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Isolation and characterisation of Bacillus amyloliquefaciens S13-3 as a biological control agent for anthracnose caused by Colletotrichum gloeosporioides

机译:解淀粉芽孢杆菌S13-3作为炭疽菌炭疽菌引起的炭疽病生物防治剂的表征

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Bacillus amyloliquefaciens S13-3 was isolated from soil as a biological control agent for anthracnose caused by Colletotrichum gloeosporioides. In vitro bioassay demonstrated that S13-3 suppressed C. gloeosporioides mycelial growth. The biocontrol activity of S13-3 toward grape ripe rot caused by C. gloeosporioides was confirmed in a vineyard. S13-3 also reduced the severity of strawberry anthracnose caused by C. gloeosporioides on detached strawberry leaves. The finding that S13-3 showed tolerance to some chemical pesticides and copper suggested that S13-3 could be applied before and/or after chemical pesticide or Bordeaux mixture treatment in the field. S13-3 possesses ituD and lpa-14 genes, both of which play a role in iturin A production, in its genome and expressed their transcripts during culture. Iturin A production by S13-3 was detected in the culture medium and its concentration was 0.064 mg/mL in the medium after culture for 6 days, suggesting that the antagonistic activity of S13-3 toward C. gloeosporioides may depend on iturin A production. Due to the inhibitory effects of S13-3 on anthracnose caused by C. gloeosporioides, S13-3 is expected to contribute to the further improvement of integrated pest management systems against C. gloeosporioides, and to potentially reduce the amounts of chemical fungicides used in the field.
机译:从土壤中分离出解淀粉芽孢杆菌S13-3作为炭疽菌炭疽病引起的炭疽病的生物防治剂。体外生物测定表明,S13-3抑制了C. gloeosporioides菌丝体的生长。在葡萄园中证实了S13-3对C.gloeosporioides引起的葡萄成熟腐烂的生物防治活性。 S13-3还降低了分离的草莓叶片上的球孢梭菌引起的草莓炭疽病的严重程度。 S13-3对某些化学农药和铜具有耐受性的发现表明,S13-3可以在化学农药或波尔多混合物处理之前和/或之后使用。 S13-3在其基因组中具有ituD和lpa-14基因,两者均在iturin A产生中发挥作用,并在培养过程中表达其转录本。在培养6天后,在培养基中检测到由S13-3产生的Iturin A的产生,其浓度为0.064mg / mL,这表明S13-3对球孢梭菌的拮抗活性可能取决于Iturin A的产生。由于S13-3对球孢梭菌引起的炭疽病具有抑制作用,因此预计S13-3有助于进一步改进针对球孢梭菌的病虫害综合治理系统,并有可能减少在球孢菌中使用的化学杀菌剂的量。领域。

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