筛选细菌拮抗剂研制抗淀粉性欧文氏菌有效鸡尾酒

Q4 Agricultural and Biological Sciences
D. Choi, Hyunchul Choi, Yeon Ju Kim, Yeon-jeong Lim, Ingyeong Lee, D. Park
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引用次数: 1

摘要

几种化学杀菌剂已被用于控制火疫病。然而,它们的过度使用会导致环境恶化。因此,一些研究人员分析了拮抗微生物作为有前途、有效和安全的生物控制剂(BCAs)。本研究的主要目的是筛选潜在的拮抗细菌,以抑制嗜淀粉欧文氏菌。在研究的45个菌株中,有5个菌株对淀粉样大肠杆菌显示出最大的抑制区。16S rRNA基因测序鉴定它们为解淀粉芽孢杆菌(KPB 15)、平流层芽孢杆菌(KPB 21)、高原芽孢杆菌(KPI 25)、安全芽孢杆菌(毕马威31)和枯草芽孢杆菌(肯尼亚芽孢杆菌39)。KPB25和KPB31使未成熟苹果枯萎病的危害程度降低了50%,且互不拮抗。因此,选用KPB25和31研制了一种抗火疫病的拮抗剂。尽管含有KPB 25和31的混合物显示出略微增加的减少未成熟果实损伤大小的能力,但与单独的每个菌株相比,它们在减少淀粉样大肠杆菌种群方面没有表现出协同作用。尽管如此,我们已经确定这两种菌株是有用的新型BCA,可以对抗火疫病,具有额外的益处、安全性和潜力,可以在不损失其活性的情况下开发混合物,因为它们之间没有拮抗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Screening of Bacterial Antagonists to Develop an Effective Cocktail against Erwinia amylovora
Several types of chemical bactericides have been used to control fire blight. However, their excessive usage leads to environmental deterioration. Therefore, several researchers have analyzed antagonistic microorganisms as promising, effective, and safe biological control agents (BCAs). The primary aim of this study was to screen for potential antagonistic bacteria that suppress Erwinia amylovora. Among the 45 isolates studied, 5 strains showed the largest inhibition zone against E. amylovora. 16S rRNA gene sequencing identified them as Bacillus amyloliquefaciens (KPB 15), B. stratosphericus (KPB 21), B. altitudinis (KPB 25), B. safensis (KPB 31), and B. subtilis (KPB 39). KPB 25 and 31 reduced the lesion size of fire blight by 50% in immature apple fruits, and did not show antagonism against each other. Therefore, KPB 25 and 31 were selected to develop an antagonistic mixture against fire blight. Although the mixture with KPB 25 and 31 showed a slightly increased ability to reduce lesion size on immature fruits, they did not exhibit a synergistic effect in reducing E. amylovora population compared to each strain alone. Nevertheless, we have identified these two strains as useful and novel BCAs against fire blight with additional benefits safety and potential in developing a mixture without loss of their activity, owing to the absence of antagonism against each other.
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来源期刊
Research in Plant Disease
Research in Plant Disease Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.20
自引率
0.00%
发文量
23
审稿时长
18 weeks
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