Institute of Insect Sciences, College of Agriculture, Yangtze University, Jingzhou, Hubei, China.
Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.
J Exp Bot. 2019 Jun 28;70(12):3343-3355. doi: 10.1093/jxb/erz152.
The whitefly Bemisia tabaci is an important pest of worldwide agriculture. Previous work has shown that B. tabaci actively suppresses host plant defenses, but our knowledge of the specific mechanisms involved remains limited. Here we describe a B. tabaci salivary protein, the ferritin BtFer1, and its role in facilitating exploitation of host plants. We show that BtFer1 exhibits Fe2+ binding ability and ferroxidase activity, and that secretion of BtFer1 during B. tabaci feeding suppresses H2O2-generated oxidative signals in tomato (Solanum lycopersicum). Silencing BtFer1 enhanced the induction of the jasmonic acid (JA)-mediated defense signaling pathway in response to whitefly feeding, and led to increased callose deposition and the production of proteinase inhibitors that prevent whiteflies from continuously ingesting and digesting phloem sap. Consistent with these effects, silencing BtFer1 reduced whitefly survival on tomato but not on artificial diet. Using a JA-deficient spr2 mutant plant further showed that suppression of JA defenses by BtFer1 is sufficient to increase B. tabaci survival. Taken together, these results demonstrate that BtFer1 acts as an effector protein that mediates whitefly-tomato interactions. These findings represent an important step forward in understanding the molecular mechanisms by which whiteflies and other insect herbivores suppress host plant defenses.
烟粉虱(Bemisia tabaci)是一种全球性农业害虫。先前的研究表明,烟粉虱积极抑制宿主植物防御,但我们对其涉及的具体机制知之甚少。本研究描述了烟粉虱的一种唾液蛋白,即铁蛋白 BtFer1,及其在协助宿主植物利用方面的作用。研究表明,BtFer1 具有 Fe2+结合能力和亚铁氧化酶活性,且其在烟粉虱取食过程中的分泌可抑制番茄(Solanum lycopersicum)中 H2O2 产生的氧化信号。沉默 BtFer1 可增强烟粉虱取食诱导的茉莉酸(JA)介导的防御信号通路,导致胼胝质沉积增加和蛋白酶抑制剂产生,从而阻止烟粉虱持续取食和消化韧皮部汁液。与这些影响一致,沉默 BtFer1 可降低烟粉虱在番茄上的存活率,但对人工饲料无影响。利用 JA 缺陷型 spr2 突变体植物进一步表明,BtFer1 对 JA 防御的抑制足以增加烟粉虱的存活率。综上所述,这些结果表明 BtFer1 作为一种效应蛋白,介导烟粉虱与番茄的互作。这些发现代表着在理解粉虱和其他昆虫取食者抑制宿主植物防御的分子机制方面迈出了重要的一步。