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化学编码作为一种鉴定工具,可弥补形态学和基于 DNA 的方法的不足:以 Inga 为例。

Chemocoding as an identification tool where morphological- and DNA-based methods fall short: Inga as a case study.

机构信息

Department of Biology, University of Utah, Salt Lake City, UT, 84112-0840, USA.

Centro de Investigación de la Biodiversidad y Cambio Climático (BioCamb) e Ingeniería en Biodiversidad y Recursos Genéticos, Facultad de Ciencias de Medio Ambiente, Universidad Tecnológica Indoamérica, Quito, EC170103, Ecuador.

出版信息

New Phytol. 2018 Apr;218(2):847-858. doi: 10.1111/nph.15020. Epub 2018 Feb 13.

DOI:10.1111/nph.15020
PMID:29436716
Abstract

The need for species identification and taxonomic discovery has led to the development of innovative technologies for large-scale plant identification. DNA barcoding has been useful, but fails to distinguish among many species in species-rich plant genera, particularly in tropical regions. Here, we show that chemical fingerprinting, or 'chemocoding', has great potential for plant identification in challenging tropical biomes. Using untargeted metabolomics in combination with multivariate analysis, we constructed species-level fingerprints, which we define as chemocoding. We evaluated the utility of chemocoding with species that were defined morphologically and subject to next-generation DNA sequencing in the diverse and recently radiated neotropical genus Inga (Leguminosae), both at single study sites and across broad geographic scales. Our results show that chemocoding is a robust method for distinguishing morphologically similar species at a single site and for identifying widespread species across continental-scale ranges. Given that species are the fundamental unit of analysis for conservation and biodiversity research, the development of accurate identification methods is essential. We suggest that chemocoding will be a valuable additional source of data for a quick identification of plants, especially for groups where other methods fall short.

摘要

物种鉴定和分类发现的需求促使人们开发出用于大规模植物鉴定的创新技术。DNA 条码技术虽然有用,但无法区分许多物种丰富的植物属中的许多物种,特别是在热带地区。在这里,我们表明,化学指纹图谱或“化学编码”在具有挑战性的热带生物群落中具有很大的植物鉴定潜力。我们使用非靶向代谢组学结合多元分析,构建了物种水平的指纹图谱,我们将其定义为化学编码。我们通过形态学定义的物种和下一代 DNA 测序评估了化学编码的实用性,这些物种在多样化且最近辐射的新热带 Inga 属(豆科)中,无论是在单个研究地点还是在广泛的地理范围内。我们的结果表明,化学编码是区分单个地点形态相似物种的可靠方法,也是识别大陆范围内广泛分布物种的方法。鉴于物种是保护和生物多样性研究的基本分析单位,因此开发准确的鉴定方法至关重要。我们建议,化学编码将成为快速鉴定植物的宝贵附加数据源,尤其是对于其他方法效果不佳的植物群。

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