香蕉芽孢杆菌gun -1190对苹果苦腐病的防治效果研究

IF 1.8 3区 农林科学 Q2 PLANT SCIENCES
Hyeonjin Park, Younmi Lee, Kotnala Balaraju, Jungyeon Kim, Yongho Jeon
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引用次数: 0

摘要

人工合成杀菌剂的应用造成了环境污染和对非目标物种的不良影响。为了减少农用化学品的使用,作物病害管理需要微生物生物防治剂。芽孢杆菌相关属产生次生代谢物来控制真菌病原体。从土壤中分离到的velezensis gun -1190对苹果炭疽病病原菌核桃炭疽杆菌(Colletotrichum fructicola)有拮抗作用。GYUN-1190的挥发性有机物和培养滤液(CF)对果霉体外生长的抑制作用分别为80.9%和30.25%。在10 8 cfu/ml时,gun -1190比细胞悬液更能抑制病原菌孢子的萌发。此外,GYUN-1190 CF对果霉菌丝生长有较好的抑制作用,对苹果果实苦腐病的抑制效果优于GYUN-1190细胞悬浮液和嘧菌酯。与阳性对照和gun -1190细胞悬液相比,在培养液中浸泡48 h后,果霉菌丝的生长被完全抑制。利用GYUN-1190的全基因组序列确定了其生物防治特性的遗传机制,并与同类菌株进行了密切比较。共4240653 bp, GC含量45.9%,编码序列4142条,tRNA基因87条,rRNA基因28条。基因组调查发现了14个假定的次生代谢物生物合成基因簇。研究表明,velezensis gun -1190可能比化学杀菌剂更有效,可以发挥其作为生物防治剂的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization and Biocontrol Efficacy of Bacillus velezensis GYUN-1190 against Apple Bitter Rot.

The application of synthetic fungicides has resulted in environmental pollution and adverse effects on non-target species. To reduce the use of agrochemicals, crop disease management requires microbial biological control agents. Bacillus-related genera produce secondary metabolites to control fungal pathogens. Bacillus velezensis GYUN-1190, isolated from soil, showed antagonistic activity against Colletotrichum fructicola, the apple anthracnose pathogen. Volatile organic compounds and culture filtrate (CF) from GYUN-1190 inhibited C. fructicola growth in vitro, by 80.9% and 30.25%, respectively. The CF of GYUN-1190 inhibited pathogen spore germination more than cell suspensions at 10 8 cfu/ml. Furthermore, GYUN-1190 CF is effective in inhibiting C. fructicola mycelial growth in vitro, and it suppresses apple fruit bitter rot more effectively than GYUN-1190 cell suspensions and pyraclostrobin in planta. The mycelial growth of C. fructicola was completely inhibited 48 h after immersion into the CF, in compared with positive controls and GYUN-1190 cell suspensions. The genetic mechanism underlying the biocontrol features of GYUN-1190 was defined using its whole-genome sequence, which was closely compared to similar strains. It consisted of 4,240,653 bp with 45.9% GC content, with 4,142 coding sequences, 87 tRNA, and 28 rRNA genes. The genomic investigation found 14 putative secondary metabolite biosynthetic gene clusters. The investigation suggests that B. velezensis GYUN-1190 might be more effective than chemical fungicides and could address its potential as a biological control agent.

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来源期刊
Plant Pathology Journal
Plant Pathology Journal 生物-植物科学
CiteScore
4.90
自引率
4.30%
发文量
71
审稿时长
12 months
期刊介绍: Information not localized
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