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AF01产生的脂肽对火龙果病害的生物防治潜力

Biocontrol potential of lipopeptides produced by AF01 against in pitaya.

作者信息

Lin Shanyu, Chen Xiaohang, Xie Ling, Zhang Yan, Zeng Fenghua, Long Yanyan, Ren Liyun, Qi Xiuling, Wei Jiguang

机构信息

College of Agriculture, Guangxi University, Nanning, China.

Key Laboratory of Green Prevention and Control on Fruits and Vegetables in South China Ministry of Agriculture and Rural Affairs, Guangxi Key Laboratory of Biology for Crop Diseases and Insect Pests, Plant Protection Research Institute, Guangxi Academy of Agricultural Science, Nanning, Guangxi, China.

出版信息

Front Microbiol. 2023 May 17;14:1188722. doi: 10.3389/fmicb.2023.1188722. eCollection 2023.

Abstract

Pitaya canker, caused by , is one of the most important fungal diseases that cause significant losses in production. To replace chemical pesticides, the use of biocontrol strains to manage plant diseases has been the focus of research. In this study, the bacterial strain AF01, identified as , exhibited significant antifungal effects against and four other pitaya fungal pathogens. The strain AF01 produces 13 fusaricidins, which directly inhibit mycelial growth, spore germination and germ tube elongation by causing the membrane integrity and cell ultrastructure to incur irreversible damage. Pot experiment and yield test confirmed that AF01 provided preservative effects by reducing the disease index. In comparison to the untreated control groups, RNA-seq data showed that AF01 selectively blocked some transcription and translation processes and inhibited RNA and DNA structural dynamics, energy production and conversion, and signal transduction, particularly cell wall biosynthesis, changes in membrane permeability, and impairment of protein biosynthesis. Thus, AF01 could be potentially useful as a suitable biocontrol agent for pitaya canker.

摘要

由[病原菌名称未给出]引起的火龙果溃疡病是导致产量严重损失的最重要真菌病害之一。为了替代化学农药,利用生防菌株防治植物病害一直是研究的重点。在本研究中,鉴定为[菌株名称未给出]的细菌菌株AF01对[病原菌名称未给出]和其他四种火龙果真菌病原体表现出显著的抗真菌作用。菌株AF01产生13种镰孢菌素,通过导致膜完整性和细胞超微结构遭受不可逆损伤,直接抑制菌丝生长、孢子萌发和芽管伸长。盆栽试验和产量测试证实,AF01通过降低病情指数提供了防治效果。与未处理的对照组相比,RNA测序数据表明,AF01选择性地阻断了一些转录和翻译过程,抑制了RNA和DNA结构动态、能量产生和转换以及信号转导,特别是细胞壁生物合成、膜通透性变化和蛋白质生物合成受损。因此,AF01作为火龙果溃疡病的合适生防剂可能具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/335e/10231640/7eb09ace4b1d/fmicb-14-1188722-g001.jpg

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