首页> 外文期刊>Plant and cell physiology >Diel O-2 Dynamics in Partially and Completely Submerged Deepwater Rice: Leaf Gas Films Enhance Internodal O-2 Status, Influence Gene Expression and Accelerate Stem Elongation for 'Snorkelling' during Submergence
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Diel O-2 Dynamics in Partially and Completely Submerged Deepwater Rice: Leaf Gas Films Enhance Internodal O-2 Status, Influence Gene Expression and Accelerate Stem Elongation for 'Snorkelling' during Submergence

机译:Diel O-2部分和完全浸没深水稻的动力学:叶煤气膜增强了氨基型o-2状态,影响基因表达并加速潜水期间'浮潜'的茎伸长率

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摘要

Deepwater rice has a remarkable shoot elongation response to partial submergence. Shoot elongation to maintain air-contact enables 'snorkelling' of O-2 to submerged organs. Previous research has focused on partial submergence of deepwater rice. We tested the hypothesis that leaf gas films enhance internode O-2 status and stem elongation of deepwater rice when completely submerged. Diel patterns of O-2 partial pressure (pO(2)) were measured in internodes of deepwater rice when partially or completely submerged, and with or without gas films on leaves, for the completely submerged plants. We also took measurements for paddy rice. Deepwater rice elongated during complete submergence and the shoot tops emerged. Leaf gas films improved O-2 entry during the night, preventing anoxia in stems, which is of importance for elongation of the submerged shoots. Expressions of O-2 deprivation inducible genes were up-regulated in completely submerged plants during the night, and more so when gas films were removed from the leaves. Diel O-2 dynamics showed similar patterns in paddy and deepwater rice. We demonstrated that shoot tops in air enabled 'snorkelling' and increased O-2 in internodes of both rice ecotypes; however, 'snorkelling' was achieved only by rapid shoot elongation by deepwater rice, but not by paddy rice.
机译:深水水稻对部分淹没的射击伸长率响应。拍摄伸长率以维持空气接触使O-2的“浮潜”能够淹没器官。以前的研究专注于深水稻米的部分淹没。我们测试了叶片气体薄膜在完全浸没时增强了叶片气体膜的节水o-2状态和茎伸长。当部分或完全浸没时,在深水米饭中测量O-2分压(PO(2))的二极管模式,以及完全浸没植物的叶片上的气膜或没有气体膜。我们还考虑了水稻的测量。在完整的淹水期间伸长深水米饭,射击顶部出现。叶片气体薄膜在夜间改善O-2进入,预防症的缺氧,这对于浸没式芽伸长的重要性是重要的。 O-2剥夺诱导基因的表达在夜间完全浸没植物中升调,更重要的是,当从叶子中除去气体膜时。 Diel O-2动力学在稻米和深水米中显示出类似的模式。我们展示了在稻米生态型的水池中射击空气中的射击和增加的O-2;然而,只有通过深水米饭的快速射击,而不是由水稻的快速射击而实现的“浮潜”。

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