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首页> 外文期刊>The Journal of Experimental Biology >Strains of Bacillus ssp Regulate Wheat Resistance to Septoria nodorum Berk
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Strains of Bacillus ssp Regulate Wheat Resistance to Septoria nodorum Berk

机译:芽孢杆菌SSP菌株调节小麦耐血液患者Nodorum Berk

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摘要

The ability of Bacillus subtilis Cohn and Bacillus thuringiensis Berliner to induce systemic resistance in wheat plants to the casual agent of Septoria nodorum Berk., blotch has been studied. It has been shown that strains of Bacillus ssp. that possess the capacity for endophytic survival have antagonistic activity against this pathogen in vitro. A reduction of the degree of Septoria nodorum blotch development on wheat leaves under the influence of Bacillus spp. was accompanied by the suppression of catalase activity, an increase in peroxidase activity and H2O2 content, and expression of defence related genes such us PR-1, PR-6, and PR-9. It has been shown that B. subtilis 26 D induces expression levels of wheat pathogenesis-related (PR) genes which marks a SA-dependent pathway of sustainable development and that B. thuringiensis V-5689 and V-6066 induces a JA/ET-dependent pathway. These results suggest that these strain Bacillus spp. promotes the formation of wheat plant resistance to S. nodorum through systemic activation of the plant defense system. The designed bacterial consortium formed a complex biological response in wheat plants infected phytopathogen.
机译:枯草芽孢杆菌和芽孢杆菌的能力和毛茛属植物柏林诱导小麦植物的全身性抗性,以静脉植物的休闲剂。,已经研究了斑点。已显示芽孢杆菌菌株SSP。具有内生存率的能力对该病原体的体外具有拮抗活性。芽孢杆菌菌落下小麦叶片对小麦叶片斑纹发育的降低。伴随着抑制过氧化氢酶活性,过氧化物酶活性和H 2 O 2含量的增加,以及外防相关基因的表达,如美国PR-1,PR-6和PR-9。已经表明,B.枯草芽孢杆菌26d诱导了与可持续发展的SA依赖性途径的小麦病理发生相关(PR)基因的表达水平,B. Thuringiensis V-5689和V-6066诱导JA / ET-依赖途径。这些结果表明,这些菌株Bacillus SPP。通过植物防御系统的全身活化促进小麦植物抗性对S. Nodorum的形成。设计的细菌联盟在植物植物感染的植物病原体中形成了复杂的生物反应。

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