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低温诱导水稻花粉败育的机制。

Mechanism of low-temperature-induced pollen failure in rice.

机构信息

Cooperative Research Centre for Sustainable Rice Production, The University of Sydney, Sydney, Australia.

出版信息

Cell Biol Int. 2010 Mar 29;34(5):469-76. doi: 10.1042/CBI20090417.

Abstract

Low-temperature stress during microspore development alters cellular organization in rice anthers. The major cellular damage includes unusual starch accumulation in the plastids of the endothecium in postmeiotic anthers, abnormal vacuolation and hypertrophy of the tapetum, premature callose (1,3-beta-glucan) breakdown and lack of normal pollen wall formation. These cellular lesions arise from damage to critical biochemical processes that include sugar metabolism in the anthers and its use by the microspores. Failure of utilization of the callose breakdown product and other microspore wall components like sporopollenin can also be considered as critical. In recent years, considerable progress has been made in the understanding of major biochemical processes including the expression of critical genes that are sensitive to low temperature in rice and cause male sterility. This paper combines a discussion of cellular organization and associated biochemical processes that are sensitive to low temperatures and provides an overview of the potential mechanisms of low-temperature-induced male sterility in rice.

摘要

低温胁迫在小孢子发育过程中改变了水稻花药的细胞组织。主要的细胞损伤包括减数分裂后花药绒毡层中质体的异常淀粉积累、绒毡层的异常液泡化和肥大、过早的胼胝质(1,3-β-葡聚糖)分解和正常花粉壁形成的缺乏。这些细胞病变源于对包括花药中糖代谢及其对小孢子利用在内的关键生化过程的破坏。对分解产物和其他花粉壁成分如孢粉素的利用失败也可以被认为是关键的。近年来,在理解包括对低温敏感并导致雄性不育的关键基因表达在内的主要生化过程方面取得了相当大的进展。本文结合了对低温敏感的细胞组织和相关生化过程的讨论,并提供了对水稻低温诱导雄性不育潜在机制的概述。

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