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基于杜娟属植物的DNA条形码序列筛选
引用本文:石林春,梁宗锁,韩建萍,宋经元,姚辉,朱英杰,陈士林. 基于杜娟属植物的DNA条形码序列筛选[J]. 世界科学技术, 2009, 11(1): 54-57
作者姓名:石林春  梁宗锁  韩建萍  宋经元  姚辉  朱英杰  陈士林
作者单位:石林春,梁宗锁,Shi Linchun,Liang Zongsuo(西北农林科技大学生命科学学院,陕西,710021);韩建萍,宋经元,姚辉,朱英杰,陈士林,Han Jianping,Song Jingyuan,Yao Hui,Zhu Yingjie,Chen Shilin(中国医学科学院,北京协和医学院,药用植物研究所,北京,100193)  
基金项目:国家科技部国际合作基金 
摘    要:我国的杜鹃属有毒植物约在60种以上,如羊踯躅等药用植物具有强毒付作用,而目前杜娟属的分类十分复杂。DNA barcoding技术是一种新的物种鉴定技术,COI序列已成功应用于动物的鉴定,但是目前国际上还没有找到一个通用序列能鉴定所有植物物种。本文对杜娟属257个物种ITS、ITS2、matK、PsbA—trnH序列比较,运用Wilcoxon秩和检验比较不同序列的变异性,然后用Taxon DNA软件评估这四个序列的barcodinggap。筛选适合于杜娟属的DNA条形码序列。分析结果表明:matK和psbA—trnH并不适合于杜娟属的DNA barcoding鉴定。ITS2和ITS序列都可以有效的对杜娟属植物进行DNA barcoding鉴定,但ITS在物种中的扩增效率较低,因此推荐将ITS2序列作为一个潜在的杜娟属植物DNA barcoding鉴定候选序列。

关 键 词:DNA  barcoding  ITS2  ITS  matK  psbA—trnH杜娟属

Screening Potential DNA Barcode Regions in Rhododendron
Shi Linchun,Liang Zongsuo,Han Jianping,Song Jingyuan,Yao Hui,Zhu Yingjie,Chen Shilin. Screening Potential DNA Barcode Regions in Rhododendron[J]. World Science and Technology(Modernization of Traditional Chinese Medicine), 2009, 11(1): 54-57
Authors:Shi Linchun  Liang Zongsuo  Han Jianping  Song Jingyuan  Yao Hui  Zhu Yingjie  Chen Shilin
Affiliation:Shi Linchun, Liang Zongsuo,Hart Jianping, Song Jingyuan, Yao Hui, Zhu Yinjie, Chen Shilin(Northwest Sci-Tech University of Agriculture and Foresty, Shan'xi 712100; Institute of Medicinal Plant Development, Peking Union Medical College & Chinese Academy of Medical Sciences, Beijing, 100193 P.R. China)
Abstract:In China, there are more than sixty types of toxic plants Rhododendron, including Rhododendron molle (Blum) G. Don, a traditional medicine. So far no techniques or methods have been found to effectively identify all the Rhododendron plants. DNA barcoding is a technique to identify species using DNA sequences from a small fragment of the genome. DNA barcoding, such as COI sequence, has been used to identify animal species. Unfortunately, there has been no universally accepted barcode system applicable to plants. This study compared four potential barcodes (ITS, ITS2, mark, and psbA-trnH) of 257species of Rhododendron. Wilcoxon signed rank tests were used to analyze the variability of sequences, and Taxon DNA was used to estimate the barcoding gap, so as to screen out the right barcodes for identifying the species of Rhododendron. Screening results showed that neither matk nor psbA-trnH could be used to identify Rhododendron on its own. On the contrary, both ITS and ITS2 were proved effective for the function. Due to the low success rate of PCR for ITS, ITS2 sequence can be taken as a potential barcode for identifying the species of Rhododendron.
Keywords:DNA barcoding  ITS2  ITS  matK  psbA-trnH
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