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Ethylene-Induced Inhibition of Root Growth Requires Abscisic Acid Function in Rice (Oryza sativa L.) Seedlings

机译:乙烯诱导的根生长抑制需要水稻(Oryza sativa L.)幼苗的脱落酸功能

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摘要

Ethylene and abscisic acid (ABA) have a complicated interplay in many developmental processes. Their interaction in rice is largely unclear. Here, we characterized a rice ethylene-response mutant mhz4, which exhibited reduced ethylene-response in roots but enhanced ethylene-response in coleoptiles of etiolated seedlings. MHZ4 was identified through map-based cloning and encoded a chloroplast-localized membrane protein homologous to Arabidopsis thaliana (Arabidopsis) ABA4, which is responsible for a branch of ABA biosynthesis. MHZ4 mutation reduced ABA level, but promoted ethylene production. Ethylene induced MHZ4 expression and promoted ABA accumulation in roots. MHZ4 overexpression resulted in enhanced and reduced ethylene response in roots and coleoptiles, respectively. In root, MHZ4-dependent ABA pathway acts at or downstream of ethylene receptors and positively regulates root ethylene response. This ethylene-ABA interaction mode is different from that reported in Arabidopsis, where ethylene-mediated root inhibition is independent of ABA function. In coleoptile, MHZ4-dependent ABA pathway acts at or upstream of OsEIN2 to negatively regulate coleoptile ethylene response, possibly by affecting OsEIN2 expression. At mature stage, mhz4 mutation affects branching and adventitious root formation on stem nodes of higher positions, as well as yield-related traits. Together, our findings reveal a novel mode of interplay between ethylene and ABA in control of rice growth and development.
机译:乙烯和脱落酸(ABA)在许多发育过程中都有复杂的相互作用。它们在水稻中的相互作用在很大程度上尚不清楚。在这里,我们表征了水稻乙烯响应突变体mhz4,该突变体在根部表现出降低的乙烯响应,但在黄化幼苗的胚芽鞘中增强了乙烯响应。 MHZ4通过基于图的克隆进行鉴定,并编码与拟南芥(Arabidopsis)ABA4同源的叶绿体定位膜蛋白,后者负责ABA生物合成的一个分支。 MHZ4突变降低了ABA水平,但促进了乙烯的产生。乙烯诱导MHZ4表达并促进根中ABA的积累。 MHZ4过表达分别导致根和胚芽鞘中乙烯反应的增强和降低。在根部,依赖MHZ4的ABA途径在乙烯受体处或下游起作用,并正向调节根乙烯反应。该乙烯-ABA相互作用模式不同于拟南芥中报道的模式,在后者中,乙烯介导的根抑制不依赖于ABA功能。在胚芽鞘中,依赖MHZ4的ABA途径在OsEIN2或上游起作用,可能通过影响OsEIN2表达来负调节胚芽鞘的乙烯反应。在成熟阶段,mhz4突变影响较高位置的茎节上的分支和不定根的形成,以及与产量相关的性状。总之,我们的发现揭示了乙烯和ABA在控制水稻生长和发育中相互作用的新模式。

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