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四霉素对猕猴桃软腐病原菌链格孢的抑菌活性及作用机制

Antifungal activity and mechanism of tetramycin against Alternaria alternata, the soft rot causing fungi in kiwifruit.

作者信息

Li Wenzhi, Long Youhua, Yin Xianhui, Wang Weizhen, Zhang Rongquan, Mo Feixu, Zhang Zhuzhu, Chen Tingting, Chen Jia, Wang Bingce, Chen Xuetang

机构信息

Research Center for Engineering Technology of Kiwifruit, Institute of Crop Protection, College of Agriculture, Guizhou University, Guiyang, 550025, China.

Research Center for Engineering Technology of Kiwifruit, Institute of Crop Protection, College of Agriculture, Guizhou University, Guiyang, 550025, China; Teaching Experiment Farm, Guizhou University, Guiyang 550025, China.

出版信息

Pestic Biochem Physiol. 2023 May;192:105409. doi: 10.1016/j.pestbp.2023.105409. Epub 2023 Mar 27.

Abstract

Kiwifruit rot caused by the fungus Alternaria alternata occurs in many countries, leading to considerable losses during kiwifruit production. In this study, we evaluated the antifungal activity and mechanism of tetramycin against kiwifruit soft rot caused by Alternaria alternata. Tetramycin exerted antifungal effects through the suppression of mycelial growth, conidial germination, and the pathogenicity of A. alternata. Scanning electron microscopic observations revealed that tetramycin destroyed the mycelial structure, causing the mycelia to twist, shrink, and even break. Furthermore, transmission electron microscopy revealed that tetramycin caused severe plasmolysis and a decrease in cell inclusions, and the cell wall appeared thinner with blurred boundaries. In addition, tetramycin destroyed cell membrane integrity, resulting in the leakage of cellular components such as nucleic acids and proteins in mycelial suspensions. Moreover, tetramycin also caused cell wall lysis by enhancing the activities of chitinase and β-1,3-glucanase and inducing the overexpression of related chitinase gene (Chit) and β-1,3-glucanase gene (β-1,3-glu) in A. alternata. In field trials, tetramycin not only decreased the incidence of kiwifruit rot but also create a beneficial living space for kiwifruit growth. Overall, this study indicated that the application of tetramycin could serve as an alternative measure for the management of kiwifruit rot.

摘要

由链格孢菌引起的猕猴桃腐烂病在许多国家都有发生,导致猕猴桃生产过程中遭受重大损失。在本研究中,我们评估了四霉素对链格孢菌引起的猕猴桃软腐病的抗真菌活性及其作用机制。四霉素通过抑制链格孢菌的菌丝生长、分生孢子萌发和致病性发挥抗真菌作用。扫描电子显微镜观察显示,四霉素破坏了菌丝结构,导致菌丝扭曲、收缩甚至断裂。此外,透射电子显微镜显示,四霉素导致严重的质壁分离和细胞内含物减少,细胞壁变薄且边界模糊。此外,四霉素破坏了细胞膜的完整性,导致菌丝悬浮液中的核酸和蛋白质等细胞成分泄漏。此外,四霉素还通过增强几丁质酶和β-1,3-葡聚糖酶的活性以及诱导链格孢菌中相关几丁质酶基因(Chit)和β-1,3-葡聚糖酶基因(β-1,3-glu)的过表达,引起细胞壁溶解。在田间试验中,四霉素不仅降低了猕猴桃腐烂病的发病率,还为猕猴桃生长创造了有利的生存空间。总体而言,本研究表明,施用四霉素可作为防治猕猴桃腐烂病的替代措施。

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