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首页> 外文期刊>Pesticide Biochemistry and Physiology >Biocontrol of tobacco black shank disease (Phytophthora nicotianae) by Bacillus velezensis Ba168
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Biocontrol of tobacco black shank disease (Phytophthora nicotianae) by Bacillus velezensis Ba168

机译:烟草黑柄病(植物北肠烟碱)Bacillussclyzensis ba168

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Tobacco black shank (TBS) caused by Phytophthora nicotianae is destructive to almost all tobacco cultivars and is widespread in many tobacco-growing countries. Through lab study and field test, we isolated plant growth-promoting rhizobacteria (PGPR) strain Ba168 which is a promising biocontrol strain of TBS. Ba168 was isolated from 168 soil samples and identified as Bacillus velezensis by its genetic and phenotypic characteristics. A susceptibility test indicated that the P. nicotianae antagonistic materials of Ba168 in extracellular metabolites were composed of effective and stable proteins/peptides. P. nicotianae's growth was suppressed by the ammonium sulfate precipitation of Ba168 culture filtrates (ASPBa) at a minimum inhibitory concentration of 5 mu g/mL. Extracellular conductivity, pH, and the wet/dry weights of P. nicotianae's mycelia, along with scanning electron microscope analysis, suggested that Bal 68-derived proteins/peptides could effectively inhibit P. nicotianae by causing irreversible damage to its cell walls and membranes. Protein identification of ASPBa supported these results and identified many key proteins responsible for various biocontrol-related pathways. Field assays of TBS control efficacy of many PGPRs and agrochemicals showed that all PGPR preparations reduced the disease index of tobacco, but Ba168 was the most effective. These results demonstrated the importance of Bacillus-derived proteins/peptides in the inhibition of P. nicotianae through irreversible damage to its cell wall and membrane; and the effectiveness of PGPR strain B. velezensis Ba168 for biocontrol of the soil-borne disease caused by P. nicotianae.
机译:烟草黑柄(TBS)由植物冬季烟草引起的,几乎所有烟草品种都具有破坏性,并且在许多烟草生长国家普及。通过实验室研究和现场测试,我们分离出植物生长促进的根瘤菌(PGPR)菌株BA168,其是TBS的有前途的生物控制菌株。 Ba168从168个土壤样品中分离出来,通过其遗传和表型特征鉴定为Bacillus Velezensis。易感测试表明,Ba168在细胞外代谢物中的尼古特氏拮抗材料由有效且稳定的蛋白质/肽组成。 P. Nicotianae的生长受到Ba168培养物滤液(ASPBA)的硫酸铵沉淀,以最小抑制浓度为5μg/ ml。细胞外电导率,pH和湿/干重的P. Nicotianae的菌丝体,以及扫描电子显微镜分析表明,BAL 68衍生的蛋白/肽可以通过对其细胞壁和膜引起不可逆转的损伤来有效地抑制P. Nicotianae。蛋白质鉴定ASPBA支持这些结果,并确定了负责各种生物控制相关途径的许多关键蛋白质。许多PGPRS和农用化学品的TBS控制效果的田间测定表明,所有PGPR制剂都降低了烟草的疾病指数,但BA168是最有效的。这些结果证明了芽孢杆菌衍生的蛋白质/肽在抑制烟草中的抑制作用通过对其细胞壁和膜的不可逆损伤; PGPR菌株B.Velezensis Ba168对P. Nicotianae引起的土壤传播疾病生物控制的效果。

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