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首页> 外文期刊>Biocontrol Science and Technology >Potential of natamycin in enhancing the antagonistic activity of Bacillus amyloliquefaciens BGP20 against post-harvest bacterial soft rot of green pepper
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Potential of natamycin in enhancing the antagonistic activity of Bacillus amyloliquefaciens BGP20 against post-harvest bacterial soft rot of green pepper

机译:那他霉素增强解淀粉芽孢杆菌BGP20对青椒收获后细菌软腐的拮抗活性的潜力

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Bacillus amyloliquefaciens BGP20 is a promising antagonist in controlling post-harvest bacterial soft rot of vegetables caused by Erwinia carotovora subsp. carotovora (Ecc). The objective of this study was to screen a kind of natural and safe additive which could enhance the bio-control activity of BGP20 against post-harvest bacterial soft rot of green pepper. The results of this study indicated that the additive natamycin had stronger inhibition against the pathogen Ecc compared with bamboo vinegar and chitosan in the 2x Yeast extract and Tryptone (2YT) medium. However, natamycin had a slight negative effect on the growth of BGP20 in the 2YT medium. In preventative treatments, natamycin significantly improved the bio-efficacy of BGP20, and enhanced its competitive position against Ecc in the wounds of green pepper. Compared with the treatment with BGP20 alone, the viable count of BGP20 after 72 h of incubation increased by 115.8% in the wounds of green pepper treated with BGP20 and 0.1% natamycin, while that of Ecc decreased by 92.1%. In addition, natamycin remarkably promoted the flocculation of Ecc cells in the 2YT medium, while promoting the dispersion of BGP20. Natamycin had no negative effects on the spore germination of BGP20 and its shelf life. These results indicated that natamycin had perfect compatibility with the antagonist BGP20, and it had a great potential in enhancing the bio-control activity of BGP20 against post-harvest bacterial soft rot of green pepper in preventative treatments.
机译:淀粉芽孢杆菌BGP20是一种有前途的拮抗剂,可用于控制由胡萝卜欧文氏菌亚种引起的蔬菜收获后细菌软腐病。胡萝卜(Ecc)。这项研究的目的是筛选一种天然和安全的添加剂,可以增强BGP20对青椒采后细菌软腐的生物防治活性。这项研究的结果表明,在2x酵母提取物和胰蛋白((2YT)培养基中,添加的游霉素比竹醋和壳聚糖对病原体Ecc的抑制作用更强。但是,纳他霉素对2YT培养基中BGP20的生长有轻微的负面影响。在预防性治疗中,纳他霉素显着提高了BGP20的生物功效,并增强了其在青椒伤口中对Ecc的竞争地位。与单独使用BGP20的处理相比,在经过BGP20和0.1%游霉素处理的青椒伤口中,孵育72小时后BGP20的存活数量增加了115.8%,而Ecc的减少了92.1%。此外,那他霉素显着促进2YT培养基中Ecc细胞的絮凝,同时促进BGP20的分散。纳他霉素对BGP20的孢子萌发及其保质期没有负面影响。这些结果表明那他霉素与拮抗剂BGP20具有完美的相容性,并且在预防性治疗中具有增强BGP20对青椒收获后细菌软腐的生物防治活性的巨大潜力。

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