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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic analysis of mitochondrial genome sequences indicates that the cattle tick, Rhipicephalus (Boophilus) microplus, contains a cryptic species
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Phylogenetic analysis of mitochondrial genome sequences indicates that the cattle tick, Rhipicephalus (Boophilus) microplus, contains a cryptic species

机译:线粒体基因组序列的系统发育分析表明,牛tick Rhipicephalus(Boophilus)microplus包含一种隐性物种

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摘要

Cattle ticks of the subgenus Rhipicephalus (Boophilus) are major agricultural pests worldwide, causing billions of dollars in losses annually. Rhipicephalus (Boophilus) annulatus and R. microplus are the most wellknown and widespread species, and a third species, R. australis, was recently reinstated for 'R. microplus' from Australia and parts of Southeast Asia. We use mitochondrial genome sequences to address the phylogenetic relationships among the species of the subgenus Boophilus. We sequenced the complete or partial mitochondrial genomes of R. annulatus, R. australis, R. kohlsi, R. geigyi, and of three geographically disparate specimens of R. microplus from Brazil, Cambodia and China. Phylogenetic analyses of mitochondrial genomes, as well as cox1 and 16S rRNA sequences, reveals a species complex of R. annulatus, R. australis, and two clades of R. microplus, which we call the R. microplus complex. We show that cattle ticks morphologically identified as R. microplus from Southern China and Northern India (R. microplus clade B) are more closely related to R. annulatus than other specimens of R. microplus s.s. from Asia, South America and Africa (R. microplus clade A). Our analysis suggests that ticks reported as R. microplus from Southern China and Northern India are a cryptic species. This highlights the need for further molecular, morphological and crossbreeding studies of the R. microplus complex, with emphasis on specimens from China and India. We found that cox1 and, to a lesser extent, 16S rRNA were far more successful in resolving the phylogenetic relationships within the R. microplus complex than 12S rRNA or the nuclear marker ITS2. We suggest that future molecular studies of the R. microplus complex should focus on cox1, supplemented by 16S rRNA, and develop nuclear markers alternative to ITS2 to complement the mitochondrial data.
机译:Rhipicephalus(Boophilus)属的牛tick是全世界的主要农业害虫,每年造成数十亿美元的损失。 Rhipicephalus(Boophilus)annulatus和R. microplus是最著名和最广泛的物种,最近又恢复了第三种R. australis的'R。来自澳大利亚和东南亚部分地区的microplus”。我们使用线粒体基因组序列来解决Boophilus亚属物种之间的系统发育关系。我们对R. annulatus,R。australis,R。kohlsi,R。geigyi以及来自巴西,柬埔寨和中国的三个地理上不同的R. microplus标本的全部或部分线粒体基因组进行了测序。线粒体基因组以及cox1和16S rRNA序列的系统发育分析,揭示了环线虫,澳大利亚线虫和两个分支的微小线虫的复合体,我们称其为微小线虫复合体。我们显示,从中国南部和印度北部(R. microplus进化枝B)在形态上被鉴定为R. microplus的牛壁虱比R. microplus s.s的其他标本与环孢菌更紧密相关。来自亚洲,南美和非洲(R. microplus进化枝A)。我们的分析表明,来自中国南部和印度北部的reported(R。microplus)报道是一种隐性物种。这凸显了需要对R. microplus复合体进行进一步的分子,形态和杂交研究,重点是来自中国和印度的标本。我们发现与12S rRNA或核标记ITS2相比,cox1和(在较小程度上)16S rRNA在解决R. microplus复合物中的系统发育关系方面要成功得多。我们建议,将来对R. microplus复合物的分子研究应侧重于辅以16S rRNA的cox1,并开发替代ITS2的核标记以补充线粒体数据。

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