Driss-Ecole D, Schoevaert D, Noin M, Perbal G
Universite Pierre et Marie Curie, Paris, France.
Biol Cell. 1994;81(1):59-64. doi: 10.1016/0248-4900(94)90055-8.
Lentil seedlings were grown for 28 h in space, on board Spacelab (IML 1 Mission) and growth of the primary root was analysed. The length of cortical cells was less in near weightlessness than on the 1 g centrifuge (flight control) and mitotic index was lower but there was no apparent perturbation in the mitosis. To further investigate which phase of cell cycle was modified, densitometric analysis of nuclear DNA content in cortical cells was carried out by the mean of an image processing system (SAMBA). In microgravity there was a decrease in DNA synthesis and a promotion of the arrest in the G2 phase of cell cycle. These results, and other ones obtained elsewhere on a slowly rotating clinostat, led us to think that in microgravity the perturbation of the gravisensing cells and/or the absence of convection could account for the modification of cell growth registered in the primary root.
小扁豆幼苗在太空实验室(IML 1任务)的太空环境中生长28小时,然后对主根的生长情况进行分析。与1g离心条件下(飞行对照)相比,近失重环境下皮层细胞长度变短,有丝分裂指数降低,但有丝分裂过程未出现明显紊乱。为进一步研究细胞周期的哪个阶段发生了改变,利用图像处理系统(SAMBA)对皮层细胞核DNA含量进行光密度分析。结果显示,在微重力环境下,DNA合成减少,细胞周期的G2期停滞加剧。这些结果以及在其他地方利用缓慢旋转的回转器所获得的结果,使我们认为,在微重力环境下,重力感应细胞的扰动和/或对流的缺失可能是导致主根细胞生长发生改变的原因。