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首页> 外文期刊>Australasian Plant Pathology >Suppressive effects of Bacillus spp. on mycelia, apothecia and sclerotia formation of Sclerotinia sclerotiorum and potential as biological control of white mold on mustard
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Suppressive effects of Bacillus spp. on mycelia, apothecia and sclerotia formation of Sclerotinia sclerotiorum and potential as biological control of white mold on mustard

机译:芽孢杆菌的抑制作用。对芥菜菌核菌的菌丝,上皮细胞和菌核的形成及对芥菜白霉病的生物防治潜力

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Biological control, especially with Bacillus-based biocontrol agents, offers an attractive alternative to synthetic pesticides for sustainable management of white mold disease caused by Sclerotinia sclerotiorum. In this study, eight effective Bacillus isolates were isolated from rhizospheric soil samples as potential bacterial biocontrol agents. Cultural, biochemical, and molecular analyses of 16S rDNA and gyrase subunit A (gyrA) confirmed that all isolates were identified as Bacillus amyloliquefaciens subsp. plantarum. The production of hydrolytic enzymes and the plant growth-promotional attributes of these isolates confirmed their multifaceted potential. Molecular analysis of the eight biosynthetic genes, which are related to antibiotic properties of bacilli, revealed that all of the isolates possess five genes: bacA for bacilysin, dfnM for difficidin, fenA for fengycin, ituA for iturin, and sfp for surfactin. The Bacillus isolates inhibited mycelial growth and suppressed formation of sclerotia during an in vitro test against S. sclerotiorum. Deformities and cell-wall lysis of mycelia, abnormalities of apothecia, and germination failure of ascospores through interaction with the Bacillus isolates were observed with light and scanning electron microscopes, suggesting that they have high antagonistic effects against S. sclerotiorum. Seed bacterization with the Bacillus isolates protected mustard seedlings in vitro up to 98 % against S. sclerotiorum. In a pot experiment, damages of mustard plants against the pathogen decreased up to 90 % after foliar spray of the Bacillus isolates. In addition, the isolates increased seed germination and accelerated seedling vigor of mustard, suggesting that they have plant growth-promoting functions.
机译:生物防治,尤其是使用基于芽孢杆菌的生物防治剂,可为合成农药的可持续控制提供有吸引力的替代方法,以治疗由菌核菌引起的白霉病。在这项研究中,从根际土壤样品中分离了八种有效的芽孢杆菌分离物作为潜在的细菌生物防治剂。对16S rDNA和回旋酶亚基A(gyrA)的文化,生化和分子分析证实,所有分离株均被鉴定为解淀粉芽孢杆菌亚种。车前草。这些分离物的水解酶的产生和植物生长促进特性证实了其多方面的潜力。对与细菌的抗生素特性有关的八个生物合成基因的分子分析显示,所有分离株均具有五个基因:杆菌肽的bacA,艰难梭菌素的dfnM,风霉素的fenA,伊图林的ituA和表面活性素的sfp。在体外针对核盘菌的测试中,芽孢杆菌分离物抑制了菌丝体的生长并抑制了菌核的形成。通过光学和扫描电子显微镜观察到菌丝体的变形和细胞壁溶解,紫杉醇的异常以及通过与芽孢杆菌分离物相互作用产生的子囊孢子的萌发失败,这表明它们对核盘菌具有很高的拮抗作用。用芽孢杆菌分离株进行的种子杀菌可在体外保护芥菜幼苗,使其抗菌核病菌高达98%。在盆栽实验中,叶面喷洒芽孢杆菌分离株后,芥菜植物对病原体的伤害降低了90%。此外,这些分离物增加了芥菜的种子发芽和加速了幼苗的活力,表明它们具有促进植物生长的功能。

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