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在离心产生的超重力条件下,植物茎生长抑制中的重力感知与向重力性中的重力感知无关,可能涉及机械感受器。

Graviperception in growth inhibition of plant shoots under hypergravity conditions produced by centrifugation is independent of that in gravitropism and may involve mechanoreceptors.

作者信息

Soga Kouichi, Wakabayashi Kazuyuki, Kamisaka Seiichiro, Hoson Takayuki

机构信息

Department of Biological Sciences, Graduate School of Science, Osaka City University, Sumiyoshi-ku, 558-8585 Osaka, Japan.

出版信息

Planta. 2004 Apr;218(6):1054-61. doi: 10.1007/s00425-003-1187-0. Epub 2004 Jan 10.

DOI:10.1007/s00425-003-1187-0
PMID:14716566
Abstract

Hypergravity caused by centrifugation inhibits elongation growth of shoots by decreasing the cell wall extensibility via suppression of xyloglucan breakdown as well as by the thickening of cell walls. The mechanism of graviperception in hypergravity-induced growth inhibition was investigated in Arabidopsis [A. thaliana (L.) Heynh.] hypocotyls and azuki bean (Vigna angularis Ohwi et Ohashi) epicotyls. Hypergravity caused growth suppression in both sgr1-1 and pgm1, which are Arabidopsis mutants deprived of gravitropism, as in wild-type plants, suggesting that the graviperception in hypergravity-induced growth inhibition of shoots is independent of that in gravitropism. Hypergravity had no effects on growth of azuki bean epicotyls or Arabidopsis hypocotyls in the presence of lanthanum or gadolinium, which are blockers of mechanoreceptors. Moreover, lanthanum or gadolinium at the same concentration had no influence on gravitropism of azuki bean epicotyls and Arabidopsis hypocotyls. Hypergravity had no effects on cell wall extensibility and affected neither xyloglucan metabolism nor the thickness of cell walls in the lanthanum- or gadolinium-treated azuki bean epicotyls. Lanthanum or gadolinium inhibited the hypergravity-induced increase in the pH of the apoplastic fluid in the epicotyls, which is involved in the processes of the suppression of xyloglucan breakdown due to hypergravity. These findings suggest that plants perceive the hypergravity stimuli by mechanoreceptors in the plasma membrane, and utilize the perceived signal to regulate the growth rate of their shoots.

摘要

离心作用引起的超重通过抑制木葡聚糖分解以及使细胞壁增厚来降低细胞壁伸展性,从而抑制茎的伸长生长。在拟南芥[阿拉伯芥(L.)海因]下胚轴和赤小豆(赤小豆Ohwi et Ohashi)上胚轴中研究了超重诱导生长抑制中的重力感知机制。与野生型植物一样,超重对sgr1-1和pgm1这两种缺乏向重力性的拟南芥突变体的茎生长也有抑制作用,这表明超重诱导茎生长抑制中的重力感知与向重力性中的重力感知无关。在存在镧或钆(机械感受器阻滞剂)的情况下,超重对赤小豆上胚轴或拟南芥下胚轴的生长没有影响。此外,相同浓度的镧或钆对赤小豆上胚轴和拟南芥下胚轴的向重力性没有影响。超重对镧或钆处理的赤小豆上胚轴的细胞壁伸展性没有影响,也不影响木葡聚糖代谢和细胞壁厚度。镧或钆抑制了超重诱导的上胚轴质外体流体pH值升高,而质外体流体pH值升高与超重抑制木葡聚糖分解的过程有关。这些发现表明,植物通过质膜中的机械感受器感知超重刺激,并利用感知到的信号来调节其茎的生长速率。

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Alterations in Growth, Photosynthesis, and Respiration in a Starchless Mutant of Arabidopsis thaliana (L.) Deficient in Chloroplast Phosphoglucomutase Activity.叶绿体磷酸葡萄糖变位酶活性缺失的拟南芥淀粉缺陷突变体生长、光合作用和呼吸作用的改变。
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