菜豆科菜豆主根和侧根的地理感知。3。一个解释主根和侧根的不同地质响应性的模型。

J. S. Ransom, R. Moore
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引用次数: 18

摘要

Phaseolus vulgaris的半尖的主根和侧根向保留完整的半尖的根的一侧弯曲。因此,侧根和初生根的尖端产生能够诱导重力弯曲的生长效应器。侧根的尖端不对称地放置在去尖的主根上,导致根向放置尖端的根的一侧弯曲。也就是说,侧根比主根对重力的反应小并不是因为它们的根冠不能产生生长抑制剂。主根的重力响应性与小柱组织的存在呈正相关,小柱组织比侧根的小柱长3.8倍,宽1.7倍,体积10.5倍。我们认为侧根缺乏重力响应性是由于它们(i)比主根(即强烈的重力响应)产生较少的抑制剂,以及(ii)无法重新分配抑制剂,从而无法产生足够的浓度梯度来诱导明显的向地性响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geoperception in primary and lateral roots of Phaseolus vulgaris (Fabaceae). III. A model to explain the differential georesponsiveness of primary and lateral roots.
Half-tipped primary and lateral roots of Phaseolus vulgaris bend toward the side of the root on which the intact half tip remains. Therefore, tips of lateral and primary roots produce growth effectors capable of inducing gravicurvature. The asymmetrical placement of a tip of a lateral root onto a detipped primary root results in the root bending toward the side of the root onto which the tip was placed. That is, the lesser graviresponsiveness of lateral roots as compared with primary roots is not due to the inability of their caps to produce growth inhibitors. The more pronounced graviresponsiveness of primary roots is positively correlated with the presence of columella tissues that are 3.8 times longer, 1.7 times wider, and 10.5 times more voluminous than the columellas of lateral roots. We propose that the lack of graviresponsiveness exhibited by lateral roots is due to the fact that they (i) produce smaller amounts of the inhibitor than primary (i.e., strongly graviresponsive) roots and (ii) are unable to redistribute the inhibitor so as to be able to create a concentration gradient sufficient to induce a pronounced gravitropic response.
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