Chen Peng, Zhou Xianhong, Wang Haiting, Zhang Xiuxia, Wang Lei, Gao Huanhuan, Zhuang Qianying, Li Heqin, Zhang Ansheng
Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan 250100, China.
Shandong Key Laboratory for Green Prevention and Control of Agricultural Pests, Jinan 250100, China.
Plants (Basel). 2024 Oct 9;13(19):2822. doi: 10.3390/plants13192822.
Strawberry is frequently attacked by mites, which directly affects the yield and quality of this fruit species. The WRKY Group III transcription factors (TFs) play an important role in plant tolerance to biotic sources of stress, such as pathogens and insect pests. In this study, six Group III WRKY TFs (, , , , , and ) were identified in strawberry. A phylogenetic analysis showed that the six WRKY III TFs were divided into two clades and all had a conserved WRKYGQK domain and the C-X-C-X-H-T-C zinc finger motif. An interaction network analysis revealed that FaWRKY44 was co-expressing with FaWRKY25 and FaWRKY45. The expression patterns showed that the WRKY Group III genes responded to plant hormones and mite infestation in strawberry. To further verify the role of in plant resistance to mites, we cloned the gene and overexpressed it in transgenic plants. An in vivo subcellular localization analysis indicated that the FaWRKY25 protein was localized in the nucleus. Fewer mites were also detected on the wild-type plants than on -overexpressing transgenic plants, suggesting that negatively regulates the resistance of strawberry to mites. The present study advances our understanding on a potential target that mites use to manipulate host plant defenses.
草莓经常受到螨类的侵害,这直接影响了该水果品种的产量和品质。WRKY III类转录因子在植物对生物胁迫源(如病原体和害虫)的耐受性中发挥着重要作用。在本研究中,在草莓中鉴定出六个III类WRKY转录因子(、、、、、和)。系统发育分析表明,这六个WRKY III转录因子分为两个进化枝,并且都具有保守的WRKYGQK结构域和C-X-C-X-H-T-C锌指基序。相互作用网络分析显示,FaWRKY44与FaWRKY25和FaWRKY45共表达。表达模式表明,III类WRKY基因对草莓中的植物激素和螨类侵染有响应。为了进一步验证在植物抗螨性中的作用,我们克隆了基因并在转基因植物中过表达。体内亚细胞定位分析表明,FaWRKY25蛋白定位于细胞核。在野生型植物上检测到的螨类比过表达转基因植物上的少,这表明负向调节草莓对螨类的抗性。本研究增进了我们对螨类用于操纵宿主植物防御的潜在靶点的理解。