荧光假单胞菌对菜绿巨蝽的生物防治潜力及豆根总酚化合物的测定

M. Pas, H. Shahbazi, L. Ebrahimi
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Virulence of fungal isolates was evaluated in a greenhouse and one isolate with the highest pathogenicity was chosen for further experiments. The biocontrol potential of Received 29.01.2018/ Revised 27.03.2018/ Accepted 30.03.2018/ Published 04.04.2020 :تفايرد ٩ ١ / ١١ / ٧ ١٣٩ / :حلاصا ٠٧ / ١ ٠ / ٨ ١٣٩ / :شريذپ ١٠ / ٠٢ / ٨ ١٣٩ / :راشتنا ١٦ / ٠٢ / ٩ ١٣٩ D ow nl oa de d fr om n br .k hu .a c. ir at 2 :1 8 IR D T o n T ue sd ay A ug us t 2 5t h 20 20 .ناراكمه و ساپ چراق يتسيز راهم Macrophomina سانومودوس يرتكاب طسوت Pas et al. The biocontrol potential of Pseudomonas against Macrophomina 65 ٦٥ / eight Pseudomonas fluorescens strains, whose biocontrol abilities were proved in previous studies, was examined against M. phaseolina in vitro. The growth inhibition of M. phaseolina was examined by dual culture test and the antifungal activity of bacterial volatile and nonvolatile metabolites. 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引用次数: 1

摘要

粉蚧引起的炭腐病是最重要的土传病害之一,寄主范围广泛,包括豆类,每年都会对该植物造成严重危害。炭腐病的生物防治非常重要,因为它的化学防治会危害环境、微生物群落和土壤肥力。木炭腐烂的化学控制也很困难,有时甚至无效。荧光假单胞菌能够通过产生和分泌抗生素、酶、铁载体和植物激素来促进植物生长并抑制植物病原体的发育。在这项研究中,2015年夏天,从Khorramabad(伊朗洛雷斯坦省)受感染的豆田中采集了M.phaseolina感染的豆株。在温室中评估真菌分离株的毒力,并选择一个致病性最高的分离株进行进一步的实验。2018年1月29日收到/2018年3月27日修订/2018年2月30日接受/2020年4月4日发布的生物防治潜力1635;٩/:رابتنا١/٠٢/يتيراهم荧光假单胞菌的生防潜力在体外检测了八株荧光假单胞杆菌对相孢分枝杆菌的生防能力。通过双培养试验和细菌挥发性和非挥发性代谢产物的抗真菌活性,检测了相位木霉的生长抑制作用。选择对菌丝生长抑制作用最强的荧光假单胞菌UTPf125进行温室试验。UTPf125菌株显著降低了疾病的严重程度(%50),并显著增加了鲜重和干重。在病原体接种后1、3、5、7和9天评估酚类化合物。结果表明,接种后第3天和第5天总酚含量最高,第7天和第9天下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The biocontrol potential of Pseudomonas fluorescens against Macrophomina phaseolina and estimating the total phenol compounds of bean roots
Charcoal rot caused by Macrophomina phaseolina is one of the most important soil borne diseases with a broad host range including bean, which annually brings a significant damage to this plant. Biological control of charcoal rot is very important because its chemical control harms the environment, microflora and soil fertility. Chemical control of charcoal rot is also difficult and sometimes ineffective. Fluorescent Pseudomonads are able to increase plant growth and inhibit the development of plant pathogens by producing and secreting antibiotics, enzymes, siderophores, and plant hormones. In this study, infected bean plants by M. phaseolina were collected from infected bean fields of Khorramabad (Lorestan Province, Iran) in the summer of 2015. Virulence of fungal isolates was evaluated in a greenhouse and one isolate with the highest pathogenicity was chosen for further experiments. The biocontrol potential of Received 29.01.2018/ Revised 27.03.2018/ Accepted 30.03.2018/ Published 04.04.2020 :تفايرد ٩ ١ / ١١ / ٧ ١٣٩ / :حلاصا ٠٧ / ١ ٠ / ٨ ١٣٩ / :شريذپ ١٠ / ٠٢ / ٨ ١٣٩ / :راشتنا ١٦ / ٠٢ / ٩ ١٣٩ D ow nl oa de d fr om n br .k hu .a c. ir at 2 :1 8 IR D T o n T ue sd ay A ug us t 2 5t h 20 20 .ناراكمه و ساپ چراق يتسيز راهم Macrophomina سانومودوس يرتكاب طسوت Pas et al. The biocontrol potential of Pseudomonas against Macrophomina 65 ٦٥ / eight Pseudomonas fluorescens strains, whose biocontrol abilities were proved in previous studies, was examined against M. phaseolina in vitro. The growth inhibition of M. phaseolina was examined by dual culture test and the antifungal activity of bacterial volatile and nonvolatile metabolites. P. fluorescens UTPf125, which showed the highest inhibitory effect on the mycelial growth, was selected for greenhouse tests. UTPf125 strain led to a significant reduction (%50) of disease severity and increased fresh and dry weight significantly. Phenol compounds were evaluated 1, 3, 5, 7 and 9 days after inoculation by pathogen. The results showed that the highest value of total phenol content was obtained on the third and fifth days after inoculation, decreasing on the seventh and ninth days.
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