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首页> 外文期刊>Canadian Journal of Soil Science >Isolation, identification, and assessment of soil bacteria as biocontrol agents of pea root rot caused by Aphanomyces euteiches
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Isolation, identification, and assessment of soil bacteria as biocontrol agents of pea root rot caused by Aphanomyces euteiches

机译:土壤细菌的分离,鉴定和评估作为豌豆根腐的生物控制剂euteiches

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Aphanomyces euteiches is a soil-borne pathogen that causes root rot of pea and can significantly affect pea production in western Canada. This study aimed to isolate and identify soil bacteria with antagonistic activity towards A. euteiches mycelial and zoospore developmental stages under in vitro conditions and assess their potential as biocontrol agents against aphanomyces root rot in field pea under growth chamber conditions. In vitro screening of soil bacteria identified 184 antagonistic isolates, including 22 from an existing culture collection. Mean mycelial growth inhibition zones ranged from 1 to 12 mm, and mean zoospore germination inhibition ranged from 0% to 100%. Use of 16S rDNA sequence analysis placed isolates into 18 different bacterial genera. Screening of 47 bacteria that inhibited both infective stages identified 29 potential biocontrol strains, including Rhizobium spp. that significantly (a = 0.05) suppressed aphanomyces root rot in field pea grown in vermiculite, suggesting the intriguing possibility of using N-fixing Rhizobium inoculants as biocontrol agents for aphanomyces control. Further screening of 20 isolates as soil inoculants identified K-Hf-L9 (Pseudomonas fluorescens), PSV1-7 (Pantoea agglomerans), and K-Hf-H2 (Lysobacter capsici) isolates as having the highest biocontrol activity, significantly (a = 0.05) suppressing aphanomyces root rot in field pea in growth chamber trials. This study demonstrates the possibility of aphanomyces root rot management using biocontrol agents.
机译:Aphanomyces euteiches是一种土壤传播的病原体,导致豌豆的根腐烂,可以显着影响加拿大西部的豌豆生产。本研究旨在将土壤细菌分离和鉴定拮抗活性的敌人,毒性活性在体外条件下菌丝和Zoospore发育阶段,并评估其在生长室条件下对野生豌豆的抗蚜族根腐蚀的潜力。体外筛查土壤细菌鉴定了184个拮抗分离株,其中包括来自现有的培养物收集。平均菌丝体生长抑制区范围为1至12mm,并且平均Zoospore萌发抑制范围为0%至100%。使用16S rDNA序列分析将分离物分为18种不同的细菌属。筛选47个细菌,抑制了两种感染阶段,鉴定了29个潜在的生物防治菌株,包括rhizobium spp。显着(a = 0.05)抑制了在蛭石中生长的豌豆中的蚜族菌根腐烂,表明使用N固定的根茎酸作为脂族控制剂的抗血管酸酯剂的诱人可能性。进一步筛选20个分离物,作为土壤抗原体鉴定K-HF-L9(假单胞菌荧光型),PSV1-7(Pantoea algGlomerans)和K-HF-H2(粘结曲谱胶囊)分离物,其具有最高的生物控制活性,显着(a = 0.05 )在生长室试验中抑制在野生豌豆中的Aphanomyces根腐烂。本研究证明了使用生物控制剂的Aphanomyces根腐毒管理的可能性。

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