The soybean NADPH oxidase gene GmRbohK is crucial for nodule formation in symbiosis

IF 1 4区 农林科学 Q3 AGRONOMY
D. Ke, Shuang Feng, Yihan Hu, Dan Xu, Huan Wang
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引用次数: 0

Abstract

Plants regulate various biological activities in cells by producing reactive oxygen species (ROS) as signal molecules. Plant NADPH oxidases, respiratory burst oxidase homologues (Rbohs), are the main source of ROS and participate in a variety of plant physiological processes. However, there are few studies regarding the function of Rbohs in rhizobium–legume symbiotic nodulation. A Rbohs subfamily gene GmRbohK was cloned and the gene expression and its subcellular localization were studied. The GmRbohK gene was highly expressed in soybean roots and nodules and greatly induced by rhizobia. GmRbohK was located at the cell membrane of Arabidopsis protoplasts. Moreover, RNA interference (RNAi) of GmRbohK resulted in a decrease in the number of nodules and nitrogenase activity. Meanwhile, the expression levels of nodulation marker genes decreased in association with the decrease in GmRbohK expression level. RNAi of GmRbohK inhibited the production of ROS and blocked infection events at the initial stage of nodule formation. Further analysis of nodule tissue sections revealed that RNAi of GmRbohK significantly reduced the number of bacteroids in the nodule infection area. In conclusion, GmRbohK is heavily involved in the regulation of soybean nodule formation.
大豆NADPH氧化酶基因GmRbohK对共生根瘤的形成至关重要
植物通过产生活性氧(ROS)作为信号分子来调节细胞中的各种生物活性。植物NADPH氧化酶是呼吸爆发氧化酶同源物(Rbohs),是ROS的主要来源,参与植物的多种生理过程。然而,关于Rbohs在根瘤菌-豆类共生结瘤中的作用的研究很少。克隆了Rbohs亚家族基因GmRbohK,并对其表达及其亚细胞定位进行了研究。GmRbohK基因在大豆根和根瘤中高度表达,并受到根瘤菌的诱导。GmRbohK位于拟南芥原生质体的细胞膜上。此外,GmRbohK的RNA干扰(RNAi)导致结节数量和固氮酶活性降低。同时,结瘤标记基因的表达水平随着GmRbohK表达水平的降低而降低。GmRbohK的RNAi在结节形成的初始阶段抑制ROS的产生并阻断感染事件。对结节组织切片的进一步分析显示,GmRbohK的RNAi显著减少了结节感染区的类杆菌数量。总之,GmRbohK在很大程度上参与了大豆根瘤形成的调控。
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来源期刊
CiteScore
1.90
自引率
8.30%
发文量
91
审稿时长
1 months
期刊介绍: Published since 1957, the Canadian Journal of Plant Science is a bimonthly journal that contains new research on all aspects of plant science relevant to continental climate agriculture, including plant production and management (grain, forage, industrial, and alternative crops), horticulture (fruit, vegetable, ornamental, greenhouse, and alternative crops), and pest management (entomology, plant pathology, and weed science). Cross-disciplinary research in the application of technology, plant breeding, genetics, physiology, biotechnology, microbiology, soil management, economics, meteorology, post-harvest biology, and plant production systems is also published. Research that makes a significant contribution to the advancement of knowledge of crop, horticulture, and weed sciences (e.g., drought or stress resistance), but not directly applicable to the environmental regions of Canadian agriculture, may also be considered. The Journal also publishes reviews, letters to the editor, the abstracts of technical papers presented at the meetings of the sponsoring societies, and occasionally conference proceedings.
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