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由 Phoma sp. GS8-3 和纳米硅诱导的系统性抗性对黄瓜花叶病毒的抗性。

Systemic resistance induced by Phoma sp. GS8-3 and nanosilica against Cucumber mosaic virus.

机构信息

Department of Agricultural Botany, Faculty of Agriculture, Kafrelsheikh University, Kafr Elsheikh, 33516, Egypt.

Life Science Research Center, Gifu University, 1-1 Yanagido, Gifu City, 501-1193, Japan.

出版信息

Environ Sci Pollut Res Int. 2020 Jun;27(16):19029-19037. doi: 10.1007/s11356-018-3321-3. Epub 2018 Oct 16.

Abstract

Cucumber mosaic virus (CMV) is a very serious hazard to vegetable production worldwide. This study is focused on evaluation of resistance stimulated by the plant growth-promoting fungus, Phoma sp. GS8-3, or nanosilica against CMV under pot and field conditions. The specific aim was to illustrate the mechanism of resistance stimulated by GS8-3 against CMV using microarray technology. Treatments with GS8-3 as well as nanosilica significantly decreased CMV severity and titer in tobacco and cucumber under pot and field conditions, respectively. Growth characters of tobacco and cucumber were significantly increased due to GS8-3 inoculation followed by nanosilica compared with control and BTH treatments. Microarray results showed highly upregulation of defense-related genes expression specially those related to heat shock proteins. Therefore, GS8-3 as well as nanosilica is suitable to serve as effective inducers against CMV in cucumber plants.

摘要

黄瓜花叶病毒(CMV)是全球蔬菜生产中非常严重的危害。本研究集中评估植物促生真菌(Phoma sp. GS8-3)或纳米硅对 CMV 的抗性在温室和田间条件下的作用。具体目的是利用微阵列技术阐明 GS8-3 对 CMV 诱导抗性的机制。温室和田间条件下,用 GS8-3 处理以及纳米硅处理均显著降低了烟草和黄瓜上 CMV 的严重度和滴度。与对照和 BTH 处理相比,GS8-3 接种后再用纳米硅处理显著增加了烟草和黄瓜的生长特性。微阵列结果表明,防御相关基因的表达高度上调,特别是与热休克蛋白相关的基因。因此,GS8-3 以及纳米硅可作为黄瓜植株中 CMV 的有效诱导剂。

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