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植物相关微生物群作为拮抗菌对抗植物病原菌梨火疫病菌的来源。

Plant-associated microbiota as a source of antagonistic bacteria against the phytopathogen Erwinia amylovora.

机构信息

Centro de Protección Vegetal y Biotecnología, Instituto Valenciano de Investigaciones Agrarias (IVIA), CV-315 km 10.7, 46113 Moncada, Valencia, Spain.

Departamento de Microbiología y Ecología, Facultad de Ciencias Biológicas, Universitat de València, C/Dr. Moliner, 50, 46100 Burjassot, Valencia, Spain.

出版信息

Environ Microbiol Rep. 2022 Aug;14(4):559-569. doi: 10.1111/1758-2229.13064. Epub 2022 Apr 10.

DOI:10.1111/1758-2229.13064
PMID:35403335
Abstract

Control of bacterial plant diseases is a major concern, as they affect economically important species and spread easily, such as the case of fire blight of rosaceous caused by Erwinia amylovora. In the search for alternatives to the use of agrochemicals and antibiotics, this work presents a screening of natural bacterial antagonists of this relevant and devastating phytopathogen. We recovered bacterial isolates from different plant tissues and geographical origins and then selected those with the strongest ability to reduce fire blight symptoms ex vivo and remarkable in vitro antagonistic activity against E. amylovora. None of them elicited a hypersensitivity reaction in tobacco leaves, most produced several hydrolytic enzymes and presented other biocontrol and/or plant growth-promoting activities, such as siderophore production and phosphate solubilization. These isolates, considered as biocontrol candidates, were identified by 16S rRNA sequencing as Pseudomonas rhizosphaerae, Curtobacterium flaccumfaciens, Enterobacter cancerogenus, Pseudomonas azotoformans, Rosenbergiella epipactidis and Serratia plymuthica. This is the first time that the last five bacterial species are reported to have biocontrol potential against E. amylovora.

摘要

植物细菌性疾病的防治是一个主要关注点,因为它们会影响到经济上重要的物种,并且容易传播,例如蔷薇科火疫病就是由韧皮部杆菌引起的。在寻找替代农用化学品和抗生素的方法时,本研究对这种重要且具有破坏性的植物病原菌的天然拮抗菌进行了筛选。我们从不同的植物组织和地理来源中回收了细菌分离物,然后选择了那些在体外对韧皮部杆菌具有最强抑制火疫病症状能力和显著拮抗活性的分离物。它们都没有在烟草叶片上引发过敏反应,大多数分离物产生了多种水解酶,并且具有其他生物防治和/或促进植物生长的活性,如产生铁载体和溶解磷酸盐。这些被认为是生物防治候选物的分离物,通过 16S rRNA 测序鉴定为根际假单胞菌、黄单胞菌、癌肠杆菌、固氮假单胞菌、蔷薇多粘菌和粘质沙雷氏菌。这是首次报道后五种细菌对韧皮部杆菌具有生物防治潜力。

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