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水稻穗颈对干旱胁迫的生理和蛋白质组学响应。

Physiological and proteomic responses of rice peduncles to drought stress.

机构信息

Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.

出版信息

Mol Biotechnol. 2011 Jun;48(2):173-82. doi: 10.1007/s12033-010-9358-2.

Abstract

Panicle exsertion, an essential physiological process for obtaining high grain yield in rice is mainly driven by peduncle (uppermost internode) elongation. Drought at heading/panicle emergence prevented peduncle elongation from reaching its maximum length even after re-watering. This inhibitory effect of drought resulted in delayed heading and trapping spikelets lower down the panicle inside the flag-leaf sheath, thus increasing sterility in the lower un-exserted spikelets and also among the upper superior spikelets whose exsertion was delayed. Intermittent drought stress caused a significant reduction in relative water content (RWC) and an increase in the abscisic acid (ABA) level of the peduncles, while both returned to normal levels upon re-watering. Semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) analysis revealed the down-regulation of GA biosynthetic genes during drought. 2D-PAGE analysis of proteins from peduncles collected under well-watered, drought-stressed, and re-watered plants revealed at least twofold differential changes in expression of 31 proteins in response to drought and most of these changes were largely reversed by re-watering. The results indicate that ABA-GA antagonism is a key focal point for understanding the failure of panicle exsertion under drought stress and the consequent increase in spikelet sterility.

摘要

穗抽出,是水稻获得高产的重要生理过程,主要由穗颈(最上节间)伸长驱动。抽穗期/穗芽出现时的干旱即使在重新浇水后也阻止了穗颈伸长达到最大长度。干旱的这种抑制作用导致抽穗延迟,并将小穗困在旗叶鞘内的下部,从而增加下部未抽出小穗的不育率,以及上部延迟抽出小穗的不育率。间歇性干旱胁迫导致穗颈相对含水量(RWC)显著降低,ABA 水平升高,而重新浇水后均恢复正常水平。半定量逆转录聚合酶链反应(RT-PCR)分析显示,干旱期间 GA 生物合成基因下调。在充分浇水、干旱胁迫和重新浇水的植物采集的穗颈蛋白的 2D-PAGE 分析表明,至少有 31 种蛋白质的表达对干旱有两倍以上的差异变化,而这些变化中的大多数在重新浇水后都得到了很大的逆转。结果表明,ABA-GA 拮抗作用是理解干旱胁迫下穗抽出失败以及由此导致的小穗不育增加的关键焦点。

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