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Manipulating the banana rhizosphere microbiome for biological control of Panama disease

机译:操纵香蕉根际微生物组用于巴拿马病的生物控制

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摘要

abstract: Panama disease caused by Fusarium oxysporum f. sp. cubense infection on banana is devastating banana plantations worldwide. Biological control has been proposed to suppress Panama disease, though the stability and survival of bio-control microorganisms in field setting is largely unknown. In order to develop a bio-control strategy for this disease, 16S rRNA gene sequencing was used to assess the microbial community of a disease-suppressive soil. Bacillus was identified as the dominant bacterial group in the suppressive soil. For this reason, B. amyloliquefaciens NJN-6 isolated from the suppressive soil was selected as a potential bio-control agent. A bioorganic fertilizer (BIO), formulated by combining this isolate with compost, was applied in nursery pots to assess the bio-control of Panama disease. Results showed that BIO significantly decreased disease incidence by 68.5%, resulting in a doubled yield. Moreover, bacterial community structure was significantly correlated to disease incidence and yield and Bacillus colonization was negatively correlated with pathogen abundance and disease incidence, but positively correlated to yield. In total, the application of BIO altered the rhizo-bacterial community by establishing beneficial strains that dominated the microbial community and decreased pathogen colonization in the banana rhizosphere, which plays an important role in the management of Panama disease.
机译:摘要:尖孢镰刀菌引起的巴拿马病。 sp。香蕉上的立方体感染正在全世界范围内摧毁香蕉种植园。尽管在很大程度上未知生物控制微生物在田间环境中的稳定性和存活率,但已经提出了生物控制来抑制巴拿马疾病。为了制定针对这种疾病的生物控制策略,使用16S rRNA基因测序来评估疾病抑制土壤的微生物群落。芽孢杆菌被鉴定为抑制性土壤中的主要细菌群。因此,选择从抑制性土壤中分离的解淀粉芽孢杆菌NJN-6作为潜在的生物防治剂。通过将这种分离物与堆肥组合而成的生物有机肥料(BIO)用于育苗盆中,以评估巴拿马病的生物防治。结果表明,BIO显着降低了疾病发生率68.5%,从而使产量增加了一倍。此外,细菌群落结构与疾病发生率和产量显着相关,芽孢杆菌定殖与病原体丰度和疾病发生率呈负相关,但与产量呈正相关。总体而言,BIO的应用通过建立主导微生物群落的有益菌株并减少了香蕉根际中病原菌的定殖,从而改变了根际细菌群落,这在巴拿马疾病的管理中起着重要作用。

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