太空飞行中的植物生殖发育。

Mary E Musgrave, Anxiu Kuang
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引用次数: 29

摘要

多种植物在微重力条件下的生殖发育已经得到了研究;拟南芥、芸苔和小麦的研究尤其深入。先前关于生殖发育的某些阶段可能需要重力的迹象现在已被驳斥。然而,太空飞行环境提出了许多独特的挑战,这些挑战往往损害了植物的繁殖能力。其中包括硬件设计的限制,以补偿微重力的独特环境特征,特别是缺乏对流空气运动。花粉发育对各种轨道平台上的高浓度乙烯很敏感。除了这些严重的环境问题外,雄蕊和雌蕊的发育在微重力下正常进行,产生了功能繁殖体。尽管如此,花药和雌蕊的发育发生了质的变化,种子发育过程中贮藏储备的沉积也发生了显著的质的变化。除了这些结果的内在生物学重要性外,当植物在没有重力的情况下生长时,种子质量下降的后果将减损植物生命维持系统的效用。通过了解重力在决定生殖发育期间普遍存在的微环境方面的作用,可以找到应对这些障碍的措施,同时提供具有更广泛农业意义的基本知识。
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Plant reproductive development during spaceflight.

Reproductive development in microgravity has now been studied in a variety of plants; Arabidopsis, Brassica, and Triticum have been especially well studied. Earlier indications that gravity might be required for some stage of reproductive development have now been refuted. Nevertheless, the spaceflight environment presents many unique challenges that have often compromised the ability of plants to reproduce. These include limitations in hardware design to compensate for the unique environmental characteristics of microgravity, especially absence of convective air movement. Pollen development has been shown to be sensitive to high concentrations of ethylene prevailing on various orbital platforms. Barring these gross environmental problems, androecium and gynoecium development occur normally in microgravity, in that functional propagules are produced. Nonetheless, qualitative changes in anther and pistil development have been shown, and significant qualitative changes occur in storage reserve deposition during seed development. Apart from the intrinsic biological importance of these results, consequences of diminished seed quality when plants are grown in the absence of gravity will detract from the utility of plant-based life support systems. By understanding gravity's role in determining the microenvironments that prevail during reproductive development, counter-measures to these obstacles can be found, while at the same time providing basic knowledge that will have broader agricultural significance.

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