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首页> 外文期刊>Planta: An International Journal of Plant Biology >A strategy for developing high-resolution DNA barcodes for species discrimination of wood specimens using the complete chloroplast genome of three Pterocarpus species
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A strategy for developing high-resolution DNA barcodes for species discrimination of wood specimens using the complete chloroplast genome of three Pterocarpus species

机译:三种Pterocarpus种类的完全叶绿体基因组开发用于木质标本的物种辨别的高分辨率DNA条形码的策略

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摘要

Main conclusionA method for extraction of wood DNA and a strategy for designing high-resolution barcodes for wood were developed. Ycf1b was the prioritized barcode to resolve the Pterocarpus wood species studied.DNA barcoding, an effective tool for wood species identification, mainly focuses on universal barcodes and often lacks high resolution to differentiate species, especially for closely related taxa within the same genus. Therefore, more highly informative DNA barcodes need to be identified. This study is the first to report a strategy for developing specific DNA barcodes of wood tissues. The complete chloroplast genomes of leaf samples of three Pterocarpus species, i.e., P. indicus, P. santalinus, and P. tinctorius, were sequenced, and thereafter, the most variable DNA regions were identified on the scale of the complete chloroplast genomes. Finally, wood DNA was extracted from 30 wood specimens of the three Pterocarpus species, and DNA recovery rates of the selected regions were tested for applicability to verification on the wood specimens studied. The seven regions with the most variation (rpl32-ccsA, rpl20-clpP, trnC-rpoB, ycf1b, accD-ycf4, ycf1a, and psbK-accD) were identified from the chloroplast genome by quantifying nucleotide diversity (Pi>0.02), which was remarkably higher than that of the plant universal barcodes (rbcL, matK, and trnH-psbA) and the previously reported barcodes (ndhF-rpl32 and trnL-F) used for phylogenetic analysis in Pterocarpus. After comprehensive evaluation of species discrimination ability and applicability, the ycf1b region performed well in terms of the recovery success rate (76.7%) and species identification (100%) for wood specimens of the three Pterocarpus species, and was identified as the preferred high-resolution chloroplast barcode for selected Pterocarpus species. It will offer technical support for curbing illegal timber harvesting activities and for conserving endangered and valuable wood species.
机译:开发了主要结论,开发了木材DNA的提取方法,以及用于木材高分辨率条形码的策略。 YCF1B是优先的条形码,以解决Pterocarpus Wood物种研究.DNA条形码,一种用于木材物种鉴定的有效工具,主要集中在通用条形码上,并且往往缺乏高分辨率的分辨率,特别是在同一属内密切相关的分类群。因此,需要识别更高的信息性DNA条形码。本研究是第一个报告用于制定木组织特异性DNA条形码的策略。测序三个Pterocarpus种类的叶样品的完整叶绿体基因组,即,P. ingecus,P.Santalinus和P.Tinctorius,此后,在完全叶绿体基因组的规模上鉴定了最可变的DNA区域。最后,从三个Pterocarpus种类的30种木材样本中提取木DNA,测试所选区域的DNA回收率,以适用于所研究的木材样本。通过量化核苷酸的多样性(PI> 0.02),从叶绿体基因组中鉴定出具有最大变化(RPL32-CCSA,RPL20-CLP,TRNC-RPOB,YCF1B,ACCD-YCF1B,YCF1A和PSBK-ACC)的七个区域。非常高于植物通用条形码(RBCL,MATK和TRNH-PSBA)的高于预先报告的条形码(NDHF-RPL32和TRNL-F),用于Pterocarpus的系统发育分析。在综合评价物种辨别能力和适用性之后,YCF1B区域就恢复成功率(76.7%)和三种Pterocarpus种类的木材标本的物种鉴定(100%)进行了良好,并被确定为优选的高分辨率叶绿体条形码用于选定的Pterocarpus物种。它将为遏制非法木材采伐活动和保护濒危木材种类的技术支持。

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