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Planarian regeneration in space: Persistent anatomical behavioral and bacteriological changes induced by space travel

机译:太空中的平面生殖:太空旅行引起的持久的解剖行为和细菌学变化

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摘要

Regeneration is regulated not only by chemical signals but also by physical processes, such as bioelectric gradients. How these may change in the absence of the normal gravitational and geomagnetic fields is largely unknown. Planarian flatworms were moved to the International Space Station for 5 weeks, immediately after removing their heads and tails. A control group in spring water remained on Earth. No manipulation of the planaria occurred while they were in orbit, and space‐exposed worms were returned to our laboratory for analysis. One animal out of 15 regenerated into a double‐headed phenotype—normally an extremely rare event. Remarkably, amputating this double‐headed worm again, in plain water, resulted again in the double‐headed phenotype. Moreover, even when tested 20 months after return to Earth, the space‐exposed worms displayed significant quantitative differences in behavior and microbiome composition. These observations may have implications for human and animal space travelers, but could also elucidate how microgravity and hypomagnetic environments could be used to trigger desired morphological, neurological, physiological, and bacteriomic changes for various regenerative and bioengineering applications.
机译:再生不仅受化学信号的调节,还受物理过程(例如生物电梯度)的调节。在没有正常重力和地磁场的情况下,这些变化将如何变化尚不清楚。扁头and虫移走头尾后立即移到国际空间站5周。泉水中的对照组仍留在地球上。当它们在轨道上时,没有对涡虫进行任何操作,而空间暴露的蠕虫被送回我们的实验室进行分析。 15只动物中有一只会再生为双头表型,这通常是极为罕见的事件。值得注意的是,再次在平水中截断了这种双头蠕虫,再次导致了双头表型。此外,即使在返回地球20个月后进行测试,暴露于太空的蠕虫在行为和微生物组组成上也显示出明显的数量差异。这些观察结果可能对人类和动物太空旅行者产生影响,但也可以阐明微重力和反磁环境如何用于引发各种再生和生物工程应用所需的形态,神经,生理和细菌学变化。

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