Hoson T, Saiki M, Kamisaka S, Yamashita M
Department of Biology, Osaka City University, Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan.
Adv Space Res. 2001;27(5):933-40. doi: 10.1016/s0273-1177(01)00157-0.
Plant seedlings exhibit automorphogenesis on clinostats. The occurrence of automorphogenesis was confirmed under microgravity in Space Shuttle STS-95 flight. Rice coleoptiles showed an inclination toward the caryopsis in the basal region and a spontaneous curvature in the same adaxial direction in the elongating region both on a three-dimensional (3-D) clinostat and in space. Both rice roots and Arabidopsis hypocotyls also showed a similar morphology in space and on the 3-D clinostat. In rice coleoptiles, the mechanisms inducing such an automorphic curvature were studied. The faster-expanding convex side of rice coleoptiles showed a higher extensibility of the cell wall than the opposite side. Also, in the convex side, the cell wall thickness was smaller, the turnover of the matrix polysaccharides was more active, and the microtubules oriented more transversely than the concave side, and these differences appear to be causes of the curvature. When rice coleoptiles grown on the 3-D clinostat were placed horizontally, the gravitropic curvature was delayed as compared with control coleoptiles. In clinostatted coleoptiles, the corresponding suppression of the amyloplast development was also observed. Similar results were obtained in Arabidopsis hypocotyls. Thus, the induction of automorphogenesis and a concomitant decrease in graviresponsiveness occurred in plant shoots grown under microgravity conditions.
植物幼苗在回转器上表现出自体形态发生。在航天飞机STS - 95飞行的微重力条件下证实了自体形态发生的发生。水稻胚芽鞘在三维(3 - D)回转器上和太空中,在基部区域向颖果倾斜,在伸长区域沿相同的近轴方向自发弯曲。水稻根和拟南芥下胚轴在太空和3 - D回转器上也表现出类似的形态。对水稻胚芽鞘中诱导这种自体弯曲的机制进行了研究。水稻胚芽鞘较快扩展的凸面比相对的一面表现出更高的细胞壁伸展性。此外,在凸面,细胞壁厚度较小,基质多糖的周转更活跃,微管比凹面更横向排列,这些差异似乎是弯曲的原因。当在3 - D回转器上生长的水稻胚芽鞘水平放置时,与对照胚芽鞘相比,向重力弯曲延迟。在回转处理的胚芽鞘中,也观察到淀粉体发育受到相应抑制。在拟南芥下胚轴中也获得了类似的结果。因此,在微重力条件下生长的植物茎中发生了自体形态发生的诱导以及重力响应性的相应降低。