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高等植物茎的向重力性。V. 对生长素敏感性的变化

Gravitropism in higher plant shoots. V. Changing sensitivity to auxin.

作者信息

Salisbury F B, Gillespie L, Rorabaugh P

机构信息

Plant Science Department, Utah State University, Logan 84322-4820, USA.

出版信息

Plant Physiol. 1988;88(4):1186-94. doi: 10.1104/pp.88.4.1186.

DOI:10.1104/pp.88.4.1186
PMID:11537435
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1055738/
Abstract

An alternative to the Cholodny-Went, auxin-transport hypothesis of gravitropic stem bending was proposed as early as 1958, suggesting that gravistimulation induces changes in sensitivity to auxin, accounting for differential growth and bending. To test the sensitivity hypothesis, we immersed marked, decapitated sunflower (Helianthus annuus L.) hypocotyl sections in buffered auxin solutions over a wide concentration range (0, 10(-8) to 10(-2) molar IAA), photographed them at half-hour intervals, analyzed the negatives with a digitizer/computer, and evaluated surface-length changes in terms of Michaelis-Menten enzyme kinetics. Bending decreases with increasing auxin concentration; above about 10(-4) molar IAA the hypocotyls bend down; increasing auxin inhibits elongation growth of lower surfaces (which is high at zero or relatively low auxin levels) but promotes upper-surface growth (which is low at low auxin levels). Thus, lower surfaces have a greater Km sensitivity to applied auxin than upper surfaces. At optimum auxin levels (maximum growth), growth of bottom surfaces exceeds that of top surfaces, so bottom tissues have a greater Vmax sensitivity. Vmax sensitivity of vertical controls is slightly lower than it is for either horizontal surface; Km sensitivity is intermediate. Clearly, gravistimulation leads to significant changes in tissue sensitivity to applied auxin. Perhaps these changes are also important in normal gravitropism.

摘要

早在1958年就有人提出了一种替代Cholodny-Went生长素运输重力性茎弯曲假说的观点,该观点认为重力刺激会引起对生长素敏感性的变化,从而导致差异生长和弯曲。为了验证敏感性假说,我们将有标记的、去顶的向日葵(Helianthus annuus L.)下胚轴切段浸入一系列浓度范围很广(0、10^(-8)至10^(-2)摩尔IAA)的缓冲生长素溶液中,每隔半小时对其拍照,用数字化仪/计算机分析底片,并根据米氏酶动力学评估表面长度变化。弯曲程度随生长素浓度增加而降低;在约10^(-4)摩尔IAA以上,下胚轴向下弯曲;生长素浓度增加会抑制下表面的伸长生长(在生长素水平为零或相对较低时伸长生长较高),但促进上表面生长(在低生长素水平时上表面生长较低)。因此,下表面对施加的生长素的Km敏感性高于上表面。在最佳生长素水平(最大生长)时,下表面的生长超过上表面,所以底部组织具有更高的Vmax敏感性。垂直对照的Vmax敏感性略低于任何一个水平表面;Km敏感性处于中间水平。显然,重力刺激会导致组织对施加的生长素的敏感性发生显著变化。也许这些变化在正常的向重力性中也很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af75/1055738/116a334ac65c/plntphys00634-0241-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af75/1055738/6a188707a3ff/plntphys00634-0240-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af75/1055738/116a334ac65c/plntphys00634-0241-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af75/1055738/6a188707a3ff/plntphys00634-0240-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af75/1055738/116a334ac65c/plntphys00634-0241-a.jpg

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