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在拟南芥中表达水稻 SUB1A 和 SUB1C 转录因子揭示了开花抑制作为一种耐淹水机制。

Expression of rice SUB1A and SUB1C transcription factors in Arabidopsis uncovers flowering inhibition as a submergence tolerance mechanism.

机构信息

Center for Plant Cell Biology and Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA.

出版信息

Plant J. 2011 Aug;67(3):434-46. doi: 10.1111/j.1365-313X.2011.04605.x. Epub 2011 Jun 14.

DOI:10.1111/j.1365-313X.2011.04605.x
PMID:21481028
Abstract

Submergence of plant organs perturbs homeostasis by limiting diffusion of oxygen, carbon dioxide and ethylene. In rice (Oryza sativa L.), the haplotype at the multigenic SUBMERGENCE1 (SUB1) locus determines whether plants survive prolonged submergence. SUB1 encodes two or three transcription factors of the group VII ethylene response factor family: SUB1A, SUB1B and SUB1C. The presence of SUB1A-1 and its strong submergence-triggered ethylene-mediated induction confers submergence tolerance through a quiescence survival strategy that inhibits gibberellin (GA)-induced carbohydrate consumption and elongation growth. SUB1C is invariably present and acts downstream of the enhancement of GA responsiveness during submergence. In this study, heterologous ectopic expression of rice SUB1A and SUB1C in Arabidopsis thaliana was used to explore conserved mechanisms of action associated with these genes using developmental, physiological and molecular metrics. As in rice transgenic plants that ectopically express SUB1A-1, Arabidopsis transgenic plants that constitutively express SUB1A displayed GA insensitivity and abscisic acid hypersensitivity. Ectopic SUB1C expression had more limited effects on development, stress responses and the transcriptome. Observation of a delayed flowering phenotype in lines over-expressing SUB1A led to the finding that inhibition of floral initiation is a component of the quiescence survival strategy in rice. Together, these analyses demonstrate conserved as well as specific roles for group VII ethylene response factors in integration of abiotic responses with development.

摘要

植物器官的淹没会通过限制氧气、二氧化碳和乙烯的扩散来扰乱内稳态。在水稻(Oryza sativa L.)中,多基因 SUBMERGENCE1(SUB1)基因座的单倍型决定了植物是否能在长时间的淹没中存活。SUB1 编码乙烯反应因子家族的 2 个或 3 个转录因子:SUB1A、SUB1B 和 SUB1C。SUB1A-1 的存在及其强烈的淹没诱导的乙烯介导的诱导赋予了淹没耐受性,通过一种静止存活策略抑制赤霉素(GA)诱导的碳水化合物消耗和伸长生长。SUB1C 始终存在,并在淹没期间增强 GA 反应性的作用下发挥作用。在这项研究中,通过使用发育、生理和分子指标,在拟南芥中异源异位表达水稻 SUB1A 和 SUB1C,来探索与这些基因相关的保守作用机制。与在异位表达 SUB1A-1 的水稻转基因植物一样,异位表达 SUB1A 的拟南芥转基因植物表现出对 GA 的不敏感和对脱落酸的超敏反应。异位 SUB1C 表达对发育、应激反应和转录组的影响更为有限。在过量表达 SUB1A 的系中观察到开花延迟的表型,导致发现抑制花的起始是水稻静止存活策略的一个组成部分。总之,这些分析表明,在整合非生物反应与发育方面,乙烯反应因子家族的 VII 组具有保守和特定的作用。

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