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Graviresponsiveness and the Development of Columella Tissue in Primary and Lateral Roots of Ricinus communis

机译:蓖麻的主要和侧根的重力反应能力和小柱组织的发育

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摘要

Half-tipped primary and lateral roots of Ricinus communis cv Hale bend toward the side of the root on which the intact half-tip remains. Therefore, the minimal graviresponsiveness of lateral roots is not due to the inability of their caps to produce growth effectors (presumably inhibitors). The columella tissues of primary (i.e. graviresponsive) roots are (a) 4.30 times longer, (b) 2.95 times wider, (c) 37.4 times more voluminous, and (d) composed of 17.2 times more cells than those of lateral roots. The onset of positive gravitropism by lateral roots is positively correlated with a (a) 2.99-fold increase in length, (b) 2.63-fold increase in width, and (c) 20.7-fold increase in volume of their columella tissues. We propose that the minimal graviresponsiveness of lateral roots is due to the small size of their columella tissues, which results in their caps being unable to (a) establish a concentration gradient of the effector sufficient to induce gravicurvature and (b) produce as much of the effector as caps of graviresponsive roots.
机译:一半的蓖麻黑毛的初级和侧根向着完整半尖保留的根侧弯曲。因此,侧根的最小重力响应性不是由于其顶盖无法产生生长效应子(可能是抑制剂)。初生(即重生性)根的小肠组织比侧根长(a)长4.30倍,(b)宽2.95倍,(c)体积大37.4倍,并且(d)由比根根大17.2倍的细胞组成。侧根的正向重力作用的发生与(a)长度增加2.99倍,(b)宽度增加2.63倍和(c)骨小柱组织的体积增加正相关。我们认为侧根的最小重力反应性是由于它们的小柱组织的尺寸小,这导致它们的帽不能(a)建立足以诱导重力弯曲的效应子浓度梯度,并且(b)产生尽可能多的效应子作为重敏根的帽。

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