首页> 美国卫生研究院文献>Viruses >The Whitefly Bemisia tabaciKnottin-1 Gene Is Implicated in Regulating the Quantity of Tomato Yellow Leaf Curl Virus Ingested and Transmitted by the Insect
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The Whitefly Bemisia tabaciKnottin-1 Gene Is Implicated in Regulating the Quantity of Tomato Yellow Leaf Curl Virus Ingested and Transmitted by the Insect

机译:烟粉虱烟粉虱Knottin-1基因与调节昆虫摄入和传播的番茄黄叶卷曲病毒的数量有关。

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摘要

The whitefly Bemisia tabaci is a major pest to agricultural crops. It transmits begomoviruses, such as Tomato yellow leaf curl virus (TYLCV), in a circular, persistent fashion. Transcriptome analyses revealed that B. tabaci knottin genes were responsive to various stresses. Upon ingestion of tomato begomoviruses, two of the four knottin genes were upregulated, knot-1 (with the highest expression) and knot-3. In this study, we examined the involvement of B. tabaci knottin genes in relation to TYLCV circulative transmission. Knottins were silenced by feeding whiteflies with knottin dsRNA via detached tomato leaves. Large amounts of knot-1 transcripts were present in the abdomen of whiteflies, an obligatory transit site of begomoviruses in their circulative transmission pathway; knot-1 silencing significantly depleted the abdomen from knot-1 transcripts. Knot-1 silencing led to an increase in the amounts of TYLCV ingested by the insects and transmitted to tomato test plants by several orders of magnitude. This effect was not observed following knot-3 silencing. Hence, knot-1 plays a role in restricting the quantity of virions an insect may acquire and transmit. We suggest that knot-1 protects B. tabaci against deleterious effects caused by TYLCV by limiting the amount of virus associated with the whitefly vector.
机译:粉虱烟粉虱是农作物的主要害虫。它以循环,持久的方式传播begomoviruses,例如番茄黄叶卷曲病毒(TYLCV)。转录组分析显示,烟曲霉的结蛋白基因对各种压力有反应。摄取番茄begomoviruses,四个结蛋白基因中的两个被上调,knot-1(表达最高)和knot-3。在这项研究中,我们检查了烟粉虱结节蛋白基因与TYLCV循环传播的关系。通过从分离的番茄叶上给粉虱饲喂粉虱dsRNA来沉默粉虱。粉虱的腹部存在大量的knot-1转录物,而粉虱是其在循环传播途径中的强制性转运位点。 knot-1沉默显着耗尽了knot-1转录本的腹部。 Knot-1沉默导致昆虫摄入并传播给番茄试验植物的TYLCV数量增加了几个数量级。结3沉默后未观察到此效果。因此,knot-1在限制昆虫可能获取和传播的病毒体数量方面发挥了作用。我们建议knot-1通过限制与粉虱载体有关的病毒数量来保护烟粉虱免受由TYLCV引起的有害影响。

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