了夺取机器人统治者储备的史前能量电池。
   另一方面,因维人在失去了生命之花以后,在许多世纪里不能自己补充能量。同“佐尔的追随者”一样,因维人也依靠掠夺机器人统治者的史前能量储备来为他们的军队提供补给。他们根据泰洛人的标准电池来设计他们的早期机甲。甚至在他们占领地球之后,因维人依然继续生产这类电池,为他们的旧机甲提供能量。只有最新式的加莫(GAMO)和戈苏(GOSU)型前线机甲采用了反应堆供能的设计。
   尽管电池在军事上有着相当重要的用途,但是它们很少被用于建造太空船和其他空间设施,以及各种昂贵的机甲,同样也很少用在民用设备之上。泰洛人在这些场合设计使用了各种不同大小和输出速率的反应堆,供应国内市场,也出口到殖民地和其他有此需要的异族星球。在这些反应堆中,最大的型号可以用来驱动泰洛母舰和天顶星旗舰,最小号的则是为了给机器人统治者的生化人机甲提供动力,地球人的第一代史前能量驱动机甲瓦格雷变形机和歼击机器人也使用了反应堆供能的设计。
   泰洛平民同样使用反应堆为他们的城市供能,尽管在一些小的殖民地有时还会使用电池供能,但是一旦殖民地成长到足以维持永久性的供能设施,电池就会被反应堆取代。实际上,只是在第二次宇宙大战爆发的前夕,地球上才开始出现新的电池应用的潮流,电池开始被用于个人交通工具,以及为村庄供能。同样的变化也开始发生在泰洛和其他哨兵联邦的星球上。

B. 关于长生、克隆和巨人的战争

   史前文明的发现提供了一种近乎无限的能源供应,它清洁,高效,同时又很轻便,这个发现极大的改变了泰洛文化。同时,还有另外一个发现在重塑泰洛文化过程中发挥了同等重要的作用,这个发现促成了zylonase族酶的大规模生物应用。
   这些酶可以很容易的从史前能量反应堆的基质中提取出来,它们首先被用在延长寿命的疗程中。经过简单的改性,使这些原先作用于生命之花种子细胞染色体的酶可以作用于泰洛人类细胞染色体,然后就可以被注入人体,它可以有效地在细胞水平上修复损伤,不仅可以防止各种退化疾病和癌症,也可防止细胞衰老。由于体内免疫系统会逐渐杀死这种外来的酶,治疗必须重复进行以维持这种抗衰老作用。
   在早期的泰洛帝国,能否接受这种疗法完全取决于人的地位。赤贫的人、以及农村和城市里的工人,除非遇到了最严重的疾病,会被完全排斥在这种疗法之外,而且根本没有机会把寿命延长到超过自然限制,只能保持相对的健康直到死亡。一般的城市平民要稍微幸运一些,他们可以把生命延长半个世纪或者更多一点。而最富有的人可以接受那种专门提供给贵族的疗法,延长寿命两倍,甚至三倍。只有机器人长老和机器人首领,以及他们在泰洛母舰上为自己创造的社会中的精英分子可以接受永生的疗法。这种社会独占性部分来源于等级壁垒,另一方面也是因为经济上的问题——Zylonase酶在史前能量基质中的含量极少,因而极为昂贵,除了战略需要之外,因而只有那些最富有的和最强大的人能够得到它们。
   佐尔发现了Zylonase酶的另一种用途:克隆和躯体重塑。泰洛人在很早之前就发展了一类生物技术,使用可降解的塑料骨架构建人体的结构,然后加入各种已分化的细胞,由此来制造各类人造器官和肢体。新生成的细胞会慢慢取代塑料骨架,人造器官和肢体即可完全成型。然而,这个过程相当缓慢,只在医疗上具有有限的用途。随着Zylonase酶被从史前能量基质中提取出来,这个躯体重建的过程被加快到了令人目眩的速度,而且更为重要的是,它还被用于创造全新的生命。
   通过与泰洛基因工程专家的合作,机器人长老获得了创造一个以他们为中心的克隆社会的能力,它们创造出了一个符合他们僵化的理想模式,由众多三人组构成的社会,三人组的成员之间没有差别,他们之间只存在着有限的情感联系。
   不过,史前能量克隆技术的成功更多的体现在天顶星人的创生之上。这是一个巨人战士种族。在帝国的全部历史中,共有几千亿个天顶星人被制造了出来。天顶星人的制造不仅基于改造过的塑料骨架,而且使用了改造的DNA序列。一段决定他们巨大身材的DNA被嫁接到人类这种“低等“生物的DNA序列中。Zylonase酶不仅使得创造这些歌力亚(巨人)成为可能,而且允许对天顶星人进行微缩化,在几个小时之内为天顶星人创造一个新的类似人类大小的躯体,并且把旧躯体的意识输入到新的大脑中去。事实上,因维女王雷金斯似乎也使用这项技术,以更先进的方式创造出了人类形态的因维战士。

C. 孢子——新的灾难

   生命之花还有一种比较新的,而且比较负面的应用。生命之花孢子的伞状部分存在一类化学物质,可以通过消化道和粘膜被人体吸收。这种物质在街头被没什么想象力的称作“孢子“,它与生命之花果实里的一种化学物质相当的类似,但是对人体的毒性要小的多。实际上,这种物质是一种药效很强而且易成瘾的迷幻剂,对于那种宣称摄取或者吸入这种物质会带来超常的预见能力的说法我们有理由表示怀疑。这种物质最早是被有些无意中吸入了浑有干孢子的粉尘的人发现的,有些人记录下了之后偶然的迷幻反应,其中一些别有用心的人开始提取并浓缩这种物质用于非法买卖。
   相对来说,对于意图利用生命之花的果实做类似的事情则不太令人担心,毕竟果实中类似的物质含有剧毒。另一方面。雌蕊中也含有类似的物质。但是它的作用太弱,甚至不能引起兴奋。尽管长期使用此类物质的效果还不清楚,但是拥有雌蕊是合法的。印度和欧洲的几家公司近来开始出售由雌蕊制成的熏香。

IV 因维人

   因维人是自然界中与生命之花共生的生物,他们与生命之花从始至终,一直密不可分,他们的生存所需全部都来自于这种植物。
   首先,因维人是生命之花的自然授粉者,同时也是果实的主要消费者(因此也为生命之花传播了种子)。因维“工蜂“(不育的雌性因维人)在花丛中活动,生命之花探出的雄蕊很容易缠在他们身上。而为了防止他们敏感柔软的身体变干,因维人的表皮会分泌出一种粘液,雄蕊上的花粉于是依靠这种粘液附着在授粉者的皮肤上。这些花粉随后会被授粉者带给别的植株。在授粉过程中,授粉者的作用还不尽于此,他们生殖管道中的腺体能够分泌出一种信息素,只有这种物质可以激活生命之花的雌蕊,从而完成授粉过程。另外,生命之花的果实也是因维人的一种食物,因维人的消化活动有助于种子外壳的磨损,同时也将种子在星球上广泛传播。总体上说,因维人同蜜蜂很相似,他们保护生命之花,也依靠生命之花为生,双方都从这个过程中受益。
   作为给生命之花授粉的回报,因维人也从生命之花中获得养料。这是一种水和浆的混合物,因维人从幼龄植株的叶子,以及成熟的或者不育的陆生植株中获得这种纤维。因维授粉者采集这些纤维,与水混和,然后在它们的胃中混合成纤维浆。这些纤维浆随后被反刍到公共的储存装置中,在那里所有种类的因维人(除了女王)通过它们的皮肤和狭窄的肠道吸收这些物质。而具有强大繁殖能力的女王则得到了特殊的待遇,部分纤维浆被储存到巢内一个特殊的“浴盆“中,女王浸泡在其中吸取养分。
   因维人同样也会从果实中吸收致幻性的物质,和前面提到的孢子中类似的残余物不同,果实中的这类物质对大多非奥普特拉生命有着致命的毒性。这种物质对于因维人的成长有着重要的影响。因维“雄蜂“会把果实制成凝胶状的果冻,用来哺育年幼的因维个体。个体的发育依赖于他食用的果冻,被预先决定好发育形态的每一类个体都被喂以特定的果冻。只有因维“战士“是一类例外,当个体一直没有果冻吃的时候,他们就会发育成攻击性的战士。通常情况下,这是由于生命之花果实供给不足造成的。而事实上,由于泰洛人在奥普特拉全境喷洒了落叶剂,使得许多代的因维人几乎全是这种这种大型的、低智力的、富有攻击性的战士,只有少量的工蜂“,“雄蜂“和高等因维人生存了下来。因维研究者也声称生命之花的果实对他们的精神世界有着极为重要的作用,当然关于食用这种果实带来的超自然能力的说法也需要小心对待。

V 有关生命之花的种族

   到目前为止,几次宇宙大战(也可以称为历次“生命之花战争“)的历史大体上已经清楚了。然而,在战争中依然有许多与生命之花有关的细节吸引着我们却探寻历史背后的真相。在这一章里,我们将集中讨论这些少为人知的细节,如果提到了一些已经熟知的材料,目的也是为了给陈述这些事实做铺垫。
   公元1343年,佐尔·戴瑞达发现了生命之花,揭示了它的奇特性质。他把一些生命之花的植株带回了泰洛,开始准备长篇的神秘材料以便申请专利。然而,佐尔是一个雄心勃勃的青年,所以他在这些材料中隐瞒了一些重要的信息。比如:尽管他提到了人工授粉的必要性,但是却没有把授粉之前的必须的化学激活作用写在报告之中。事实上,佐尔已经意识到把因维人引进到泰洛上来是行不通的,也是不道德的,所以他开始另外的努力,试图把负责信息素的基因拼合到Cha-Cha的身上,这是西沃尼亚星球上一种驯化的生物,是当时泰洛帝国里流行的一种宠物,佐尔试图把上述基因结合到Cha-Cha的已经退化的防御性的气味腺上。可惜,这个天才的想法直到太空堡垒远征军从因维人手中解放了泰洛之后才得以实现。部分的原因在于将因维人的基因移植到Cha-Cha身上要比佐尔设想的难得多。因为Cha-Cha的祖先是一种小型肉食动物而不是植物授粉生物。另一方面,也是因为这时的佐尔已经把注意力转移到了其他方面。
   从现在掌握的资料来看,在确信他在新技术项目上的收益得到保证之前,佐尔一直保守着项目最核心的机密。在用基因技术改造Cha-Cha的同时(后来人们终于明白佐尔改造它的目的是为了创造一种给生命之花授粉的生物),佐尔也发展出(或者培育出——因为不清楚它是不是奥普特拉星球上本已存在的一种生命之花变种)。这种生命之花无论授粉与否都可以长出种子,而且尽管这些新的种子无法发育成孢子发生器,却依然可以提供能量。佐尔还进一步改造这种无孢子变种,使它们只能接受一种新的信息素的刺激,所以无论是因维人也好,还是他正在发展的新的授粉生物,都无法给这种生命之花授粉。佐尔最后交给机器人统治者,并在整个帝国内部被广泛培育的就是这一类生命之花。这个秘密被掌握在佐尔一个人手里,他用笔记中用密语写道:“我比任何人都要深入的研究生命之花,但是小心驶的万年船,现在我使这些秘密成了我的一部分,而我同时也是这个秘密的一部分。”
   后来,从生命之花种子中提取的Zylonase酶被大量的用以制造天顶星人,机器人长老更进一步的使用这些天顶星人来推翻泰洛共和国。佐尔开始发现他陷入了泥沼之中。然而,很快他就从个人的负疚感中解脱了出来,尽管一开始他只是为了个人的经济利益而隐瞒了一些发现,但是现在他却暗自庆幸做出了这样的决定。在接到去其他帝国殖民星球播种生命之花的命令之后(生命之花在泰洛星上由于瓦利瓦恒星光谱中的紫外线部分过强而生长不良),佐尔服从了,但他使用的是他发现的不育的变种。这一决定在他得知天顶星人在机器人长老的命令下在奥普特拉全境喷洒了落叶剂,导致因维人对帝国展开复仇行动之后变得的更加坚决。机器人长老并没有意识到佐尔的阳奉阴违,错误的把生命之花不育的原因归于水土不服,佐尔为了自己的利益也有意识的助长了他们的错觉。
   尽管真正有繁殖力的种子从未被送回奥普特拉星球,或者说从没有离开过佐尔之手。但是那些较少繁殖力的种子在几个世纪中一直是帝国主要的能量来源。佐尔也凭借他可以使生命之花在外星球的“恶劣“条件下繁殖这一独特的‘秘诀’同机器人统治者讨价还价。同时,佐尔的决定也影响到了因维人,尽管他们不能给这些生命之花的变种授粉,但是如果他们占领了种有生命之花的星球,他们至少可以在许多年里从那些植物中取得必要的食物和能量。
   佐尔保留了两样东西作为他的王牌,第一是授粉者——佐尔在地球历20世纪早期重新开始了这方面的工作,并在他死前不久得以完成,另一章王牌就是原始的未改性的植株。佐尔一直为自己的发明感到自责,他认为自己的发明直接间接的带来了太多的战争,直接的有和因维人的战争,间接的但是更严重的是在两派天顶星人之间的战争,一方忠于机器人统治者,另一方则受到了西瓦星球上原泰洛殖民者后裔的感染。佐尔因此决定将最后一批真正有繁殖能力的生命之花装载到太空堡垒的反射引擎中,他曾经驾驶着这艘飞船执行播种生命之花的使命。佐尔把堡垒射向太空,希望把它送到地球上去。从前,通过对海顿四号星球上的纪录的研究,佐尔相信地球是他们种族起源的星球,拥有比泰洛更加先进的文明。佐尔认为那里的居民应该会比他的同胞更好地利用他的发现。然而,历史表明,佐尔不幸的搞错了。
   佐尔死后,机器人统治者确证了他将最后一批有繁殖力的生命之花装在太空堡垒上送到了外星世界去,于是他们急忙部署天顶星人舰队进行搜索。在天顶星人失败之后,机器人统治者放弃了他们日益衰落的帝国,踏上了寻找地球的征途,目的就是那批佐尔的宝藏。
   然而关于生命之花的研究并没有结束。在因维人出兵侵入泰洛的首都时候,一个泰洛科学家卡贝尔,已经快要解开了佐尔长期保守的秘密。卡贝尔出身于元老贵族,三百年前,他曾经在佐尔的指导下工作过。他最终发现了佐尔在明知这些授粉者对于广泛种植的生命之花并没有什么用处的情况下,依然在实验室里饲养他们的真正目的。明白了这一点之后,同时又受到兰博士那不合常理的想法的启发,卡贝尔开始破译佐尔创造的新信息素的遗传密码,并把他们嫁接到新一代的授粉者身上。这一发现使得以前不育的“无孢子”变种在没有佐尔的“魔法”的情况下也能繁殖(注:佐尔的“魔法“指生产“无孢子”生命之花变种种子的方法,由于这一类生命之花在缺少新的信息素刺激的情况下仅能产出无繁殖力的种子,所以佐尔使用了一类特殊的方法,定期向机器人统治者提供一些新的种子在其他星球上种植,以确保史前能量的供给。),因而带来了机器人技术的复兴。泰洛人,远征的地球人,还有哨兵联盟中的其他种族依靠复兴的机器人技术轻松的击败了已经用尽史前能量的因维王雷金特的军队。由于太空堡垒远征军使用的生命之花是由佐尔培育的变种,因此产生了“第二代史前能量“这个词,特指从变种生命之花种子里获取的史前能量,用以区别利用佐尔送到地球的未成熟植株开发的“第一代史前能量”。这两类生命之花并没有太大的区别,只是泰洛变种需要一种新的信息素以完成授粉过程,同时在未授粉的情况下泰洛变种依然可以长出不育的种子,但是这两类生命之花不能杂交,因为如此产生的后代将会需要一种全新的信息素。

(编者注:本文仅供参考用,本文完成于官方年表出台之前,若年月与官方年表不符,以官方年表为准。本文所用“公元”,皆为地球公元。)

Shrewd 2006-3-20 21:10

这是原文,忘记贴上来了。

For the enormity of its importance to our lives and economies, and for the shifting sands of fate it has blown across the surface of Earth for the last half-century, Protoculture is one of the most poorly-understood subjects one can broach. The lore of Protoculture, the plant it derived from, and the race that lived in symbiosis with that plant, is rife with myths, fancy, and outright untruths. It is the intent of this article to dispel some of these notions, and to explain - if only in a limited way - the complexities of Protoculture, the Invid, and the Flower of Life.
The extremity of the inter-relationship between these three topics makes it difficult to compartmentalize them for discussion, as none can truly be mentioned without reference to the others. However, I endeavor to do just that, beginning with the life-cycle of the Flower of Life itself.
I. The Flower of Life
The Flower of Life is a plant indigenous to Optera; a swampy, wet world with a thick atmosphere that orbits the G2V star Tzuptum. It is one of a large order of flowering plants formerly indigenous to the planet, designated fusiera, so named because their ability to cause trace atoms in their environment to undergo nuclear fusion, under limited conditions. Because of the defoliation of the planet ordered by the Robotech Masters, the only information we have of the other plant life on the world comes from Zor Derelda's own limited samples, taken during the initial survey of this world by the Tirolians. Because of this, the reasons that such a strange trait would have originally evolved, the biological purpose it served, and the selection pressures that led to it will forever remain mere speculation. What is known is that application of this ability to crack the thick husk of seeds (see below) was probably not the original evolutionary purpose of this unique talent, but rather an opportunistic evolutionary pathway to use an existing trait for a new purpose - as a simple chemical reaction to shatter the husk would have sufficed. At this time, there is no scientific consensus on the subject, so I will not delve into it further here.

While little is known about the ancestral and related plants of the Flower of Life, this plant is reasonably well-understood. The Flower of Life a multi-staged organism, beginning its existence as a spore, carried by wind or water by a parasol-like sail. The spore is in fact a miniature clump of already-specialized cells, waiting to find fertile ground in which to take root. Most spores will not survive to grow, but those that do can thrive in a wide range of soils and humidities - though the plants thrive best in swampy terrain, but also do well in temperate climes with favorable rain and wet soil.
When the spore takes root in the ground, like a dandelion, or in water, where it grows more in the fashion of the lotus, the plant begins to grow. Thin green leaves sprout from a central stem which branches out into numerous fibrous limbs. The plant's energy and food supply comes from photosynthesis, and its photosynthetic organelles are almost identical to Earth's chloroplasts. The plant fares best in Tzuptum-like light, which explains the ability of the plant to survive so well on Earth when it does rather poorly on worlds lit by cooler red stars, or worlds with bluer suns with spectra rich in ultra-violet radiation.
As mentioned above, the plant's morphology depends upon the medium in which it grows. In water, the plant becomes a 'floater', with specialized roots and large flat leaves to keep the plant afloat. As it matures, the plant eventually becomes a tall spire of flower-studded vines, rising three to five meters above the water, with a root system that extends deep under the surface of the water to keep the plant upright. On ground, the plant develops fibrous stalks that center around a thick but soft trunk. The direction a plant takes once it sprouts from a spore is not completely fixed. If a plant that begins in water experiences drought conditions that cause its medium to dry up, or if it is taken from water and transplanted to land, it will soon begin to grow in a fashion identical to that it would have taken had it first taken root on land. A plant that grew on land, however, is limited in its ability to adapt to water should it get flooded - the only change in its growth is to develop specialized water-roots on those parts of the trunk and branches that lie underwater.

After a year of growth in either medium, the plant is ready to flower. Pink-and-white blooms begin to open up on numerous branches (the most common variety on Optera, and specifically bred by Zor himself, has flowers that grow in groups of three). Each flower has numerous stamens (usually five to ten) growing from the base of the flower and outside the petals, and a single pistil inside them. The plant is not self-pollinating; that is, the pollen from a flower's stamen can not fertilize a pistil on the same plant. Pollen is carried from plant to plant by a symbiotic species; in nature, the Invid serve in this capacity. The stamens themselves are prehensile, and are attracted to the approach of any warm-bodied organism, toward which they reach and upon which they rub their pollen. In addition to the need for another organism to carry the stamens' pollen, the pistil is non-responsive to pollination until it is activated by pheromones released by its symbiotic pollinator.
Once pollinated, the pistil begins to swell, and the petals and stamens die and drop away from the bud. A fleshy fruit begins to form around the pistil, which grows larger into a thick-husked seed. Eventually this fruit drops free or is picked off the plant, and is consumed by one of many Opteran organisms. The seed's husk is very hard, because many of the organisms that consumed it on Optera - including the Invid - have very abrasive gizzards, and the husk has evolved so as not to be destroyed by the digestive action of even the most robust of gullets.
Eventually the seed is defecated by the animal that consumed by the fruit. It is at this stage that the most unique property of the Flower of Life becomes apparent. The seed's husk is very thick, in fact, and the digestive abrasion of the animal that consumed it helps weaken it somewhat. Still, it can not sprout without special measures. The seed is porous, can leech in minerals from its environment, and is invested during its growth on the flower by a reservoir of lithium, boron, and the rare isotope of hydrogen - deuterium - as well. To crack the thick but weakened hull of the seed, specialized organelles in the cells inside the seed cause nuclear fusion (in a process described below) of these stored and leeched minerals to occur. The energy released from this process provides the necessary heat to make the husk sufficiently brittle for it to break. The "organic fusion" action is the main mechanism the seed uses to shatter itself, but even, the process is uncertain. Fully a quarter of seeds will fail to germinate unless abraded by an animal's gizzard; with such abrasion, only a tenth fail to open.
Once the fertile seed germinates, it forms a sub-organism whose sole reason for existence is to produce spores, hence its name sporofer. After about three months of growth, the sporofer has developed into a tall shoot with vestigial flower-like growths at its apex, releases numerous new spores into the air, and then dies. The spores travel through the air, eventually taking root and beginning the process over again.
In water, the main flowering organism lives several decades before it finally dies after several seasons of bearing fertile fruit. On land, however, the plant continues to grow into a thick tree with a spherical clump of leaves atop it. Eventually, after about fifty seasons, the land-plant becomes sterile and, though it can continue to live for decades afterwards, will never again produce flower nor fruit.
Though the stages of harvested plants are usually deliberately isolated by the harvesters, in nature all stages can exist in a single location - plant, flower, fruit, pollen, spore, and sporofer. This was indeed the case in the ruins of the SDF-1's main reflex furnace when it was visited by the clone of Zor and the 15th ATAC of the Southern Cross in the final hours of the Second Robotech War.
II. Protoculture
It was the unique mechanism the seed used to shatter its husk that intrigued Zor Derelda upon his discovery of the plant, and made him decide to harness this energy for practical use. Indeed, the Tiresian terms for 'Protoculture' (zorrlev're) and 'Robotechnology' (zorrlev'dri) mean, literally, 'Zor's discovery' and 'Zor's science'. The Invid name, opredti, simply means 'power'. The English term derives from a direct translation of the Tiresian term for an unprocessed crop of seeds of the Flower of Life, one of the chief prizes stored in the bowels of the SDF-1.

Protoculture is process by which energy is derived from the seeds of the Invid Flower of Life, when prevented by pressure from germinating. The energy is produced by a process of cold fusion of trace elements contained in a lithium- and deuterium-rich solution which permeates the seeds and their environs. In nature the strength of this reaction is limited by the natural abundances of the necessary isotopes, but in man-made situations, the solutions can be made far richer, depending upon the required rate of energy generation. A long and specialized protein chain (known as the fusor sequence) within specialized organelles in the seed's cells binds to the necessary reactants, and twists into a tight bundle which squeezes the lithium-6 and deuterium atoms into very close proximity. Being bosons (particles whose spins are an integer multiple of Planck's constant), the resultant atoms - compressed together - are not affected by the effective repulsion from the Pauli principle. Only the electrostatic barriers to fusion - the repulsion of the two positively-charged nuclei - need be overcome.
This solution, which also includes several seed-beneficent nutrients, is known as the Protoculture Matrix, but is often simply misnamed "Protoculture" - leading to the common and erroneous belief that Protoculture, in reality a process, is actually a substance that fuels mecha and generators. The Protoculture Matrix can be tailored to fit the intended application of the energy released in the "organic fusion" process. Maintained in bio-stasis, the seeds gradually surrender their stores of energy; the richer the lithium-deuterium solution, the quicker the depletion. For sustained energy, a moderately dilute solution and moderate pressure are needed. This is the basis for most civil and ship-board Protoculture generators. Ideally, because of the seed's enormous capacity for self-repair, this output could be maintained indefinitely so long as the needed reactants and nutrients in the solution are replenished. However, as the solution begins to accrue carbon and other waste elements from the fusion process, these waste materials bond together to form simple organic molecules, which build up in the seed itself and cannot be filtered out, allowing the seeds to receive nutrition sufficient to crack the slowly-weakened seed-husk and germinate. Thus, the sprouting sporofers of the Flower end up consuming the Matrix. The Masters actually considered the sporofers and the Flower parasitic - by consuming the Matrix, and without the Invid as pollinators to help fertilize the new growths that sprout in the containment vessels (or in the Masters' case, the ignorance of the need for the special pheromones to permit fertilization), the next generation of plants are effectively useless for the generation of energy.
On the other hand, some applications require a large amount of energy to be delivered in a short period of time. For this, an extremely rich solution of Matrix is required, and the seed must be held under extreme pressure. This approach is the basis of the Protoculture cell. This process is very effective for applications where the smallest possible generator is needed, though the cells only last a very short amount of time. Unlike the conditions in the more moderate generators, the furious pace of energy production by seeds in the rich Matrix and extreme pressure of a cell results in an inability for those self-same seeds to germinate. By the time most of the Matrix has been depleted, the seeds contained in the cell are dead.
In both cases, the energy of fusion is released in the form of energetic particles which are absorbed by the seed itself, causing the generation of heat. Useful energy is derived from these seeds by strong and efficient conduction of the heat from the seed to thermocouples, which convert the heat into electrical potentials and energy. Waste heat is shunted out of the generator and is virtually the only undesirable by-product of the Protoculture process. This is minimized because Tirolian materials technology was able to develop a thermocouple that operated at very close to the thermodynamical limit of efficiency - and this technology was adopted in full by every race that has ever used the seeds for energy, including the Invid themselves.
For the slow process of energy release by the generator method, the Matrix must be occasionally decanted and filtered of waste materials, and must be replenished by additional reactants for the fusion process. By careful filtering and replenishment of lithium and heavy water into the mix, the generator can last for many decades, until the seed cracks of its own accord and the sporofer begins to grow. As the seed inside a cell is expected to be killed by the energy-generation process, the Matrix inside a cell is made sufficiently rich in reactants that the cell's Matrix is almost depleted when the seed dies.
One other aspect of the Protoculture process requires mention at this point. The nature of fusion, and the energetic particles it releases, is such that it is very damaging to the structures of the cell in which it occurs. To combat this, and to preserve the seed's viability, the Flower of Life has evolved numerous self-repair mechanisms for the seed stage that compensate for the damage. Most important of these, at least for artificial applications, is a family of enzymes the Tirolians named "zhailoni" (designated on Earth "zylonases"). These enzymes are capable of dramatically increasing the rates of construction of proteins, accelerating the repair of damaged cells to such a degree that the cell will survive what would otherwise be lethal damage. However, extreme conditions (such as those in a power cell) can and will eventually cause damage that out-paces the seed's ability to repair itself, killing the seed.
III. Industrial Applications of Protoculture
A. Cells and Generators
The basic use of the Protoculture process in the two main modes of extracting usable energy are mentioned above. Both were developed by the Tirolians in the middle of our fourteenth century for commercial and military use, to provide as-yet undreamed-of levels of power for absolutely minimal mass, volume, and cost. Though technologies have improved upon both cell and generator since, the basic principles have remained the same, and in the case of the cell, the standards have been rigorously adhered to for all this time, increasing energy release rate and storage capacity without affecting backwards compatibility of the new cells with old engine designs.

The cell was the most important design from a military standpoint. It permitted a war machine to bristle with thrusters and beam guns to a degree greater than ever before, not only because of the increased power available to it, but also because much of the mass of more traditional generators could be eliminated. The Tirolians used the cell in all Zentraedi mecha (except the large shuttles and reconnaissance vehicles). Because Zentraedi mecha were considered expendable, this design feature allowed costs to be cut dramatically, but it also secured Zentraedi dependence on the Masters for a flow of Protoculture cells for their mecha - and with dependence came security from rebellion. Indeed, the need to power their mecha was a major problem for the "Disciples of Zor" (as the combined forces of culture-contaminated Zentraedi and their Ci'Vonian sponsors came to be called) and many of their military actions were simple raids on Protoculture cell storage facilities.
The Invid, on the other hand, were largely bereft of seeds of the Flower of Life - and were for many centuries unable to provide their own power. Like the "Disciples of Zor", the Invid also relied upon captured stocks of Protoculture to power their armies, and designed all their early mecha around the Tirolian standard cell. Even when they occupied Earth, the Invid continued to produce cells to power their older mecha, even though the Gamo and Gosu - the newest front-line mecha - used generators.
Despite the military importance of cells, they were rarely used for space vessels and installations, valuable mecha, or for any civilian applications. For these, generators of varying sizes and output rates were designed by Tirol, both for domestic use and export to colony and client worlds. The largest such generators powered the Zentraedi flagships and Tirolian mother-ships, while the smallest would provide energy to the Tirolians' Bioroids and, ultimately, Earth's first generation of Protoculture-powered vehicles, the Valkyrie and RDF Destroids.
Tirolian civilians also had generators, which provided energy to their cities - though small settlements would occasionally have a cell-powered power-plant until the settlement's size warranted a more permanent installation. Indeed, the current boom in cell use for personal vehicles and village power supplies on Earth that began in the years just prior to the dawn of the Second Robotech War represents an unprecedented change in the use of cells by non-military agencies, a change that is also beginning to be felt on Tirol and the worlds of the Sentinels Confederation.
B. Immortality, Cloning, and Giants of War
As important in the reshaping of Tirolian culture as the discovery of near-unlimited, clean, efficient, and light power supplies from the mere seeds of an alien plant, was the discovery of the myriad of uses for the zylonase family of enzymes in ambitious biological applications.
The first applications for these substances, which could be easily extracted from the Matrix of a Protoculture generator, was their use in life-extension treatments. Only slightly modified so as to affect terragen chromosomes instead of Opteran pseudosomes, the zylonase enzymes could be injected into a person, and could effectively repair damage at the cellular level, preventing not only degenerative diseases and cancers, but could stop the aging process itself. Because the body's immune system would eventually break down the foreign enzymes, treatments would have to be repeated to maintain the anti-geriatric effect.
On early Imperial Tirol, one's access to these treatments depended entirely on one's status. The poorest of the poor, the rural and urban workers, were denied the treatment in all but the most serious of medical cases - and were never used to prolong life beyond natural limits, only to keep people relatively healthy until death. The plebs were more fortunate, having access to life-extensions of half a century or more, but only the wealthiest could receive the treatments available to the patricians - whose lives were doubled, sometimes trebled, by the treatment. Only the Robotech Elders, Masters, and the most essential of those in artificial societies they created for themselves on their mother-ships, were allowed effective immortality. This exclusivity was in part because of social castes, but was also as much a matter of economics - the zylonases were only present in small quantities in Protoculture Matrices, were extremely expensive, and were needed for more strategic applications, leaving only the richest and most powerful with access to them.
But Zor discovered another use for the zylonases: cloning and corporeal reconstruction. Tirol had long since had the technology to produce artificial organs and limbs by seeding a degradable plastic scaffolding that contains all the body's structures with pre-specialized cells. The cells eventually replace the scaffolding, and the limb or organ is fully formed. However, this process was tedious and was of only limited utility, namely medical reconstruction. With the extraction of the zylonases from the Protoculture matrix, this process could not only be sped up to a blinding pace, but could be applied to create new organisms entirely.
Combined with the Tirolians' expertise in genetic engineering, the Robotech Elders were able to create a society of clones that fit their rigid ideological standards, and surrounded themselves with these individuals, made in groups of identical triplets that possessed a limited empathic sense between members of the triad.
But the triumph of the Protoculture-cloning techniques was the race of giant warriors known as the Zentraedi. Constructed and programmed by the hundreds of billions during the Empire's history, the Zentraedi were not only built on modified scaffolding, but were built upon modified DNA, with sequences specialized for their giant size spliced into what are 'junk DNA' sequences for humans. Not only did the zylonase make the construction of these artificial Goliaths feasible, it permitted a process known as 'micronization' that could in a matter of hours create a new body for Zentraedi individual, of either human or giant size, and hard-wire into the new brain the neural connections of the original body. Indeed, it is likely that the Regis used this technique, if in a dramatically more advanced fashion, to create the humanoid Solugi.
C. Spore - The New Scourge
One of the newer, and less desirable, uses of the Flower of Life is the absorption as a drug through the digestive tract or mucus membranes of a chemical residue in the parasol of the spores of the Flower of Life. The substance, called on the streets by the unimaginative name 'spore', has numerous affinities to a chemical found in the fruit of the Flower of Life (see below), but is far less toxic to humans. This chemical is a strong and highly addictive hallucinogen, though one should be skeptical of the claims that ingestion or inhalation of the substance causes any sort of paranormal prescience. This drug was discovered by individuals who noted that such reactions occasionally occurred when individuals inhaled dust made from desiccated spores, some of whom deliberately attempted to extract and concentrate the substance for illicit sale.
There is little fear that the fruits of the Flower will ever be used by humans in this fashion, considering their extreme toxicity. The pollen, on the other hand, possesses chemical agents similar to those in the fruit and the spores, but these agents are too weak to do more than cause a light euphoria. Though the long-term effects are unknown, it is legal to possess the pollen, and recently, several companies in India and Europe began to market incense made with the pollen.
IV. The Invid
As the natural symbiont of the Flower of Life, the Invid are involved with the plant's life-cycle at all stages, and derive all of their own sustenance from the plant.
Firstly, the Invid are both the natural pollinators of the Flower of Life and are the primary consumers of its fruit (and hence distributors of its seeds). Invid Workers (a caste of sterile females) wade among the flowers, where the prehensile stamens reach out and attach their pollen pods onto the Workers' skin, where the pollen adheres to the mucus all Invid excrete from their epidermis to prevent the sensitive flesh from drying. Carried about by the Workers, the pollen is then carried to other plants for fertilization. Furthermore, a scent gland in the Workers' genital canals releases the pheromones necessary to activate the pistils and make them receptive for fertilization. As part of their diet, all Invid consume the fruits of the flower, helping abrade the seeds and spread them over a wide area. The Invid, being a hive-oriented animal, also collectively protect, tend to, and harvest the plants to the benefit of both species.
In return, the Invid receive their nutrients from the plant, made from a mash of water and the fibrous pulp of plant matter - usually taken from leaves of the young plant or from the entirety of mature and sterile land-plants. Worker-caste Invid consume the plant matter, mixed with water, and the fibers are ground to a pulp in their gizzards. The workers then regurgitate the nutrient solution into a communal tub, where Invid of all other castes (except the Sub-queen) absorb it through both the skin and their limited intestinal tracts, and into a specialized bath for the hive's eternally-pregnant Sub-queen.
The Invid also receive narcotic effects from the fruits, which are - unlike the residue of the spores - lethally toxic to most non-Opteran animals. The pulp of the fruit is also metabolized by Drone-caste Invid into jellies that determine the caste of the Invid while still a larva. Each caste has its own specialized jelly except for the Warrior caste, which forms when a larva is fed no jelly at all, usually a circumstance which occurs when stress on a hive produces insufficient supplies of the Flower's fruits to be available to the hive. Indeed, the defoliation of Optera was so complete that many generations of Invid were almost entirely made up of the large, dull-witted, and violent Warrior, with only a few of the Worker, Drone, and sub-royalty castes remaining. Invid informants also claim that the fruit of the Flower of Life is extremely important in the spiritual life of the Invid, though tales of the paranormal powers granted by its consumption should be taken with a grain of salt.
V. The Race for the Flower
Though the general histories of the Robotech Wars - which might also be known as the "Wars of the Flower" - are widely known, many of the more fascinating details that relate to the role of the Flower of Life are not. If this section goes over material that is common knowledge, then, it is to merely set the context for the less oft-mentioned facts.
It is true that in Earth's year 1343 C.E., Zor Derelda discovered the Flower of Life and its unusual properties. He brought back some of his discoveries to Tirol, but, being an enterprising young man, withheld some of the information he possessed while he prepared the long and arcane forms for the patents he anticipated. For example: though the need for artificial pollination was known, the chemical activation required before fertilization was left out of his initial report. Realizing that transplantation of the Invid would be both impractical and unethical, Zor had already begun attempts to splice the genes for making the necessary pheromone into the atrophied defensive scent glands of the Cha-Cha, a domesticate of the Ci'Vonian trahl and a fairly popular pet animal in the empire at the time. Sadly for this clever idea, little eventually came of it until the REF recaptured Tirol from the Invid. Partly this was because engineering the necessary Invid-like behaviors into the Cha-Cha, whose natural ancestor was a predator of small animals and not a plant-pollinating herbivore, proved more difficult than Zor anticipated. But just as importantly, Zor had moved on to other things.
It seems that Zor wanted to keep the project secret until his financial stake in the new technology was secured. As he developed the gene-engineered Cha-Cha, later to be known as a Pollinator, Zor quickly developed (or bred - it is uncertain if this did not actually exist as a mutant strain on Optera) a variety of the Flower that would produce seeds whether pollinated or not, and these seeds could be used to derive energy, though no fertile sporofer would germinate from them. Furthermore, he re-engineered this "sporeless" strain, which is what he gave to the Masters to be marketed commercially throughout the Empire, to accept a new pheromone altogether, so that neither Invid nor the Pollinator on which he was working could fertilize it - only Zor held the key, and he kept the secret tightly to himself, writing cryptically in his encoded notes, "I have delved into this plant more than any man should have, but it still keeps my confidence in return for my confidentiality - I have made its secrets a part of me, and me a part of its secret".
As the large extracts of zylonase were used to develop the Zentraedi, and as these Zentraedi were used by the Robotech Elders to overthrow the Republic, Zor found himself in a bind. Though formerly racked with guilt for having concealed scientific knowledge to advance his own financial concerns, he was soon glad for his actions. Zor was ordered to seed large tracts of land on numerous colony worlds (the Flower did not grow well on Tirol as Valivarre's spectrum was too hard). Zor did as he was told, but used the sterile strain he'd developed. This decision was reinforced in Zor's mind when the Zentraedi defoliated Optera on the Elders' orders, and the Invid crusade against their attackers was launched. The Elders, oblivious to Zor's duplicity, attributed the difficulty of getting the flowers to produce fertile seeds to alien soils under alien suns, and Zor encouraged this delusion to his own benefit.
Though truly fertile seeds were never to return to Optera, or to leave Zor's hands, the less fertile variety was used for centuries as the Empire's main power source, and Zor used his unique 'knack' for coaxing fecundity from the plant on alien worlds as a means to bargain with Tirol's despots. But Zor's decision affected the Invid as well. Though they could not induce the modified "sporeless" variety Flowers to reproduce, if they captured a planet where the Flower had been seeded they could at least derive necessary sustenance and some energy from them for the many seasons that the plants lived.
Zor kept two things as his trump cards - the Pollinators, to which he returned in Earth's early twentieth century and which he completed shortly before his death, and the original unmodified plants. Torn with remorse over the wars his invention had caused, directly with the Invid, and more importantly indirectly between the Zentraedi who had remained loyal to the Elders and Masters against those that had defected to the descendants of the colonists Tirol had sent to Ci'Va, Zor decided to load the last truly fertile batch of the Flower into the reflex engines of the battlefortress he was assigned with which to carry out his seeding missions, and sent it away to a world he had learned of while perusing the records on Haydon IV, a world he determined was the original home of his own race, and who would presumably be sufficiently more advanced than his own people to make better use of his discovery. The world was Earth, and Zor was disastrously mistaken, as history has shown.
After Zor's death, and the confirmation that he had indeed sent the last batch of fertile Flowers to an alien world on the Macross, the Robotech Masters dispatched their Zentraedi armada in a hasty search for it. With the Zentraedi's demise, the Masters themselves abandoned their dying empire in search of Earth and the treasure Zor had hidden there.
However, research on the Flower had not stopped. As the Invid were in the process of inserting troops into the very capital of Tirol, an aging scientist of the Senatorial caste named Cabell - who had studied under Zor three centuries before - was closing in on the secret Zor had kept for so long. He finally figured out the purpose of the Pollinators that Zor had continued to breed in his lab even after he had made them useless for the commonly-seeded strains of the Flower. Armed with this knowledge, Cabell, on the unorthodox suggestion of an Earth scientist named Dr. Emil Lang, proceeded to break Zor's new pheromonal code - Zor's own pheromones - and to splice the required genes into a new generation of Pollinators. This discovery allowed the Robotech Expeditionary Force to permit the formerly infertile "sporeless" strain to germinate without the late Zor's wizardry, causing an immediate renaissance of Robotechnology among the Tirolians, displaced Terrans, and Sentinels, allowing them to beat the Protoculture-depleted armies of the Regent with ease. Since the REF's Flowers were the derivative strain made by Zor and used by the Robotech Empire, the term "second-generation Protoculture" arose to describe the energy made from seeds from the Imperial variety, as opposed to the 'first generation' made from the last unadulterated plants Zor had sent to Earth. Beyond the ability for the Imperial strain to produce infertile but energy-generating seeds, and the Imperial strain's new pheromonal code, there is no difference between the varieties, though they can not be hybridized with fertile results, as this creates an entirely new pheromonal key for pollination.
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