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Low Levels of Mitochondrial DNA and Symbiont Diversity in the Worldwide Agricultural Pest, the Greenhouse Whitefly Trialeurodes vaporariorum (Hemiptera: Aleyrodidae)

机译:全球农业害虫温室白粉虱Trialeurodes vaporariorum(半翅目::科)的线粒体DNA水平低和共生体多样性

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摘要

Trialeurodes vaporariorum, the greenhouse whitefly, is a cosmopolitan agricultural pest. Little is known about the genetic diversity of T. vaporariorum and the bacterial symbionts associated with this species. Here, we undertook a large phylogeographic study by investigating both the mitochondrial (mt) diversity and the infection status of 38 T. vaporariorum collections from 18 countries around the world. Genetic diversity of T. vaporariorum was studied by analyzing sequence data from the mt cytochrome oxidase I, cytochrome b, and NADH dehydrogenase subunit 5 genes. Maximum-likelihood (ML) phylogeny reconstruction delineated 2 clades characterized by limited sequence divergence: one clade comprised samples only from the Northern hemisphere whereas the other comprised samples from a broader geographical range. The presence of secondary symbionts was determined by PCR using primers specific for Hamiltonella, Rickettsia, Arsenophonus, Cardinium, Wolbachia, and Fritschea. Most individuals examined harbored at least one secondary endosymbiont, and Arsenophonus was detected in almost all male and female individuals. Wolbachia was present at a much lower frequency, and Cardinium was detected in only a few individuals from Greece. Rickettsia, Hamiltonella, and Fritschea were not found. Additionally, we set out to further analyze Arsenophonus diversity by multilocus sequence typing analysis; however, the Arsenophonus sequences did not exhibit any polymorphism. Our results revealed remarkably low diversity in both mtDNA and symbionts in this worldwide agricultural pest, contrasting sharply with that of the ecologically similar Bemisia tabaci.
机译:温室粉虱Trialeurodes vaporariorum是一种世界性的农业害虫。人们对T.vaporariorum的遗传多样性以及与此物种有关的细菌共生体知之甚少。在这里,我们通过调查线粒体(mt)的多样性和来自18个国家/地区的38种气单胞菌的感染状况,进行了大规模的系统地理学研究。通过分析来自mt细胞色素氧化酶I,细胞色素b和NADH脱氢酶亚基5基因的序列数据,研究了T.vaporariorum的遗传多样性。最大似然(ML)系统发育重建描述了2个进化枝,其特征是序列差异有限:一个进化枝仅包含来自北半球的样本,而另一个进化枝则包含来自更广泛地理范围的样本。通过使用对汉密尔顿菌,立克次体,Ar菜,Cardinium,W​​olbachia和Fritschea特异的引物通过PCR确定次级共生菌的存在。接受检查的大多数个体都携带至少一种继发性内共生体,几乎在所有男性和女性个体中都检测到了Arsenophonus。 Wolbachia的出现频率要低得多,只有少数希腊人发现了Cardinium。未发现立克次体,汉密尔顿菌属和Fritschea。此外,我们着手通过多基因座序列类型分析进一步分析Arsenophonus多样性。然而,Arsenophonus序列没有表现出任何多态性。我们的研究结果表明,这种全球性农业害虫中的mtDNA和共生体均具有极低的多样性,这与生态相似的烟粉虱形成了鲜明的对比。

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