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首页> 外文期刊>Molecular Plant-Microbe Interactions >Hydrogen Sulfide Promotes Nodulation and Nitrogen Fixation in Soybean-Rhizobia Symbiotic System
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Hydrogen Sulfide Promotes Nodulation and Nitrogen Fixation in Soybean-Rhizobia Symbiotic System

机译:硫化氢促进大豆根瘤菌共生体系中的瘤瘤和氮固定

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The rhizobium-legume symbiotic system is crucial for nitrogen cycle balance in agriculture. Hydrogen sulfide (H2S), a gaseous signaling molecule, may regulate various physiological processes in plants. However, whether H2S has regulatory effect in this symbiotic system remains unknown. Herein, we investigated the possible role of H2S in the symbiosis between soybean (Glycine max) and rhizobium (Sinorhizobium fredii). Our results demonstrated that an exogenous H2S donor (sodium hydrosulfide [NaHS]) treatment promoted soybean growth, nodulation, and nitrogenase (Nase) activity. Western blotting analysis revealed that the abundance of Nase component nifH was increased by NaHS treatment in nodules. Quantitative real-time polymerase chain reaction data showed that NaHS treatment upregulated the expressions of symbiosis-related genes nodA, nodC, and nodD of S. fredii. In addition, expression of soybean nodulation marker genes, including early nodulin 40 (GmENOD40), ERF required for nodulation (GmERN), nodulation signaling pathway 2b (GmNSP2b), and nodulation inception genes (GmNIN1a, GmNIN2a, and GmNIN2b), were upregulated. Moreover, the expressions of glutamate synthase (GmGOGAT), asparagine synthase (GmAS), nitrite reductase (GmNiR), ammonia transporter (GmSAT1), leghemoglobin (GmLb), and nifH involved in nitrogen metabolism were upregulated in NaHS-treated soybean roots and nodules. Together, our results suggested that H2S may act as a positive signaling molecule in the soybean-rhizobia symbiotic system and enhance the system's nitrogen fixation ability.
机译:Rhizobium-Megume Symbiotic系统对于农业中的氮循环平衡至关重要。硫化氢(H2S),气态信号分子,可以调节植物中的各种生理过程。但是,H2S是否在这种共生系统中具有调节效果仍然未知。在此,我们研究了H2S在大豆(MAX)和根序(Sinorhizobium Fredii)之间的共生中的可能作用。我们的结果表明,外源H2S供体(氢硫化钠[NaHS])处理促进了大豆生长,瘤瘤和氮酶活性。 Western印迹分析显示,NaHS治疗在结节中增加了宁纳族组分NiFh的丰度。定量实时聚合酶链反应数据显示,NaHs治疗上调了与S.Fredii的共生相关基因Noda,Nodc和Nodd的表达。此外,上调了大豆结节标记基因的表达,包括早期的果糖40(Gmenod40),染色剂(Gmern),染色信号传导途径2b(gmnsp2b)和结论incepion基因(gmnin1a,gmnin2a和gmnin2b)所需的ERF。此外,在NaH治疗的大豆根和结节中,上调了谷氨酸合酶(Gmmγ),亚氨酰胺合酶(GMA),亚氨酰胺合酶(GMAR),亚硫酸酯还原酶(GMNIR),亚氨基转运蛋白(GMAR1),氨转运蛋白(GMLB)和NiFH中涉及氮代谢的NiFH 。我们的结果表明,H2S可以作为大豆 - 根瘤菌共生体系中的正信号分子并提高系统的氮固定能力。

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