CO1 barcodes resolve an asymmetric biphyletic clade for Diabrotica undecimpunctata subspecies and provide nucleotide variants for differentiation from related lineages using real-time PCR

L. Tembrock, C. R. Wilson, F. Zink, A. Timm, T. Gilligan, A. Konstantinov, A. Tishechkin
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Abstract

Diabrotica undecimpunctata is a multivoltine polyphagous beetle species that has long been documented as a significant agricultural pest throughout its native range in North America. This beetle can vector bacterial and viral plant pathogens that result in major losses to crops such as cucumber and soybean. Many countries outside the Americas treat D. undecimpunctata as a species of quarantine importance, while in the USA only the subspecies D. u. duodecimnotata is subject to quarantine, to prevent introduction from Mexico. Identification of D. undecimpunctata on the basis of morphology alone can be complicated given the use of conflicting characters in the description of some subspecific taxa. To better understand relationships among D. undecimpunctata subspecies and other related species, we sequenced mitochondrial cytochrome oxidase 1 (CO1) and nuclear internal transcribed spacer 2 (ITS2) DNA from individuals in different subspecific taxa and across different parts of the species range using museum samples and interceptions. When our data were combined with publicly available Diabrotica data, no pattern of divergence consistent with the currently recognized subspecific designations was found. In addition, we compared phylogenetic patterns in CO1 data from the congener D. virgifera to demonstrate the utility of mitochondrial data in resolving subspecies. From the CO1 data, a diagnostic real-time PCR assay was developed that could successfully identify all haplotypes within the large D. undecimpunctata clade for use in surveys and identification at ports of entry. These findings underscore the need to resolve molecular and morphological datasets into cogent, lineage-based groupings. Such efforts will provide an evolutionary context for the study of agriculturally important attributes of Diabrotica such as host preferences, xenobiotic metabolism, and natural and anthropogenic patterns of dispersal.
CO1条形码解析了Diabrotica unimpunctata亚种的不对称双系进化枝,并使用实时PCR技术提供了与相关谱系区分的核苷酸变体
非impunctata是一种多伏特多食性甲虫,长期以来一直被记录为北美原生范围内的重要农业害虫。这种甲虫可以传播细菌和病毒植物病原体,对黄瓜和大豆等作物造成重大损失。美洲以外的许多国家将d.u. unimpunctata视为一种具有检疫重要性的物种,而在美国,只有d.u. duodecimnotata亚种受到检疫,以防止从墨西哥引入。由于在某些亚种分类群的描述中使用了相互冲突的特征,因此仅基于形态学的鉴定可能会变得复杂。为了更好地了解D. undimpunctata亚种与其他近缘种之间的关系,我们利用博物馆样本和截获的数据,对不同亚特异分类群和不同物种范围的个体的线粒体细胞色素氧化酶1 (CO1)和核内转录间隔物2 (ITS2) DNA进行了测序。当我们的数据与公开可用的Diabrotica数据相结合时,没有发现与目前公认的亚特异性名称一致的差异模式。此外,我们比较了同源D. virgifera的CO1数据的系统发育模式,以证明线粒体数据在确定亚种中的效用。根据CO1数据,开发了一种诊断性实时PCR检测方法,可以成功识别大D. unimpunctata分支中的所有单倍型,用于入境口岸的调查和鉴定。这些发现强调了将分子和形态数据集分解成令人信服的、基于谱系的分组的必要性。这些努力将为研究Diabrotica在农业上的重要属性提供一个进化背景,如寄主偏好、外源代谢以及自然和人为的传播模式。
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