Advanced Concepts Team, European Space Agency, Noordwijk, The Netherlands.
Bioinspir Biomim. 2013 Jun;8(2):025003. doi: 10.1088/1748-3182/8/2/025003. Epub 2013 May 7.
Seeds provide the vital genetic link and dispersal agent between successive generations of plants. Without seed dispersal as a means of reproduction, many plants would quickly die out. Because plants lack any sort of mobility and remain in the same spot for their entire lives, they rely on seed dispersal to transport their offspring throughout the environment. This can be accomplished either collectively or individually; in any case as seeds ultimately abdicate their movement, they are at the mercy of environmental factors. Thus, seed dispersal strategies are characterized by robustness, adaptability, intelligence (both behavioral and morphological), and mass and energy efficiency (including the ability to utilize environmental sources of energy available): all qualities that advanced engineering systems aim at in general, and in particular those that need to enable complex endeavors such as space exploration. Plants evolved and adapted their strategy according to their environment, and taken together, they enclose many desirable characteristics that a space mission needs to have. Understanding in detail how plants control the development of seeds, fabricate structural components for their dispersal, build molecular machineries to keep seeds dormant up to the right moment and monitor the environment to release them at the right time could provide several solutions impacting current space mission design practices. It can lead to miniaturization, higher integration and packing efficiency, energy efficiency and higher autonomy and robustness. Consequently, there would appear to be good reasons for considering biomimetic solutions from plant kingdom when designing space missions, especially to other celestial bodies, where solid and liquid surfaces, atmosphere, etc constitute and are obviously parallel with the terrestrial environment where plants evolved. In this paper, we review the current state of biomimetics on seed dispersal to improve space mission design.
种子为植物的后代提供了至关重要的遗传联系和传播媒介。如果没有种子传播作为繁殖手段,许多植物将很快灭绝。由于植物缺乏任何形式的移动能力,并且一生都停留在同一位置,它们依赖于种子传播将它们的后代散布到整个环境中。这可以通过集体或个体方式来实现;无论哪种方式,由于种子最终放弃了它们的运动,它们就受制于环境因素。因此,种子传播策略的特点是稳健性、适应性、智能(行为和形态上的)以及质量和能量效率(包括利用环境中可用能源的能力):所有这些品质都是先进工程系统的目标,特别是那些需要实现复杂任务的系统,例如太空探索。植物根据其环境进化并调整其策略,它们共同具有许多太空任务需要具备的理想特征。详细了解植物如何控制种子的发育、为传播制造结构部件、构建分子机械以保持种子休眠直到适当的时机并监测环境以在适当的时机释放它们,可以为当前的太空任务设计实践提供多种解决方案。这可以导致小型化、更高的集成和包装效率、能量效率以及更高的自主性和稳健性。因此,当设计太空任务时,特别是设计到其他天体的任务时,考虑从植物王国中寻找仿生解决方案似乎有充分的理由,因为这些天体具有固体和液体表面、大气层等,它们与植物进化的地球环境明显相似。在本文中,我们回顾了目前关于种子传播的仿生学研究,以改进太空任务设计。