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由于物种多样性未定义、属特异性条形码缺口和数据库错误,DNA 条形码技术不足以识别欧洲野生蜜蜂(膜翅目,蜜蜂总科)。

DNA barcoding insufficiently identifies European wild bees (Hymenoptera, Anthophila) due to undefined species diversity, genus-specific barcoding gaps and database errors.

机构信息

Jovan Hadži Institute of Biology, Scientific Research Centre of the Slovenian Academy of Sciences and Arts, Ljubljana, Slovenia.

Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.

出版信息

Mol Ecol Resour. 2024 Jul;24(5):e13953. doi: 10.1111/1755-0998.13953. Epub 2024 Mar 25.

Abstract

Recent declines in insect abundances, especially populations of wild pollinators, pose a threat to many natural and agricultural ecosystems. Traditional species monitoring relies on morphological character identification and is inadequate for efficient and standardized surveys. DNA barcoding has become a standard approach for molecular identification of organisms, aiming to overcome the shortcomings of traditional biodiversity monitoring. However, its efficacy depends on the completeness of reference databases. Large DNA barcoding efforts are (almost entirely) lacking in many European countries and such patchy data limit Europe-wide analyses of precisely how to apply DNA barcoding in wild bee identification. Here, we advance towards an effective molecular identification of European wild bees. We conducted a high-effort survey of wild bees at the junction of central and southern Europe and DNA barcoded all collected morphospecies. For global analyses, we complemented our DNA barcode dataset with all relevant European species and conducted global analyses of species delimitation, general and genus-specific barcoding gaps and examined the error rate in DNA data repositories. We found that (i) a sixth of all specimens from Slovenia could not be reliably identified, (ii) species delimitation methods show numerous systematic discrepancies, (iii) there is no general barcoding gap across all bees and (iv) the barcoding gap is genus specific, but only after curating for errors in DNA data repositories. Intense sampling and barcoding efforts in underrepresented regions and strict curation of DNA barcode repositories are needed to enhance the use of DNA barcoding for the identification of wild bees.

摘要

最近昆虫数量的减少,特别是野生传粉媒介的数量减少,对许多自然和农业生态系统构成了威胁。传统的物种监测依赖于形态特征鉴定,对于高效和标准化的调查是不够的。DNA 条形码已成为生物分子鉴定的标准方法,旨在克服传统生物多样性监测的缺点。然而,其功效取决于参考数据库的完整性。在许多欧洲国家,大型 DNA 条形码工作(几乎完全)缺乏,这种零星的数据限制了欧洲范围内对如何在野生蜜蜂识别中应用 DNA 条形码的精确分析。在这里,我们朝着对欧洲野生蜜蜂进行有效分子鉴定的方向前进。我们在中欧和南欧的交界处进行了一项高强度的野生蜜蜂调查,并对所有采集到的形态种进行了 DNA 条形码标记。为了进行全球分析,我们用所有相关的欧洲物种补充了我们的 DNA 条形码数据集,并对物种划分、通用和属特异性条形码间隙进行了全球分析,并检查了 DNA 数据存储库中的错误率。我们发现:(i)来自斯洛文尼亚的六分之一的标本无法可靠鉴定;(ii)物种划分方法显示出许多系统差异;(iii)并非所有蜜蜂都存在通用的条形码间隙;(iv)条形码间隙是属特异性的,但仅在对 DNA 数据存储库中的错误进行管理后才会出现。需要在代表性不足的地区进行密集的采样和条形码工作,并严格管理 DNA 条形码存储库,以增强 DNA 条形码在野生蜜蜂识别中的应用。

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