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东方田鼠微卫星标记的富集筛选与初步应用
引用本文:倪丽菊,陶凌云,柏熊,胡建华,高诚,谢建云. 东方田鼠微卫星标记的富集筛选与初步应用[J]. 遗传, 2011, 33(9): 989-995. DOI: 10.3724/SP.J.1005.2011.00989
作者姓名:倪丽菊  陶凌云  柏熊  胡建华  高诚  谢建云
作者单位:1. 上海实验动物研究中心, 上海 201203 2. 上海市实验动物质量监督检验站, 上海 201203 3. 上海西普尔-必凯实验动物有限公司, 上海 201203
基金项目:上海市科委基金项目(编号:071409001,09140900101)资助
摘    要:根据生物素与链霉亲和素的亲和原理, 利用磁珠富集法筛选东方田鼠(Microtus fortis)微卫星分子标记。链霉亲和素磁珠捕获生物素标记的微卫星探针, 然后与连有接头的单链限制性酶切片段复性结合, 获得含有微卫星的单链片段, PCR扩增形成双链, 连接T载体并转化感受态细胞, 得到东方田鼠微卫星富集文库。随机挑选70个阳性克隆, 经测序分析, 获得微卫星序列92个。设计合成27对微卫星引物并成功筛选出21对可用引物, 取其中10对引物, 荧光标记后对3个人工驯养及野生东方田鼠种群进行遗传多样性分析。结果显示, 文章所构建的东方田鼠微卫星文库的阳性克隆率较高, 初步筛选的10个微卫星标记均为具有高度多态性的微卫星标记。在3个东方田鼠种群中, 野生湖南种群的观测等位基因数(Na)、有效等位基因数(Ne)、观测杂合度(Ho)、期望杂合度(He)和多态信息含量(PIC)均最高, 人工驯养的湖南种群次之, 人工驯养的宁夏种群最低。

关 键 词:东方田鼠  磁珠富集  微卫星标记  遗传多样性  
收稿时间:2010-12-22

Enrichment and screening of the microsatellite markers in Microtus fortis and its preliminary application in genetic diversity research
NI Li-Ju,TAO Ling-Yun,BAI Xiong,HU Jian-Hua,GAO Cheng,XIE Jian-Yun. Enrichment and screening of the microsatellite markers in Microtus fortis and its preliminary application in genetic diversity research[J]. Hereditas, 2011, 33(9): 989-995. DOI: 10.3724/SP.J.1005.2011.00989
Authors:NI Li-Ju  TAO Ling-Yun  BAI Xiong  HU Jian-Hua  GAO Cheng  XIE Jian-Yun
Affiliation:1. Shanghai Laboratory Animal Research Center, Shanghai 201203, China 2. Shanghai Quality Monitoring Center for Laboratory Animal, Shanghai 201203, China 3. Shanghai SIPPR-BK LAB Animal ltd, Shanghai 201203, China
Abstract:This study was to isolate microsatellite markers from Microtus fortis genome by magnetic beads enrichments.Through hybridization of biotin-labeled microsatellite oligonucleotide probes,which were captured by streptavidin-coated magnetic with the adaptor-ligated enzyme-digested genome fragments,single-stranded DNA fragments containing microsatellites were obtained.After PCR amplification,these fragments were then cloned into T vectors and were transformed into competent cells subsequently.Ninety-two microsat...
Keywords:Microtus fortis  enrichment by magnetic beads  microsatellite  genetic diversity  
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