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脱落酸在红米种子休眠中的作用

On the role of abscisic acid in seed dormancy of red rice.

作者信息

Gianinetti Alberto, Vernieri Paolo

机构信息

C.R.A.--Experimental Institute for Cereal Research, Via S. Protaso 302, I-29017 Fiorenzuola d'Arda (PC), Italy.

出版信息

J Exp Bot. 2007;58(12):3449-62. doi: 10.1093/jxb/erm198. Epub 2007 Sep 26.

Abstract

Abscisic acid (ABA) is commonly assumed to be the primary effector of seed dormancy, but conclusive evidence for this role is lacking. This paper reports on the relationships occurring in red rice between ABA and seed dormancy. Content of free ABA in dry and imbibed caryopses, both dormant and after-ripened, the effects of inhibitors, and the ability of applied ABA to revert dormancy breakage were considered. The results indicate: (i) no direct correlation of ABA content with the dormancy status of the seed, either dry or imbibed; (ii) different sensitivity to ABA of non-dormant seed and seed that was forced to germinate by fluridone; and (iii) an inability of exogenous ABA to reinstate dormancy in fluridone-treated seed, even though applied at a pH which favoured high ABA accumulation. These considerations suggest that ABA is involved in regulating the first steps of germination, but unidentified developmental effectors that are specific to dormancy appear to stimulate ABA synthesis and to enforce the responsiveness to this phytohormone. These primary effectors appear physiologically to modulate dormancy and via ABA they effect the growth of the embryo. Therefore, it is suggested that ABA plays a key role in integrating the dormancy-specific developmental signals with the control of growth.

摘要

脱落酸(ABA)通常被认为是种子休眠的主要调节因子,但缺乏确凿证据支持这一作用。本文报道了红米中ABA与种子休眠之间的关系。研究了休眠和后熟的干燥及吸胀颖果中游离ABA的含量、抑制剂的作用以及外源ABA恢复休眠破除的能力。结果表明:(i)ABA含量与种子休眠状态(无论是干燥种子还是吸胀种子)无直接相关性;(ii)非休眠种子和经氟啶酮处理被迫萌发的种子对ABA的敏感性不同;(iii)即使在有利于ABA高积累的pH值下施用外源ABA,也无法使经氟啶酮处理的种子恢复休眠。这些结果表明,ABA参与调节萌发的初始步骤,但特定于休眠的未知发育调节因子似乎刺激ABA合成并增强对这种植物激素的反应。这些主要调节因子在生理上似乎调节休眠,并通过ABA影响胚的生长。因此,有人认为ABA在整合特定于休眠的发育信号与生长控制方面起关键作用。

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