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芽胞杆菌抗菌二肽溶杆菌素的研究进展 被引量:14
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作者 吴黎明 李曦 +1 位作者 伍辉军 高学文 《南京农业大学学报》 CAS CSCD 北大核心 2018年第5期778-783,共6页
抗菌二肽溶杆菌素(Bacilysin)由L-丙氨酸残基和L-不典型的氨基酸抗荚膜菌素(Anticapsin)残基组成,是目前已知的芽胞杆菌合成的结构最简单的肽类抗菌物质之一。Bacilysin的作用靶标6-磷酸葡萄糖胺合成酶是微生物细胞壁合成关键酶,它对真... 抗菌二肽溶杆菌素(Bacilysin)由L-丙氨酸残基和L-不典型的氨基酸抗荚膜菌素(Anticapsin)残基组成,是目前已知的芽胞杆菌合成的结构最简单的肽类抗菌物质之一。Bacilysin的作用靶标6-磷酸葡萄糖胺合成酶是微生物细胞壁合成关键酶,它对真菌和细菌都具有广谱的抗菌活性,因此,Bacilysin在农业和医药领域具有广阔的应用前景,近年来成为了天然产物的研究热点。本文综述了Bacilysin在生物合成途径及调控、抗菌功能和作用机制等方面的研究进展,提出Bacilysin在生产实践中存在的主要问题并展望了Bacilysin的研究趋势,以期为Bacilysin的研发和应用提供参考。 展开更多
关键词 芽胞杆菌 溶杆菌素 抗荚膜菌素 合成途径 作用机制
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Comprehensive genomic analysis of Bacillus subtilis 9407 reveals its biocontrol potential against bacterial fruit blotch
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作者 Xiaofei Gu Qingchao Zeng +4 位作者 Yu Wang Jishun Li Yu Zhao Yan Li Qi Wang 《Phytopathology Research》 2021年第1期35-46,共12页
Bacillus subtilis,a plant-beneficial bacterial species exhibiting good biocontrol capabilities,has been widely used in agricultural production.The endophytic strain 9407 can efficiently control bacterial fruit blotch(... Bacillus subtilis,a plant-beneficial bacterial species exhibiting good biocontrol capabilities,has been widely used in agricultural production.The endophytic strain 9407 can efficiently control bacterial fruit blotch(BFB)caused by the gram-negative bacterium Acidovorax citrulli.However,the mechanism underlying its biocontrol ability remains poorly understood.Given the genomic diversity of B.subtilis,strain 9407 was sequenced and assembled in this study to determine the genome information associated with its biocontrol traits.A combination of core genome phylogenetic analysis and average nucleotide identity(ANI)analysis demonstrated that the 9407 strain belonged to B.subtilis.Various functional genes related to biocontrol traits,i.e.,biofilm formation,motility,pathogen inhibition,plant growth promotion,and induction of systemic resistance,were identified in B.subtilis 9407.Four secondary metabolite biosynthesis gene clusters with antibacterial ability were also found in the B.subtilis 9407 genome,including newly identified subtilosin A,bacilysin,and bacillaene,and the previously reported surfactin.Mutants lacking sboA or bacG,which are defective in synthesizing subtilosin A or bacilysin,showed decreased inhibitory activity against A.citrulli MH21,and the triple mutant with deleted sboA,bacG,and srfAB almost completely lost its inhibitory activity.The biofilm formation and swarming motility of the sboA and bacG mutants also decreased,in turn leading to decreased colonization on melon roots and leaves.Under greenhouse conditions,the biocontrol efficacy of the sboA and bacG mutants against BFB on melon leaves decreased by 21.4 and 32.3%,respectively.Here,we report a new biocontrol pathway of B.subtilis 9407 against BFB,in which subtilosin A and bacilysin contributed to the biocontrol efficacy by improving antibacterial activity and colonization ability of the strain.The comprehensive genomic analysis of B.subtilis 9407 improves our understanding of the biocontrol mechanisms of B.subtilis,providing support for further research of its biocontrol mechanisms and field applications. 展开更多
关键词 Bacillus subtilis Genomic analysis Biocontrol mechanism Bacterial fruit blotch Subtilosin A bacilysin
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