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首页> 外文期刊>The New Phytologist >Heat tolerance in a wild Oryza species is attributed to maintenance of Rubisco activation by a thermally stable Rubisco activase ortholog
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Heat tolerance in a wild Oryza species is attributed to maintenance of Rubisco activation by a thermally stable Rubisco activase ortholog

机译:野生稻的耐热性归因于热稳定的Rubisco激活酶直系同源物维持Rubisco激活

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摘要

The mechanistic basis of tolerance to heat stress was investigated in Oryza sativa and two wild rice species, Oryza meridionalis and Oryza australiensis. The wild relatives are endemic to the hot, arid Australian savannah. Leaf elongation rates and gas exchange were measured during short periods of supra-optimal heat, revealing species differences. The Rubisco activase (RCA) gene from each species was sequenced. Using expressed recombinant RCA and leaf-extracted RCA, the kinetic properties of the two isoforms were studied under high temperatures. Leaf elongation was undiminished at 45 degrees C in O.australiensis. The net photosynthetic rate was almost 50% slower in O.sativa at 45 degrees C than at 28 degrees C, while in O.australiensis it was unaffected. Oryza meridionalis exhibited intermediate heat tolerance. Based on previous reports that RCA is heat-labile, the Rubisco activation state was measured. It correlated positively with leaf elongation rates across all three species and four periods of exposure to 45 degrees C. Sequence analysis revealed numerous polymorphisms in the RCA amino acid sequence from O.australiensis. The O. australiensis RCA enzyme was thermally stable up to 42 degrees C, contrasting with RCA from O.sativa, which was inhibited at 36 degrees C. We attribute heat tolerance in the wild species to thermal stability of RCA, enabling Rubisco to remain active.
机译:研究了水稻(Aryza sativa)和两种野生稻品种(Oryza meridionalis和Arytra australiensis)的耐热胁迫机理。野生亲戚是炎热干燥的澳大利亚大草原的特有物种。在超最佳热量的短时间内测量了叶片伸长率和气体交换,揭示了物种差异。对每个物种的Rubisco激活酶(RCA)基因进行了测序。使用表达的重组RCA和叶提取的RCA,在高温下研究了两种同工型的动力学特性。在澳大利亚大麦中,在45℃下叶片伸长没有减弱。稻的净光合速率在45摄氏度下比28摄氏度下慢了近50%,而在澳大利亚稻中没有受到影响。稻米表现出中等的耐热性。根据以前的报告,RCA是不耐热的,因此测量了Rubisco活化状态。它与所有三个物种和四个暴露于45°C的时期的叶片伸长率呈正相关。序列分析揭示了澳大利亚产O.australiensis的RCA氨基酸序列中有许多多态性。 O. australiensis RCA酶在高达42°C的温度下具有热稳定性,而O.sativa的RCA在36°C时受到抑制。我们将野生物种的耐热性归因于RCA的热稳定性,从而使Rubisco保持活性。

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