State Key Laboratory of Rice Biology, Institute of Biotechnology, Zhejiang University, Hangzhou, China.
Mol Ecol. 2012 Mar;21(5):1294-304. doi: 10.1111/j.1365-294X.2012.05457.x. Epub 2012 Jan 23.
Plant-mediated interactions between herbivorous arthropods and pathogens transmitted by herbivores are important determinants of the population dynamics of both types of organisms in the field. The role of plant defence in mediating these types of tripartite interactions have been recognized but rarely examined especially at the physiological and molecular levels. Our previous work shows that a worldwide invasive whitefly can establish mutualism with the begomovirus Tomato yellow leaf curl China virus (TYLCCNV) via crop plants. Here, we show that TYLCCNV and betasatellite co-infection suppresses jasmonic acid defences in the plant. Impairing or enhancing defences mediated by jasmonic acid in the plant enhances or depresses the performance of the whitefly. We further demonstrate that the pathogenicity factor βC1 encoded in the betasatellite is responsible for the initiation of suppression on plant defences and contributes to the realization of the virus-vector mutualism. By integrating ecological, mechanistic and molecular approaches, our study reveals a major mechanism of the plant-mediated mutualism between a virus and its vector. As the test plant is an important economic crop, the results also have substantial implications for developing novel strategies for management of crop viruses and the insect vectors associated with them.
植物介导的植食性节肢动物与由其传播的病原体之间的相互作用,是这两类生物在野外种群动态的重要决定因素。植物防御在介导这些三方相互作用中的作用已得到认可,但很少在生理和分子水平上进行研究。我们之前的工作表明,一种全球性入侵的粉虱可以通过作物与番茄黄曲叶病毒(TYLCCNV)建立共生关系。在这里,我们表明 TYLCCNV 和β卫星共感染会抑制植物中的茉莉酸防御。植物中茉莉酸介导的防御的损害或增强会增强或削弱粉虱的性能。我们进一步证明,β卫星中编码的致病性因子βC1 负责启动对植物防御的抑制作用,并有助于实现病毒-载体共生关系。通过整合生态、机制和分子方法,我们的研究揭示了病毒与其载体之间植物介导共生的主要机制。由于测试植物是一种重要的经济作物,因此研究结果也为开发管理作物病毒及其相关昆虫载体的新策略提供了重要依据。