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赤霉素与柳叶菜芽形成和芽萌发过程中的根尖下细胞分裂的关系

Gibberellins and Subapical Cell Divisions in Relation to Bud Set and Bud Break in Salix pentandra.

作者信息

Hansen E, Olsen JE, Junttila O

机构信息

Department of Biology, University of Tromsø, N.9037 Tromsø, Norway.

出版信息

J Plant Growth Regul. 1999 Dec;18(4):167-170. doi: 10.1007/pl00007065.

DOI:10.1007/pl00007065
PMID:10688705
Abstract

In young plants of Salix pentandra, a temperate zone deciduous woody species, elongation growth ceases and a terminal bud is formed at day lengths shorter than a critical length. This is the first step in dormancy development, making survival under harsh winter conditions possible. Early studies strongly indicate that gibberellin is involved in the photoperiodic control of bud set and bud break. GA(1) action was studied by application under short days to plants where cessation of shoot elongation had occurred, followed by subsequent anatomic investigations of shoot tips. Under short days the frequency of cell division decreased rapidly along with the earlier observed decrease in GA(1) levels. Application of GA(1) to short-day-induced terminal buds rapidly stimulated cell division in apices several days before visible shoot elongation in response to this treatment was observed. One day after GA(1) application a fourfold increase in cell division frequency in apices was observed, increasing to a maximum of sevenfold 2 days after application. Long-day treatment leading to induction of bud break after about 4-6 days was followed by slowly increasing frequency of cell divisions. In earlier studies of this species, short days and gibberellins had no effect on cell elongation. These data show that increased GA(1) content, by application or long-day treatment, results in increased frequency of mitosis. This strongly indicates that GA(1) affects stem elongation in connection with bud set and bud break primarily by affecting cell divisions in subapical tissues.

摘要

在柳叶菜(一种温带落叶木本植物)的幼苗中,当日长短于临界长度时,伸长生长停止并形成顶芽。这是休眠发育的第一步,使得在严酷的冬季条件下存活成为可能。早期研究有力地表明,赤霉素参与了芽形成和芽萌发的光周期控制。通过在短日照条件下将赤霉素施用于已经停止茎伸长的植株,然后对茎尖进行解剖学研究,来研究赤霉素(GA₁)的作用。在短日照条件下,细胞分裂频率迅速下降,同时之前观察到GA₁水平也在下降。在观察到对这种处理有可见的茎伸长反应的数天前,将GA₁施用于短日照诱导的顶芽,能迅速刺激顶端的细胞分裂。施用GA₁一天后,观察到顶端细胞分裂频率增加了四倍,施用后2天增加到最大的七倍。长日照处理在大约4 - 6天后导致芽萌发,随后细胞分裂频率缓慢增加。在对该物种的早期研究中,短日照和赤霉素对细胞伸长没有影响。这些数据表明,通过施用或长日照处理增加GA₁含量会导致有丝分裂频率增加。这有力地表明,GA₁主要通过影响根尖下组织中的细胞分裂,来影响与芽形成和芽萌发相关的茎伸长。

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