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葫芦科蚜传黄症病毒韧皮部蛋白结合伴侣:韧皮部蛋白可能参与蚜虫传播病毒。

Phloem protein partners of Cucurbit aphid borne yellows virus: possible involvement of phloem proteins in virus transmission by aphids.

机构信息

INRA Université de Strasbourg, UMR SVQV, 28 rue de Herrlisheim BP 20507, 68021 Colmar, France.

出版信息

Mol Plant Microbe Interact. 2010 Jun;23(6):799-810. doi: 10.1094/MPMI-23-6-0799.

Abstract

Poleroviruses are phytoviruses strictly transmitted by phloem-feeding aphids in a circulative and nonpropagative mode. During ingestion, aphids sample virions in sieve tubes along with sap. Therefore, any sap protein bound to virions will be acquired by the insects and could potentially be involved in the transmission process. By developing in vitro virus-overlay assays on sap proteins collected from cucumber, we observed that approximately 20 proteins were able to bind to purified particles of Cucurbit aphid borne yellows virus (CABYV). Among them, eight proteins were identified by mass spectrometry. The role of two candidates belonging to the PP2-like family (predominant lectins found in cucurbit sap) in aphid transmission was further pursued by using purified orthologous PP2 proteins from Arabidopsis. Addition of these proteins to the virus suspension in the aphid artificial diet greatly increased virus transmission rate. This shift was correlated with an increase in the number of viral genomes in insect cells and with an increase of virion stability in vitro. Surprisingly, increase of the virus transmission rate was also monitored after addition of unrelated proteins in the aphid diet, suggesting that any soluble protein at sufficiently high concentration in the diet and acquired together with virions could stimulate virus transmission.

摘要

杆状病毒是严格通过韧皮部吸食蚜虫以循环非增殖方式传播的植物病毒。在取食过程中,蚜虫会随汁液在筛管中吸取病毒粒子。因此,任何与病毒粒子结合的汁液蛋白都会被昆虫获取,并可能参与到传播过程中。通过对从黄瓜中收集的汁液蛋白进行体外病毒覆盖分析,我们观察到约 20 种蛋白能够与纯化的南瓜蚜传黄花叶病毒(CABYV)颗粒结合。其中,有 8 种蛋白通过质谱鉴定。通过使用纯化的拟南芥同源 PP2 蛋白,进一步研究了属于 PP2 样家族(在葫芦汁液中发现的主要凝集素)的两个候选蛋白在蚜虫传播中的作用。将这些蛋白添加到蚜虫人工饲料中的病毒悬浮液中,大大提高了病毒的传播率。这种变化与昆虫细胞中病毒基因组数量的增加以及体外病毒粒子稳定性的增加相关。令人惊讶的是,在蚜虫饲料中添加不相关的蛋白后,也监测到病毒传播率的增加,这表明在饮食中存在足够高浓度且与病毒粒子一起获取的任何可溶性蛋白都可能刺激病毒传播。

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