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>Crude Lipopeptides Produced by Bacillus amyloliquefaciens Could Control the Growth of Alternaria alternata and Production of Alternaria Toxins in Processing Tomato
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Crude Lipopeptides Produced by Bacillus amyloliquefaciens Could Control the Growth of Alternaria alternata and Production of Alternaria Toxins in Processing Tomato
Alternaria spp. and its toxins are the main contaminants in processing tomato. Based on our earlier research, the current study looked into the anti-fungal capacity of crude lipopeptides from B. amyloliquefaciens XJ-BV2007 against A. alternata. We found that the crude lipopeptides significantly inhibited A. alternata growth and reduced tomato black spot disease incidence. SEM analysis found that the crude lipopeptides could change the morphology of mycelium and spores of A. alternata. Four main Alternaria toxins were detected using UPLC-MS/MS, and the findings demonstrated that the crude lipopeptides could lessen the accumulation of Alternaria toxins in vivo and in vitro. Meanwhile, under the stress of crude lipopeptides, the expression of critical biosynthetic genes responsible for TeA, AOH, and AME was substantially down-regulated. The inhibitory mechanism of the crude lipopeptides was demonstrated to be the disruption of the mycelial structure of A. alternata, as well as the integrity and permeability of the membrane of A. alternata sporocytes. Taken together, crude lipopeptides extracted from B. amyloliquefaciens XJ-BV2007 are an effective biological agent for controlling tomato black spot disease and Alternaria toxins contamination.
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机译:链格孢属及其毒素是加工番茄的主要污染物。基于我们早期的研究,目前的研究考察了解淀粉芽孢杆菌 XJ-BV2007 粗脂肽对链格孢杆菌的抗真菌能力。我们发现粗脂肽显着抑制了 A. alternata 的生长并降低了番茄黑斑病的发生率。SEM 分析发现,粗脂肽可以改变 A. alternata 菌丝体和孢子的形态。使用 UPLC-MS/MS 检测了四种主要的链格孢霉毒素,结果表明粗脂肽可以减少链格孢霉毒素在体内和体外的积累。同时,在粗脂肽的压力下,负责 TeA 、 AOH 和 AME 的关键生物合成基因的表达大幅下调。粗脂肽的抑制机制被证明是破坏 A. alternata 的菌丝结构,以及 A. alternata 孢子细胞膜的完整性和通透性。综上所述,从解淀粉芽孢杆菌 XJ-BV2007 中提取的粗脂肽是控制番茄黑斑病和链格孢霉毒素污染的有效生物制剂。
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