首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A salivary effector enables whitefly to feed on host plants by eliciting salicylic acid-signaling pathway
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A salivary effector enables whitefly to feed on host plants by eliciting salicylic acid-signaling pathway

机译:唾液效应子通过引发水杨酸信号传导途径使粉虱能以寄主植物为食

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摘要

Phloem-feeding insects feed on plant phloem using their stylets. While ingesting phloem sap, these insects secrete saliva to circumvent plant defenses. Previous studies have shown that, to facilitate their feeding, many phloem-feeding insects can elicit the salicylic acid- (SA-) signaling pathway and thus suppress effective jasmonic acid defenses. However, the molecular basis for the regulation of the plant's defense by phloem-feeding insects remains largely unknown. Here, we show that Bt56, a whitefly-secreted low molecular weight salivary protein, is highly expressed in the whitefly primary salivary gland and is delivered into host plants during feeding. Overexpression of the Bt56 gene in planta promotes susceptibility of tobacco to the whitefly and elicits the SA-signaling pathway. In contrast, silencing the whitefly Bt56 gene significantly decreases whitefly performance on host plants and interrupts whitefly phloem feeding with whiteflies losing the ability to activate the SA pathway. Protein-protein interaction assays show that the Bt56 protein directly interacts with a tobacco KNOTTED 1-like homeobox transcription factor that decreases whitefly performance and suppresses whitefly-induced SA accumulation. The Bt56 orthologous genes are highly conserved but differentially expressed in different species of whiteflies. In conclusion, Bt56 is a key salivary effector that promotes whitefly performance by eliciting salicylic acid-signaling pathway.
机译:韧皮部食性昆虫使用其探针来吃植物韧皮部。这些昆虫在摄入韧皮部汁液时会分泌唾液,从而绕过植物防御。先前的研究表明,为了方便觅食,许多韧皮部食性昆虫可以引发水杨酸(SA-)信号传导途径,从而抑制有效的茉莉酸防御。然而,通过韧皮部食性昆虫调节植物防御的分子基础仍然是未知的。在这里,我们显示了Bt56,一种粉虱分泌的低分子量唾液蛋白,在粉虱初级唾液腺中高度表达,并在进食过程中被递送到宿主植物中。 Bt56基因在植物中的过表达促进了烟草对粉虱的敏感性,并引发了SA信号通路。相反,沉默粉虱Bt56基因会显着降低宿主植物上的粉虱表现,并中断粉虱韧皮部的供食,而粉虱失去激活SA途径的能力。蛋白质-蛋白质相互作用测定表明,Bt56蛋白直接与烟草的KNOTTED 1样同源框转录因子相互作用,从而降低了粉虱的性能并抑制了粉虱诱导的SA积累。 Bt56直系同源基因是高度保守的,但在不同种类的粉虱中差异表达。总之,Bt56是关键的唾液效应物,通过引发水杨酸信号通路来促进粉虱的生长。

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