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ITS and trnH-psbA as Efficient DNA Barcodes to Identify Threatened Commercial Woody Angiosperms from Southern Brazilian Atlantic Rainforests

机译:ITS和trnH-psbA作为有效的DNA条码,可识别来自巴西南部大西洋雨林的受威胁的商业木质被子植物

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摘要

The Araucaria Forests in southern Brazil are part of the Atlantic Rainforest, a key hotspot for global biodiversity. This habitat has experienced extensive losses of vegetation cover due to commercial logging and the intense use of wood resources for construction and furniture manufacturing. The absence of precise taxonomic tools for identifying Araucaria Forest tree species motivated us to test the ability of DNA barcoding to distinguish species exploited for wood resources and its suitability for use as an alternative testing technique for the inspection of illegal timber shipments. We tested three cpDNA regions (matK, trnH-psbA, and rbcL) and nrITS according to criteria determined by The Consortium for the Barcode of Life (CBOL). The efficiency of each marker and selected marker combinations were evaluated for 30 commercially valuable woody species in multiple populations, with a special focus on Lauraceae species. Inter- and intraspecific distances, species discrimination rates, and ability to recover species-specific clusters were evaluated. Among the regions and different combinations, ITS was the most efficient for identifying species based on the ‘best close match’ test; similarly, the trnH-psbA + ITS combination also demonstrated satisfactory results. When combining trnH-psbA + ITS, Maximum Likelihood analysis demonstrated a more resolved topology for internal branches, with 91% of species-specific clusters. DNA barcoding was found to be a practical and rapid method for identifying major threatened woody angiosperms from Araucaria Forests such as Lauraceae species, presenting a high confidence for recognizing members of Ocotea. These molecular tools can assist in screening those botanical families that are most targeted by the timber industry in southern Brazil and detecting certain species protected by Brazilian legislation and could be a useful tool for monitoring wood exploitation.
机译:巴西南部的南洋杉森林是大西洋雨林的一部分,而大西洋雨林是全球生物多样性的重要热点。由于商业砍伐和大量使用木材资源进行建筑和家具制造,该生境遭受了广泛的植被覆盖损失。缺乏用于识别南洋杉林木物种的精确分类学工具,促使我们测试DNA条形码以区分为木材资源开发的物种的能力,以及其是否适合用作检查非法木材运输的替代测试技术。我们根据生命条形码协会(CBOL)确定的标准测试了三个cpDNA区域(matK,trnH-psbA和rbcL)和nrITS。针对多个种群中的30种具有商业价值的木本物种,评估了每种标记物和所选标记物组合的效率,特别侧重于月桂科树种。评估了种间和种内距离,物种鉴别率以及恢复物种特异性簇的能力。在“区域”和“不同组合”中,ITS是基于“最佳接近匹配”测试识别物种的最有效方法;同样,trnH-psbA + ITS组合也显示出令人满意的结果。当结合使用trnH-psbA + ITS时,最大似然分析显示了内部分支的更可分辨的拓扑结构,其中有91%的物种特异性簇。发现DNA条形码是一种实用且快速的方法,可用于识别南洋杉森林(例如月桂科树种)的主要濒危木质被子植物,为识别Ocotea成员提供了很高的信心。这些分子工具可以帮助筛选巴西南部木材工业最关注的植物科,并检测受到巴西法律保护的某些物种,并且可能是监测木材开发的有用工具。

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