首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >An endophytic Streptomyces sp strain DHV3-2 from diseased root as a potential biocontrol agent against Verticillium dahliae and growth elicitor in tomato (Solanum lycopersicum)
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An endophytic Streptomyces sp strain DHV3-2 from diseased root as a potential biocontrol agent against Verticillium dahliae and growth elicitor in tomato (Solanum lycopersicum)

机译:患病根的内生链霉菌属菌株DHV3-2作为潜在的生防菌,可对抗番茄黄萎病菌和番茄的生长引发剂(Solanum lycopersicum)

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摘要

Plant endophytes play important roles in biocontrol of plant diseases. Actinomycetes are used for biocontrol of fungal diseases caused by Verticillium dahliae. Many studies have focused on the endophytic actinomycetes isolated from the roots of healthy plants, but few on those from the roots of diseased plants. In the present research, actinomycetes were isolated from the roots of diseased and healthy tomato plants, respectively. The results showed that, in total, 86 endophytic actinomycetes were isolated for screening of their antimicrobial activities, 8 of which showed antagonism to V. dahliae in vitro. Among the 8 antagonistic strains, 5 (out of 36) were from the roots of diseased plants, with inhibition diameter zones ranging from 11.2 to 18.2 mm, whereas 3 (out of 50) were from the roots of healthy plants, with inhibition diameter zones ranging from 11.5 to 15.5 mm. Endophytic strain DHV3-2 was isolated from the root of a diseased plant and demonstrated a potent effect against V. dahliae and other pathogenic fungi by showing the largest inhibition diameter zones among all the eight antagonistic strains. Thus, strain DHV3-2 was chosen to investigate its biological control efficacies in vivo. Further study showed that the disease incidence and disease severity indices of tomato Verticillium wilt decreased significantly (P < 0.05). We also found that the plant shoot fresh weight and height increased greatly (P < 0.05) upon treatment with strain DHV3-2 compared to the plants uninoculated in greenhouse conditions. Root colonization showed that strain DHV3-2 had the higher root-colonizing capacity in the roots of infected plants compared with the roots of healthy plants. This isolate was identified as Streptomyces sp. based on morphological characteristics and 16S rRNA gene analysis. In conclusion, the roots of diseased tomato plants are a potential reservoir of biological control actinomycetes, and Streptomyces sp. strain DHV3-2 is a potential biocontrol agent against V. dahliae and growth elicitor in tomato.
机译:植物内生菌在植物病害的生物防治中起着重要作用。放线菌用于大黄萎病菌引起的真菌疾病的生物防治。许多研究集中在从健康植物的根部分离出的内生放线菌,但很少研究从患病植物的根部分离。在本研究中,放线菌分别从患病和健康番茄的根中分离出来。结果表明,总共分离出86种内生放线菌,以筛选其抗菌活性,其中8种在体外显示出对大丽弧菌的拮抗作用。在这8种拮抗菌株中,有5种(共36种)来自患病植物的根部,抑制直径带在11.2至18.2 mm范围内,而3种(共50种)来自健康植物的根部,具有抑制直径带。范围从11.5到15.5毫米。从患病植物的根中分离出内生菌株DHV3-2,并通过在所有8种拮抗菌株中显示出最大的抑菌直径区域,证明对V. dahliae和其他病原真菌具有有效作用。因此,选择菌株DHV3-2来研究其在体内的生物防治效果。进一步的研究表明,番茄黄萎病的发病率和病情严重程度指数均显着降低(P <0.05)。我们还发现,与未在温室条件下接种的植物相比,用DHV3-2菌株处理后,植物的新芽鲜重和高度大大增加(P <0.05)。根定殖表明,与健康植物的根相比,DHV3-2菌株在被感染植物的根中具有更高的根定殖能力。该分离物被鉴定为链霉菌。基于形态特征和16S rRNA基因分析。总之,患病番茄植株的根是潜在的生物控制放线菌和链霉菌种。 DHV3-2菌株是针对番茄中的大丽花蛾和生长引发剂的潜在生物防治剂。

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