首页> 外文期刊>Canadian journal of microbiology >Potato-associated bacteria and their antagonistic potential towards plant-pathogenic fungi and the plant-parasitic nematode Meloidogyne incognita (Kofoid & White) Chitwood.
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Potato-associated bacteria and their antagonistic potential towards plant-pathogenic fungi and the plant-parasitic nematode Meloidogyne incognita (Kofoid & White) Chitwood.

机译:马铃薯相关细菌及其对植物致病真菌和植物寄生线虫Meloidogyne incognita(Kofoid&White)Chitwood的拮抗潜力。

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To study the effect of microenvironments on potato-associated bacteria, the abundance and diversity of bacteria isolated from the rhizosphere, phyllosphere, endorhiza, and endosphere of field grown potato was analyzed. Culturable bacteria were obtained after plating on R2A medium. The endophytic populations averaged 10(3) and 10(5) CFU/g (fresh wt.) for the endosphere and endorhiza. respectively, which were lower than those for the ectophytic microenvironments, with 10(5) and 10(7) CFU/g (fresh wt.) for the phyllosphere and rhizosphere, respectively. The composition and richness of bacterial species was microenvironment-dependent. The occurrence and diversity of potato-associated bacteria was additionally monitored by a cultivation-independent approach using terminal restriction fragment length polymorphism analysis of 16S rDNA. The patterns obtained revealed a high heterogeneity of community composition and suggested the existence of microenvironment-specific communities. In an approach to measure the antagonistic potential of potato-associated bacteria, a total of 440 bacteria was screened by dual testing for in vitro antagonism towards the soilborne pathogens Verticillium dahliae and Rhizoctonia solani. The proportion of isolates with antagonistic activity was highest for the rhizosphere (10%), followed by the endorhiza (9%), phyllosphere (6%), and endosphere (5%). All 33 fungal antagonists were characterized by testing their in vitro antagonistic mechanisms, including their glucanolytic, chitinolytic, pectinolytic, cellulolytic, and proteolytic activity, and by their BOX-PCR fingerprints. In addition, they were screened for their biocontrol activity against Meloidogyne incognita. Overall, nine isolates belonging to Pseudomonas and Streptomyces species were found to control both fungal pathogens and M. incognita and were therefore considered as promising biological control agents.
机译:为了研究微环境对马铃薯相关细菌的影响,分析了田间种植马铃薯的根际,根际,内生菌和内胚层细菌的丰度和多样性。在R2A培养基上铺板后,获得可培养细菌。内球和内吸菌的内生菌群平均为10(3)和10(5)CFU / g(新鲜重量)。分别比原生质微环境低,在叶层和根际分别为10(5)和10(7)CFU / g(新鲜重量)。细菌种类的组成和丰富度取决于微环境。马铃薯相关细菌的发生和多样性还通过使用16S rDNA的末端限制性片段长度多态性分析的独立于栽培的方法进行了监测。获得的模式揭示了群落组成的高度异质性,并暗示了微环境特异性群落的存在。在一种测量马铃薯相关细菌拮抗潜力的方法中,通过双重测试筛选了440种细菌,以对土壤传播的病原体黄萎病菌和茄形假单胞菌进行体外拮抗。具有拮抗活性的分离株的比例在根际最高(10%),其次是内生菌(9%),叶球(6%)和内球(5%)。通过测试它们的体外拮抗机制(包括其葡萄糖分解,壳多糖分解,果胶分解,纤维素分解和蛋白水解活性)以及BOX-PCR指纹图谱,对所有33种真菌拮抗剂进行了表征。另外,筛选了它们对根结线虫的生物防治活性。总体上,发现属于假单胞菌属和链霉菌属的九种分离物既可以控制真菌病原体又可以控制隐身支原体,因此被认为是有前途的生物防治剂。

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