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淀粉体对于拟南芥根的完全向地性敏感性是必需的。

Amyloplasts are necessary for full gravitropic sensitivity in roots of Arabidopsis thaliana.

机构信息

Department of Botany, Ohio State University, 1735 Neil Ave., 43210-1293, Columbus, OH, USA.

出版信息

Planta. 1989 Feb;177(2):198-206. doi: 10.1007/BF00392808.

Abstract

The observation that a starchless mutant (TC7) of Arabidopsis thaliana (L.) Heynh. is gravitropic (T. Caspar and B.G. Pickard, 1989, Planta 177, 185-197) raises questions about the hypothesis that starch and amyloplasts play a role in gravity perception. We compared the kinetics of gravitropism in this starchless mutant and the wild-type (WT). Wild-type roots are more responsive to gravity than TC7 roots as judged by several parameters: (1) Vertically grown TC7 roots were not as oriented with respect to the gravity vector as WT roots. (2) In the time course of curvature after gravistimulation, curvature in TC7 roots was delayed and reduced compared to WT roots. (3) TC7 roots curved less than WT roots following a single, short (induction) period of gravistimulation, and WT, but not TC7, roots curved in response to a 1-min period of horizontal exposure. (4) Wild-type roots curved much more than TC7 roots in response to intermittent stimulation (repeated short periods of horizontal exposure); WT roots curved in response to 10 s of stimulation or less, but TC7 roots required 2 min of stimulation to produce a curvature. The growth rates were equal for both genotypes. We conclude that WT roots are more sensitive to gravity than TC7 roots. Starch is not required for gravity perception in TC7 roots, but is necessary for full sensitivity; thus it is likely that amyloplasts function as statoliths in WT Arabidopsis roots. Furthermore, since centrifugation studies using low gravitational forces indicated that starchless plastids are relatively dense and are the most movable component in TC7 columella cells, the starchless plastids may also function as statoliths.

摘要

拟南芥无淀粉突变体(TC7)是向地性的(T. Caspar 和 B.G. Pickard,1989,Planta 177,185-197),这一观察结果引发了关于淀粉和淀粉体在重力感知中发挥作用的假设的质疑。我们比较了这种无淀粉突变体和野生型(WT)的向地性动力学。根据几个参数,与 TC7 根相比,野生型根对重力的反应更为敏感:(1)垂直生长的 TC7 根相对于重力矢量的取向不如 WT 根。(2)在重刺激后曲率的时间进程中,TC7 根的曲率延迟且小于 WT 根。(3)与 WT 根相比,TC7 根在单一短暂(诱导)重刺激后弯曲较少,而 WT 根在水平暴露 1 分钟后会弯曲,但 TC7 根不会。(4)与 TC7 根相比,WT 根在间歇性刺激(重复短暂的水平暴露)下弯曲得更多;WT 根在 10 s 的刺激或更短时间内弯曲,但 TC7 根需要 2 分钟的刺激才能产生弯曲。两种基因型的生长速率相等。我们得出结论,WT 根比 TC7 根对重力更敏感。TC7 根对重力的感知不需要淀粉,但需要完全敏感;因此,淀粉体很可能在 WT 拟南芥根中充当沉降物。此外,由于使用低重力的离心研究表明,无淀粉质体相对密集,并且是 TC7 柱细胞中最可移动的成分,因此无淀粉质体也可能充当沉降物。

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