Ministry of Education Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, School of Pharmaceutical Sciences, Wuhan University, Wuhan, China.
Astrobiology. 2013 Jul;13(7):617-25. doi: 10.1089/ast.2012.0962. Epub 2013 Jul 9.
Reproduction and locomotion are essential features of animals that help to facilitate their interaction with the surrounding environment. Previous studies have produced inconsistent results on behavioral response to spaceflight by the model animal Caenorhabditis elegans (C. elegans) in liquid culture. Using standard agar-based nematode growth medium (NGM), we show here that both reproductive and locomotory capacities of C. elegans were not significantly changed by centrifuge-produced hypergravity or clinostat-simulated microgravity. To investigate the effect of actual spaceflight on C. elegans, a nematode test unit was specifically designed to maintain its normal growth on solid NGM slides and to allow automatic RNA fixation on board the Shenzhou-8 spaceflight. We did not detect alteration in either brood size of immediate progenies from postflight nematodes or locomotory behavior, including speed of locomotion, frequency of reversals, and rate of body bends of space-flown nematodes collected directly from nematode test units. Our results provide clear evidence that the nematode test unit is an appropriate apparatus for nematode growth on standard NGM and can be used for on-orbit analysis of C. elegans, including onboard RNA fixation for molecular analysis and real-time video acquisition for behavioral analysis, which are critical for further studies in unmanned spaceflight and outer space exploration.
生殖和运动是动物的基本特征,有助于促进它们与周围环境的相互作用。先前的研究对模型动物秀丽隐杆线虫(C. elegans)在液体培养中的空间飞行行为反应产生了不一致的结果。使用标准的琼脂基线虫生长培养基(NGM),我们在这里表明,离心产生的超重力或回转仪模拟的微重力并没有显著改变 C. elegans 的生殖和运动能力。为了研究实际空间飞行对 C. elegans 的影响,专门设计了一个线虫测试单元,以在固体 NGM 载玻片上维持其正常生长,并允许在神舟八号航天飞行中自动进行 RNA 固定。我们没有检测到飞行后线虫的后代繁殖力或运动行为的改变,包括运动速度、反转频率和直接从线虫测试单元收集的飞行线虫的体弯率。我们的结果提供了明确的证据,证明线虫测试单元是在标准 NGM 上生长线虫的合适设备,可用于 C. elegans 的轨道分析,包括 onboard RNA 固定用于分子分析和实时视频采集用于行为分析,这对于无人航天和外层空间探索的进一步研究至关重要。