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基于ITS序列的竹亚科植物分子鉴定研究
引用本文:王苗苗,王孝仕,左龙亚,于杰.基于ITS序列的竹亚科植物分子鉴定研究[J].西南农业大学学报,2018,40(7):44-50.
作者姓名:王苗苗  王孝仕  左龙亚  于杰
作者单位:西南大学园艺园林学院;重庆市梁平县农业委员会;南方山地园艺学教育部重点实验室
基金项目:国家自然科学基金项目(31171930);中央高校基本科研业务费双创资金项目(XDJK2016E143).
摘    要:利用ITS序列对竹亚科13个属76个竹种进行DNA条形码分子鉴定.该研究提取慈竹属、刚竹属、箬竹属、唐竹属、矢竹属、大明竹属、赤竹属、巴山木竹属、倭竹属、短穗竹属、簕竹属、酸竹属及少穗竹属共13个属62个竹种DNA,对其内转录间隔区ITS序列进行PCR扩增和双向测序,所得序列与GenBank数据库下载的14条ITS序列共76个竹种序列用Clustal X软件比对,再利用MEGA6.06软件构建K2P距离法的NJ系统发育树.结果显示,种内遗传距离为0~3.907,平均遗传距离为0.370;种间遗传距离为0~4.394,平均遗传距离为2.287,种内遗传距离远小于种间遗传距离.ITS序列可用于竹类资源的物种鉴定研究.

关 键 词:DNA条形码  ITS  竹亚科  分子鉴定
收稿时间:2017/5/20 0:00:00

Molecular Identification of Bambusoideae Plants Based on ITS Sequences
WANG Miao-miao,WANG Xiao-shi,ZUO Long-y,YU Jie.Molecular Identification of Bambusoideae Plants Based on ITS Sequences[J].Journal of Southwest Agricultural University,2018,40(7):44-50.
Authors:WANG Miao-miao  WANG Xiao-shi  ZUO Long-y  YU Jie
Institution:1. School of Horticulture and Landscape Architecture, Southwest University, Chongqing 400715, China;2. Agricultural Commission of Liangping County, Chongqing 405200, China;3. Key Laboratory of Horticulture Science for Southern Mountainous Regions, Ministry of Education, Chongqing 400715, China
Abstract:Molecular identification was conducted of 76 species of 13 genera in Bambusoideae by nuclear internal transcribed spacer (ITS) sequence fragments. DNA was extracted from 62 bamboo species of 13 genera (Neosinocalamus, Phyllostachys, Indocalamus, Sinobambusa, Pseudosasa, Pleioblastu, Sas, Bashani, Shibataea, Brachystachyum, Bambusa, Acidosasa and Oligostachyum), and PCR amplification and bidirectional sequencing of the 62 ITS sequences were carried out. Then the 62 ITS sequences obtained were aligned with 14 ITS sequences from GenBank database by Clustal X, and MEGA program (version 6.06) was employed to estimate the intraspecific and interspecific genetic distances. NJ(Neighbor-Joining)trees were constructed based on K2P (Kimura-2-parameter) distance of the ITS sequences in order to evaluate the results. Results showed that the intraspecific genetic distance was much smaller than the interspecific genetic distance:the intraspecific genetic distance was 0-3.907, averaging 0.370; and the interspecific genetic distance was 0-4.394, averaging 2.287. In conclusion, ITS barcodes can be used to distinguish different species of Bambusoideae.
Keywords:DNA barcoding  ITS  Bambusoideae  molecular identification
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