Soga K, Harada K, Wakabayashi K, Hoson T, Kamisaka S
Department of Biology, Osaka City University, Japan.
J Plant Res. 1999 Sep;112(1107):273-8. doi: 10.1007/pl00013881.
Elongation growth of dark grown maize (Zea mays L cv. Cross Bantam T51) coleoptiles and mesocotyls was suppressed by hypergravity at 30 g and above. Acceleration at 300 g significantly decreased the mechanical extensibility of cell walls of both organs. Hypergravity increased the amounts of hemicellulose and cellulose per unit length in mesocotyl walls, but not in coleoptile walls. The weight average molecular masses of hemicellulosic polysaccharides were also increased by hypergravity in both organs. On the other hand, the activities of beta-glucanases extracted from coleoptile and mesocotyl cell walls were decreased by hypergravity. These results suggest that the decreased activities of beta-glucanases by hypergravity cause an increase in the molecular mass of hemicellulosic polysaccharides of both organs. The upshift of molecular mass of hemicellulosic polysaccharides as well as the thickening of cell walls under hypergravity conditions seems to be involved in making the cell wall mechanically rigid, thereby inhibiting elongation growth of maize coleoptiles and mesocotyls.
黑暗中生长的玉米(Zea mays L cv. Cross Bantam T51)胚芽鞘和中胚轴的伸长生长在30g及以上的超重力条件下受到抑制。300g的加速度显著降低了这两个器官细胞壁的机械伸展性。超重力增加了中胚轴细胞壁中每单位长度的半纤维素和纤维素含量,但胚芽鞘细胞壁中未增加。两个器官中半纤维素多糖的重均分子量也因超重力而增加。另一方面,从胚芽鞘和中胚轴细胞壁中提取的β-葡聚糖酶的活性因超重力而降低。这些结果表明,超重力导致β-葡聚糖酶活性降低,从而使两个器官的半纤维素多糖分子量增加。超重力条件下半纤维素多糖分子量的升高以及细胞壁的增厚似乎与使细胞壁机械刚性增强有关,从而抑制了玉米胚芽鞘和中胚轴的伸长生长。