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花粉DNA条形码:当前应用与未来前景

Pollen DNA barcoding: current applications and future prospects.

作者信息

Bell Karen L, de Vere Natasha, Keller Alexander, Richardson Rodney T, Gous Annemarie, Burgess Kevin S, Brosi Berry J

机构信息

a Emory University, School of Environmental Sciences, Atlanta, GA, USA.

b National Botanic Garden of Wales, Llanarthne, United Kingdom.

出版信息

Genome. 2016 Sep;59(9):629-40. doi: 10.1139/gen-2015-0200. Epub 2016 Apr 13.

Abstract

Identification of the species origin of pollen has many applications, including assessment of plant-pollinator networks, reconstruction of ancient plant communities, product authentication, allergen monitoring, and forensics. Such applications, however, have previously been limited by microscopy-based identification of pollen, which is slow, has low taxonomic resolution, and has few expert practitioners. One alternative is pollen DNA barcoding, which could overcome these issues. Recent studies demonstrate that both chloroplast and nuclear barcoding markers can be amplified from pollen. These recent validations of pollen metabarcoding indicate that now is the time for researchers in various fields to consider applying these methods to their research programs. In this paper, we review the nascent field of pollen DNA barcoding and discuss potential new applications of this technology, highlighting existing limitations and future research developments that will improve its utility in a wide range of applications.

摘要

花粉物种来源的鉴定有许多应用,包括评估植物-传粉者网络、重建古代植物群落、产品认证、过敏原监测和法医学。然而,此类应用此前一直受基于显微镜的花粉鉴定方法的限制,该方法速度慢、分类分辨率低且专业从业人员稀少。一种替代方法是花粉DNA条形码技术,它可以克服这些问题。最近的研究表明,叶绿体和核条形码标记都可以从花粉中扩增出来。花粉代谢条形码技术的这些最新验证表明,现在各个领域的研究人员都应考虑将这些方法应用于他们的研究项目。在本文中,我们回顾了花粉DNA条形码技术这个新兴领域,并讨论了该技术潜在的新应用,强调了现有局限性以及未来将提高其在广泛应用中实用性的研究进展。

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