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评估中国及国际贸易木材物种的候选DNA条形码。

Assessing candidate DNA barcodes for Chinese and internationally traded timber species.

作者信息

Hu Jian-Lin, Ci Xiu-Qin, Liu Zhi-Fang, Dormontt Eleanor E, Conran John G, Lowe Andrew J, Li Jie

机构信息

Plant Phylogenetics and Conservation Group, Center for Integrative Conservation, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Mol Ecol Resour. 2022 May;22(4):1478-1492. doi: 10.1111/1755-0998.13546. Epub 2021 Nov 23.

Abstract

Accurate identification of species from timber is an essential step to help control illegal logging and forest loss. However, current approaches to timber identification based on morphological and anatomical characteristics have limited species resolution. DNA barcoding is a proven tool for plant species identification, but there is a need to build reliable reference data across broad taxonomic and spatial scales. Here, we construct a species barcoding library consisting of 1550 taxonomically diverse timber species from 656 genera and 124 families, representing a comprehensive genetic reference data set for Chinese timber species and international commercial traded timber species, using four barcodes (rbcL, matK, trnH-psbA, and ITS2). The ITS2 fragment was found to be the most efficient locus for Chinese timber species identification among the four barcodes tested, both at the species and genus level, despite its low recovery rate. Nevertheless, the barcode combination matK+trnH-psbA+ITS2 was required as a complementary barcode to distinguish closely related species in complex data sets involving internationally traded timber species. Comparative analyses of family-level discrimination and species/genus ratios indicated that the inclusion of closely related species is an important factor affecting the resolution ability of barcodes for timber species verification. Our study indicates that although nuclear ITS2 is the most efficient single barcode for timber species authentication in China, complementary combinations like matK+trnH-psbA+ITS2 are required to provide broader discrimination power. These newly-generated sequences enrich the existing publicly available databases, especially for tropical and subtropical evergreen timber trees and this current timber species barcode reference library can serve as an important genetic resource for forestry monitoring, illegal logging prosecution and biodiversity projects.

摘要

准确识别木材中的物种是帮助控制非法采伐和森林损失的关键步骤。然而,目前基于形态和解剖特征的木材识别方法的物种分辨率有限。DNA条形码是一种经过验证的植物物种识别工具,但需要在广泛的分类和空间尺度上建立可靠的参考数据。在这里,我们构建了一个物种条形码文库,其中包含来自656属124科的1550种分类多样的木材物种,使用四个条形码(rbcL、matK、trnH-psbA和ITS2),代表了中国木材物种和国际商业贸易木材物种的综合遗传参考数据集。在测试的四个条形码中,ITS2片段被发现是中国木材物种识别在物种和属水平上最有效的位点,尽管其回收率较低。尽管如此,条形码组合matK+trnH-psbA+ITS2作为补充条形码是必要的,以区分涉及国际贸易木材物种的复杂数据集中的近缘物种。科级鉴别和物种/属比率的比较分析表明,纳入近缘物种是影响条形码对木材物种验证分辨率能力的一个重要因素。我们的研究表明,虽然核ITS2是中国木材物种鉴定中最有效的单个条形码,但需要像matK+trnH-psbA+ITS2这样的互补组合来提供更广泛的鉴别能力。这些新生成的序列丰富了现有的公共数据库,特别是对于热带和亚热带常绿木材树,这个当前的木材物种条形码参考文库可以作为林业监测、非法采伐起诉和生物多样性项目的重要遗传资源。

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