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XadA2 Adhesin Decreases Biofilm Formation and Transmission of Xylella fastidiosa subsp. pauca

机译:XADA2粘合剂降低了生物膜形成和Xylella Fastidioiosa Subsp的透射。佩卡

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摘要

Xylella fastidiosa is a vector-borne bacterium that causes diseases in many plants of economic interest. The bacterium–vector initial interactions involve bacterial membrane-bound adhesins that mediate cell attachment to the foregut of insect vectors. We investigated the role of the afimbrial adhesin XadA2 in the binding and biofilm formation of X. fastidiosa subsp. pauca to vector surfaces in vitro, as well as its potential to disrupt pathogen transmission. We showed that XadA2 has binding affinity for polysaccharides on sharpshooter hindwings, used as a proxy for the interactions between X. fastidiosa and vectors. When in a medium without carbon sources, the bacterium used wing components, likely chitin, as a source of nutrients and formed a biofilm on the wing surface. There was a significant reduction in X. fastidiosa biofilm formation and cell aggregation on vector wings in competition assays with XadA2 or its specific antibody (anti-XadA2). Finally, pathogen acquisition and transmission to plant were significantly reduced when the vectors acquired X. fastidiosa from an artificial diet supplemented with anti-XadA2. These results show that XadA2 is important in mediating bacterial colonization in the insect and that it could be used as a target for blocking X. fastidiosa transmission.
机译:Xylella Fastidiosa是一种载体传播的细菌,导致许多经济利益植物中的疾病。细菌 - 载体初始相互作用涉及细菌膜结合的粘附素,其介导细胞附着在昆虫载体的前肠中。我们调查了上述粘附素XADA2在X. FastidioSA亚数据的结合和生物膜形成中的作用。 Pauca在体外传染媒介表面,以及其扰乱病原体传播的潜力。我们表明,XADA2对锐利器后翅片的多糖具有对多糖的结合亲和力,用作X. Fastidiosa和载体之间的相互作用的代理。当在没有碳源的介质时,细菌使用的翼组分,可能是几丁质,作为营养素的来源,并在翼表面上形成生物膜。 X. Fastidiosa Biofilm形成和细胞聚集在XADA2或其特异性抗体(抗XADA2)中的竞争试验中的X. fastidiosa生物膜形成和细胞聚集。最后,当载体从补充有抗XADA2的人工饮食中获取X. Fastidiosa时,对植物的病原体拍摄和传播显着降低。这些结果表明,XADA2在介导昆虫中的细菌定植方面是重要的,并且它可以用作阻止X. Fastidiosa变速器的靶标。

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