EntoSieve: Automated Size-Sorting of Insect Bulk Samples to Aid Accurate Megabarcoding and Metabarcoding.

IF 5.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Aleida Ascenzi, Lorenz Wührl, Vivian Feng, Nathalie Klug, Christian Pylatiuk, Pierfilippo Cerretti, Rudolf Meier
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引用次数: 0

Abstract

Widespread insect decline necessitates the development and use of standardized protocols for regular monitoring. These methods have to be rapid, efficient and cost-effective to allow for large-scale implementation. Many insect sampling and molecular methods have been developed. These include Malaise trapping, high-throughput DNA barcoding ('megabarcoding') and metabarcoding. The latter allows for assessing the species diversity in whole samples using few steps, but sample heterogeneity in terms of body size remains a challenge since large insects contribute disproportionately more mtDNA than small ones. This can potentially overwhelm the template DNA from small species that then go undetected. Size-sorting can mitigate this problem, but no satisfying automated, rapid and non-destructive solutions are available. We introduce the EntoSieve, a low-cost and DIY motorized instrument that disentangles and sorts abundant insect bulk samples into several body size fractions while minimizing damage to specimens, thus reducing the risk of DNA contamination across size fractions (e.g. legs of large specimens in small body size fraction). EntoSieve utilizes readily available components, 3D-printed parts and customizable meshes, thus enabling parallelization at low cost. We here show the efficiency of the EntoSieve for three samples with more than 10,000 specimens using three sieving protocols and assess the impact on specimen integrity. Efficiency ranged from 92% to 99%, achieved within 18-60 min, and specimen damage was not significant for subsamples. By facilitating rapid pre-processing, the device contributes to producing morphologically valuable vouchers for megabarcoding and is likely to improve compositional diversity accuracy across size classes when using metabarcoding.

ento筛:昆虫散装样品的自动尺寸分选,以帮助准确的兆条形码和元条形码。
昆虫的广泛减少需要制定和使用标准化的定期监测方案。这些方法必须迅速、有效和具有成本效益,以便大规模实施。许多昆虫取样和分子方法已经发展起来。这些包括不适捕获,高通量DNA条形码(“兆条形码”)和元条形码。后者允许使用很少的步骤来评估整个样本的物种多样性,但就体型而言,样本异质性仍然是一个挑战,因为大型昆虫比小型昆虫贡献了不成比例的更多mtDNA。这可能会淹没小物种的模板DNA,然后不被发现。尺寸分类可以缓解这个问题,但没有令人满意的自动化、快速和非破坏性的解决方案。我们介绍了EntoSieve,这是一种低成本和DIY的电动仪器,它可以将大量的昆虫散装样品解绑并分类成几个身体大小的部分,同时最大限度地减少对标本的损害,从而降低DNA污染的风险(例如大标本的腿在小身体大小的部分)。EntoSieve利用现成的组件,3d打印部件和可定制的网格,从而实现低成本的并行化。我们在这里展示了使用三种筛分方案对超过10,000个样品的三种样品的EntoSieve的效率,并评估了对样品完整性的影响。效率范围从92%到99%,在18-60分钟内实现,样品损伤对子样品不显著。通过促进快速预处理,该设备有助于为兆条形码生成形态学上有价值的凭证,并且在使用元条形码时可能提高跨尺寸类别的成分多样性准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Ecology Resources
Molecular Ecology Resources 生物-进化生物学
CiteScore
15.60
自引率
5.20%
发文量
170
审稿时长
3 months
期刊介绍: Molecular Ecology Resources promotes the creation of comprehensive resources for the scientific community, encompassing computer programs, statistical and molecular advancements, and a diverse array of molecular tools. Serving as a conduit for disseminating these resources, the journal targets a broad audience of researchers in the fields of evolution, ecology, and conservation. Articles in Molecular Ecology Resources are crafted to support investigations tackling significant questions within these disciplines. In addition to original resource articles, Molecular Ecology Resources features Reviews, Opinions, and Comments relevant to the field. The journal also periodically releases Special Issues focusing on resource development within specific areas.
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