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首页> 外文期刊>The New Phytologist >A transient decrease in reactive oxygen species in roots leads to root hair deformation in the legume-rhizobia symbiosis
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A transient decrease in reactive oxygen species in roots leads to root hair deformation in the legume-rhizobia symbiosis

机译:根中活性氧的短暂降低导致豆科植物-根瘤菌共生中根毛变形

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* A possible role for reactive oxygen species (ROS) in root hair deformation in response to Nod factor (NF) was investigated using Medicago truncatula nodulation mutants, and an inhibitor and precursors of ROS. * In wild-type roots, ROS efflux transiently decreased approximately 1 h after NF treatment. Transcript accumulation of two NADPH oxidase homologs, respiratory burst oxidase homolog 2 (MtRBOH2) and MtRBOH3, also transiently decreased at 1 h. However, in the nonnodulating mutant Nod factor perception (nfp), transcript accumulation did not change. * Exogenous application of ROS prevented root hair swelling and branching induced by NF. When accumulation of ROS was prevented by diphenylene iodonium (DPI), NF did not induce root hair branching. Root treatment with DPI alone reduced ROS efflux and induced root hair tip swelling. Transient treatment of roots with DPI mimicked NF treatment and resulted in root hair branching in the absence of NF. A transient DPI treatment did not induce root hair branching in the nonlegumes Arabidopsis thaliana and tomato (Lycopersicon esculentum). * The results suggest a role for the transient reduction of ROS accumulation in governing NF-induced root hair deformation in legumes.
机译:*使用梅花苜蓿节结瘤突变体,ROS的抑制剂和前体研究了活性氧(ROS)在根瘤对根瘤因子(NF)响应中的变形中的可能作用。 *在野生型根中,在NF处理后大约1小时,ROS外流会暂时降低。两个NADPH氧化酶同系物,呼吸爆发氧化酶同系物2(MtRBOH2)和MtRBOH3的转录物积累在1 h时也短暂下降。但是,在非结节突变Nod因子感知(nfp)中,成绩单的积累没有改变。 *外源使用ROS可防止NF引起的根毛肿胀和分支。当联苯碘鎓(DPI)阻止ROS积累时,NF不会诱导根毛分支。仅用DPI进行根处理可降低ROS流出并引起根毛尖肿胀。用DPI瞬时处理根部模仿了NF处理,并且在没有NF的情况下导致了根毛的分支。瞬时DPI处理不会在非豆类拟南芥和番茄(番茄)中引起根毛分支。 *结果表明,暂时减少ROS积累在控制豆类中NF诱导的根毛变形中起着作用。

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