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质体:植物细胞发育的动态组成部分。

Plastids: dynamic components of plant cell development.

作者信息

Guikema J A, Gallegos G L

机构信息

Division of Biology, Kansas State University, Manhattan 66502, USA.

出版信息

Trans Kans Acad Sci. 1992;95(1-2):50-4.

Abstract

The gravitropic bending of maize roots, as a response to reorientation of the root within a gravitational field, was examined for sensitivity to exogenous applications of the cytoskeletal inhibitor, cytochalasin D. Agar blocks were impregnated with this inhibitor, and were applied either to the root cap or to the zone of root cell elongation. Root growth was normal with either treatment, if the roots were not repositioned with respect to the gravitational vector. When untreated roots were placed in a horizontal position with respect to gravity, a 40 degree bending response was observed within one hour. This bending also occurred when cytochalasin D was applied at high concentrations to the zone of root cell elongation. However, when cytochalasin D above 40 micrograms/ml was applied to the root cap, roots lost the ability of directional reorientation within the gravitational field, causing a random bending.

摘要

作为对根系在重力场中重新定向的一种反应,研究了玉米根的向重力性弯曲对外源应用细胞骨架抑制剂细胞松弛素D的敏感性。将琼脂块用这种抑制剂浸渍,然后将其应用于根冠或根细胞伸长区。如果根系没有相对于重力矢量重新定位,那么这两种处理方式下根系生长均正常。当未处理的根系相对于重力处于水平位置时,在一小时内观察到40度的弯曲反应。当将高浓度的细胞松弛素D应用于根细胞伸长区时,也会发生这种弯曲。然而,当将浓度高于40微克/毫升的细胞松弛素D应用于根冠时,根系失去了在重力场中定向重新定向的能力,导致随机弯曲。

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