Boyce Thompson Institute for Plant Research, Cornell University, 14853, Ithaca, NY, USA.
Planta. 1984 Jul;161(5):459-64. doi: 10.1007/BF00394578.
Inner mesophyll cells from coleoptiles of Zea mays L. cv. Merit were fixed after varying periods of gravistimulation. A statistically significant amount (17-21%) of amyloplast sedimentation occurred in these cells after 30 s of gravistimulation. The presentation time is approx. 40 s or less. The accumulation of amyloplasts near the new lower wall shows a linear relationship to the logarithm of the gravistimulation time (r=0.92 or higher). The intercept of this line with the baseline value of amyloplasts in vertical coleoptiles indicates that the number of amyloplasts on the new lower wall begins increasing 11-15 s after the onset of gravistimulation. Direct observations of living cells confirm that many amyloplasts sediment within less than 15-30 s. These rapid kinetics are consistent with the classical statolith hypothesis of graviperception involving the sedimentation of amyloplasts to the vicinity of the new lower wall.
玉米胚芽鞘内叶细胞在经历不同时长的重力刺激后被固定。在受到 30 秒的重力刺激后,这些细胞中有大量(17-21%)的淀粉粒发生沉降。呈现时间约为 40 秒或更短。淀粉粒在新的下壁附近的积累与重力刺激时间的对数呈线性关系(r=0.92 或更高)。这条线与垂直胚芽鞘中淀粉粒的基线值的截距表明,在重力刺激开始后 11-15 秒,新下壁上的淀粉粒数量开始增加。对活细胞的直接观察证实,许多淀粉粒在不到 15-30 秒内沉降。这些快速的动力学与经典的重质体感知假说一致,涉及淀粉粒向新下壁附近的沉降。