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首页> 外文期刊>Microbiological Research >Evaluation of in vitro and in vivo nematicidal potential of a multifunctional streptomycete, Streptomyces hydrogenans strain DH16 against Meloidogyne incognita
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Evaluation of in vitro and in vivo nematicidal potential of a multifunctional streptomycete, Streptomyces hydrogenans strain DH16 against Meloidogyne incognita

机译:多功能链霉菌,氢链霉菌DH16菌株对根结线虫的体外和体内杀线虫潜力的评估

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摘要

The present work demonstrated the nematicidal potential of Streptomyces hydrogenans strain DH16 (a strain with strong antagonism against fungal phytopathogens and insect pest) against Meloidogyne incognita. The culture supernatant and solvent extract significantly inhibited egg hatching (almost 100%) along with J2 mortality of more than 95% after 96 h. The nematicidal activity of 10-(2,2-dimethyl-cyclohexyl)6,9-dihydroxy-4,9-dimethyl-dec-2-enoic acid methyl ester (SH2; a new antifungal compound) purified from this streptomycete was also evaluated using different concentrations. The juvenile mortality of the nematode increased with increasing concentration and exposure time and reached the maximum (95%) after 96 hat concentration of 100 After 160 h of incubation, egg hatch of 16% was observed at concentration of 100 mu g/ml as compared to control where 100% egg hatching was achieved. However, at the highest concentration of the compound (200 mu g/ml), 100% J2 mortality and 0% egg hatching were observed after 72 and 160 h of incubation, respectively. In vivo pot experiments further revealed the nematicidal potential of S. hydrogenans where soil drenching with its culture supernatant and cells effectively controlled root galls, egg masses in nematode infested tomato plants and at the same time promoted the growth of tomato plants. Additionally, in the absence of nematodes, soil drenching with culture supernatant and cells significantly enhanced the various agronomic traits of plants as compared to control plants. Thus, the outcomes of the current study endorse the potential of S. hydrogenans strain DH16 and its metabolites to be developed as safe nematicidal and plant growth promoting agents. (C) 2016 Elsevier GmbH. All rights reserved.
机译:目前的工作证明了氢链霉菌菌株DH16(对真菌植物病原体和害虫具有强烈拮抗作用的菌株)对根结线虫的杀线虫潜力。培养上清液和溶剂提取物显着抑制卵孵化(几乎100%),96小时后J2死亡率超过95%。还评估了从该链霉菌属中纯化的10-(2,2-二甲基-环己基)6,9-二羟基-4,9-二甲基-癸-2-烯酸甲酯(SH2;一种新的抗真菌化合物)的杀线虫活性使用不同的浓度。线虫的幼虫死亡率随着浓度和暴露时间的增加而增加,并在96帽浓度为100的条件下达到最高(95%)。孵化160小时后,在100μg / ml浓度下观察到卵孵化率为16%控制实现100%卵孵化的位置。然而,在化合物的最高浓度(200μg / ml)下,孵育72和160小时后分别观察到100%的J2死亡率和0%的卵孵化率。体内盆栽试验进一步揭示了氢链霉菌的杀线虫潜力,在土壤中浸透其培养上清液和细胞可有效控制线虫侵染的番茄植株的根胆,卵团,同时促进番茄植株的生长。另外,在没有线虫的情况下,与对照植物相比,用培养物上清液和细胞浸透的土壤显着增强了植物的各种农艺性状。因此,本研究的结果证实了产氢链球菌菌株DH16及其代谢物被开发为安全的杀线虫剂和植物生长促进剂的潜力。 (C)2016 Elsevier GmbH。版权所有。

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