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从毛苕子中分离出的根际细菌类假罗尔斯通氏肠杆菌GVv1菌株对大豆疫霉根腐病的生物防治及对大豆植株的促生长作用

Biocontrol of Phytophthora Root and Stem Rot and Growth Promotion of Soybean Plants by the Rhizobacterium Enterobacter pseudoroggenkampii Strain GVv1 Isolated from Vicia villosa Roth.

作者信息

Taboadela-Hernanz Juan, Ikagawa Yuichiro, Yamauchi Kosei, Minoshima Yui, Suga Haruhisa, Shimizu Masafumi

机构信息

Laboratory of Plant Pathology, The United Graduate School of Agricultural Science, Gifu University.

Food Microbiology Laboratory, The United Graduate School of Agricultural Science, Gifu University.

出版信息

Microbes Environ. 2025;40(2). doi: 10.1264/jsme2.ME24089.

Abstract

Phytophthora root and stem rot (PRSR) caused by Phytophthora sojae is a major concern for global soybean production. To identify a bacterial biocontrol agent against PRSR, 73 rhizobacterial strains were isolated from wild and cultivated legumes and screened for their protective activities against PRSR in pot experiments. Strain GVv1 was selected for its consistent protective effect through repeated pot experiments. The protective effect of this strain was similar to that of the fungicide mancozeb-metalaxyl. A dual-culture assay showed that GVv1 produced antifungal metabolites effective against P. sojae. To evaluate the potential adaptability of GVv1 to the soybean rhizosphere environment, its growth was exami-ned in soybean root exudates and nutrient medium, both supplemented with daidzein, an antimicrobial isoflavone secreted by soybean roots. GVv1 proliferated using soybean root exudates and had sufficient tolerance to daidzein to colonize the soybean rhizosphere. The plant growth-promoting effect of GVv1 on soybean plants was also investigated. GVv1 significantly increased shoot and root dry weights, indicating its plant growth-promoting activity. In vitro assays showed that GVv1 produced indole-3-acetic acid, siderophores, and 1-aminocyclopropane-1-carboxylate deaminase and solubilized insoluble phosphates. A taxonogenomic ana-lysis of the draft genome identified GVv1 as Enterobacter pseudoroggenkampii with high similarity (98.32% average nucleotide identity) to E. pseudoroggenkampii strain 155092. To the best of our knowledge, this is the first study to report the biocontrol and plant growth-promoting activities of E. pseudoroggenkampii.

摘要

由大豆疫霉引起的疫霉根腐茎腐病(PRSR)是全球大豆生产的主要问题。为了鉴定一种防治PRSR的细菌生防菌,从野生和栽培豆科植物中分离出73株根际细菌菌株,并在盆栽试验中筛选它们对PRSR的保护活性。菌株GVv1通过重复盆栽试验因其一致的保护效果而被选中。该菌株的保护效果与杀菌剂代森锰锌-甲霜灵相似。双培养试验表明,GVv1产生了对大豆疫霉有效的抗真菌代谢产物。为了评估GVv1对大豆根际环境的潜在适应性,在添加了大豆根部分泌的抗菌异黄酮大豆苷元的大豆根分泌物和营养培养基中检测了它的生长情况。GVv1利用大豆根分泌物增殖,并且对大豆苷元具有足够的耐受性以在大豆根际定殖。还研究了GVv1对大豆植株的促生长作用。GVv1显著增加了地上部和根部的干重,表明其具有促生长活性。体外试验表明,GVv1产生吲哚-3-乙酸、铁载体和1-氨基环丙烷-1-羧酸脱氨酶,并溶解了不溶性磷酸盐。对基因组草图的分类基因组分析将GVv1鉴定为类罗根坎普肠杆菌,与类罗根坎普肠杆菌菌株155092具有高度相似性(平均核苷酸同一性为98.32%)。据我们所知,这是第一项报道类罗根坎普肠杆菌生防和促生长活性的研究。

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