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Localization Concentration and Transmission Efficiency of Banana bunchy top virus in Four Asexual Lineages of Pentalonia aphids

机译:香蕉五种无性系的香蕉无性系病毒的定位浓度和传播效率

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摘要

Banana bunchy top virus (BBTV) is the most destructive pathogenic virus of banana plants worldwide. The virus is transmitted in a circulative non-propagative manner by the banana aphid, Pentalonia nigronervosa Coquerel. In this work, we examined the localization, accumulation, and transmission efficiency of BBTV in four laboratory-established lineages of Pentalonia aphids derived from four different host plants: taro (Colocasia esculenta), heliconia (Heliconia spp.), red ginger (Alpinia purpurata), and banana (Musa sp.). Mitochondrial sequencing identified three and one lineages as Pentalonia caladii van der Goot, a recently proposed species, and P. nigronervosa, respectively. Microsatellite analysis separated the aphid lineages into four distinct genotypes. The transmission of BBTV was tested using leaf disk and whole-plant assays, both of which showed that all four lineages are competent vectors of BBTV, although the P. caladii from heliconia transmitted BBTV to the leaf disks at a significantly lower rate than did P. nigronervosa. The concentration of BBTV in dissected guts, haemolymph, and salivary glands was quantified by real-time PCR. The BBTV titer reached similar concentrations in the guts, haemolymph, and salivary glands of aphids from all four lineages tested. Furthermore, immunofluorescence assays showed that BBTV antigens localized to the anterior midguts and the principal salivary glands, demonstrating a similar pattern of translocations across the four lineages. The results reported in this study showed for the first time that P. caladii is a competent vector of BBTV.
机译:香蕉束顶病毒(BBTV)是全世界香蕉植物中最具破坏性的致病病毒。该病毒由香蕉蚜虫Pentalonia nigronervosa Coquerel以循环非繁殖方式传播。在这项工作中,我们研究了来自四个不同寄主植物:芋头(Colocasia esculenta),Heliconia(Heliconia spp。),红姜(Alpinia purpurata)的Pentalonia蚜虫的四个实验室建立的谱系中BBTV的定位,积累和传播效率。 )和香蕉(Musa sp。)。线粒体测序确定了三个和一个谱系,分别是最近提出的物种Pentalonia caladii van der Goot和P. nigronervosa。微卫星分析将蚜虫谱系分为四个不同的基因型。 BBTV的传播通过叶盘和全株试验进行了测试,两者均显示所有四个谱系都是BBTV的有效载体,尽管来自Heliconia的疟原虫将BBTV传播到叶盘的速度明显低于P nigronervosa。通过实时PCR定量分析解剖肠,血淋巴和唾液腺中的BBTV浓度。来自所有四个谱系的蚜虫的肠道,淋巴和唾液腺中的BBTV滴度达到相似的浓度。此外,免疫荧光分析表明,BBTV抗原定位于前肠和主要唾液腺,证明了在四个谱系中的易位模式相似。这项研究报告的结果首次表明,卡拉迪疟原虫是BBTV的有效载体。

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