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活性氧相关基因参与硼调控的黄瓜绿斑驳花叶病毒感染抗性及西瓜相关过程。

Reactive oxygen species-related genes participate in resistance to cucumber green mottle mosaic virus infection regulated by boron in and watermelon.

作者信息

Guo Huiyan, Bi Xinyue, Wang Zhiping, Jiang Dong, Cai Ming, An Mengnan, Xia Zihao, Wu Yuanhua

机构信息

Liaoning Key Laboratory of Plant Pathology, College of Plant Protection, Shenyang Agricultural University, Shenyang, China.

Green Agricultural Technology Center of Liaoning Province, Shenyang, China.

出版信息

Front Plant Sci. 2022 Nov 11;13:1027404. doi: 10.3389/fpls.2022.1027404. eCollection 2022.

Abstract

Cucumber green mottle mosaic virus (CGMMV) infection causes acidification and rot of watermelon flesh, resulting in serious economic losses. It is widely reported the interaction relationship between boron and reactive oxygen species (ROS) in regulating normal growth and disease resistance in plants. Our previous results demonstrated that exogenous boron could improve watermelon resistance to CGMMV infection. However, the roles of ROS-related genes regulated by boron in resistance to CGMMV infection are unclear. Here, we demonstrated that CGMMV symptoms were alleviated, and viral accumulations were decreased by boron application in , indicating that boron contributed to inhibiting CGMMV infection. Meanwhile, we found that a number of differentially expressed genes (DEGs) associated with inositol biosynthesis, ethylene synthesis, Ca signaling transduction and ROS scavenging system were up-regulated, while many DEGs involved in ABA catabolism, GA signal transduction and ascorbic acid metabolism were down-regulated by boron application under CGMMV infection. Additionally, we individually silenced nine ROS-related genes to explore their anti-CGMMV roles using a tobacco rattle virus (TRV) vector. The results showed that , , and were required for CGMMV infection, while and played roles in resistance to CGMMV infection. The similar results were obtained in watermelon by silencing of , or expression using a pV190 vector. This study proposed a new strategy for improving plant resistance to CGMMV infection by boron-regulated ROS pathway and provided several target genes for watermelon disease resistance breeding.

摘要

黄瓜绿斑驳花叶病毒(CGMMV)感染会导致西瓜果肉酸化和腐烂,造成严重的经济损失。硼与活性氧(ROS)在调节植物正常生长和抗病性方面的相互作用关系已有广泛报道。我们之前的研究结果表明,外源硼可以提高西瓜对CGMMV感染的抗性。然而,硼调控的ROS相关基因在西瓜抗CGMMV感染中的作用尚不清楚。在此,我们证明了在西瓜中施用硼可减轻CGMMV症状并减少病毒积累,表明硼有助于抑制CGMMV感染。同时,我们发现,在CGMMV感染下,施用硼会上调一些与肌醇生物合成、乙烯合成、钙信号转导和ROS清除系统相关的差异表达基因(DEG),而下调许多参与脱落酸分解代谢、赤霉素信号转导和抗坏血酸代谢的DEG。此外,我们使用烟草脆裂病毒(TRV)载体单独沉默了9个ROS相关基因,以探究它们抗CGMMV的作用。结果表明, 、 、 和 是CGMMV感染所必需的,而 和 在抗CGMMV感染中发挥作用。通过使用pV190载体沉默 、 或 的表达,在西瓜中也获得了类似的结果。本研究提出了一种通过硼调节的ROS途径提高植物抗CGMMV感染的新策略,并为西瓜抗病育种提供了几个靶基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2dd/9691971/64cf99953c41/fpls-13-1027404-g001.jpg

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