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荷花玉兰叶绿体全基因组高通量测序及结构解析 被引量:7
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作者 李西支 高欢欢 +9 位作者 王一涛 宋经元 henry robert 吴和珍 胡志刚 姚辉 罗红梅 罗焜 潘宏林 陈士林 《中国科学:生命科学》 CSCD 北大核心 2012年第12期947-956,共10页
荷花玉兰是重要的药用、观赏及园林绿化植物.应用454高通量测序技术对荷花玉兰叶绿体全基因组进行测序,解析了其基因组结构,并与近缘物种基因组进行了比较分析.荷花玉兰叶绿体基因组全长为159623bp,两个反向互补重复区(IRs)长26563bp,... 荷花玉兰是重要的药用、观赏及园林绿化植物.应用454高通量测序技术对荷花玉兰叶绿体全基因组进行测序,解析了其基因组结构,并与近缘物种基因组进行了比较分析.荷花玉兰叶绿体基因组全长为159623bp,两个反向互补重复区(IRs)长26563bp,被分隔的大单拷贝区(LSC)和小单拷贝区(SSC)长度分别为87757和18740bp.成功注释129个叶绿体基因,其中18个基因含有内含子.基因的种类、数目以及GC含量等与其他木兰科物种相类似.生物信息学分析获得218个SSR位点,大多位点富含A-T,具有碱基偏好性.木兰科物种的重复基序类型和丰度相对保守,有利于开发叶绿体基因组载体.木兰亚纲植物叶绿体基因组的大小及IR区边界的变化与ycf1的长度密切相关.采用30个物种叶绿体基因组的66个共有蛋白编码基因构建系统发育树,对木兰属在被子植物中的进化位置进行了探讨.荷花玉兰叶绿体全基因组序列的获得和结构解析对优良品种培育、叶绿体基因组工程、木兰科物种分子标记开发及系统发育关系的研究具有重要价值. 展开更多
关键词 内含子 反向互补重复区 重复序列 系统进化
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Complete chloroplast genome sequence of Magnolia grandiflora and comparative analysis with related species 被引量:18
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作者 LI XiWen GAO HuanHuan +9 位作者 WANG YiTao SONG JingYuan henry robert WU HeZhen HU ZhiGang YAO Hui LUO HongMei LUO Kun PAN HongLin CHEN ShiLin 《Science China(Life Sciences)》 SCIE CAS 2013年第2期189-198,共10页
Magnolia grandiflora is an important medicinal, ornamental and horticultural plant species. The chloroplast (cp) genome of M. grandiflora was sequenced using a 454 sequencing platform and the genome structure was co... Magnolia grandiflora is an important medicinal, ornamental and horticultural plant species. The chloroplast (cp) genome of M. grandiflora was sequenced using a 454 sequencing platform and the genome structure was compared with other related species. The complete cp genome ofM. grandiflora was 159623 bp in length and contained a pair of inverted repeats (IR) of 26563 bp separated by large and small single copy (LSC, SSC) regions of 87757 and 18740 bp, respectively. A total of 129 genes were successfully annotated, 18 of which included introns. The identity, number and GC content of M. grandiflora cp genes were similar to those of other Magnoliaceae species genomes. Analysis revealed 218 simple sequence repeat (SSR) loci, most composed of A or T, contributing to a bias in base composition. The types and abundances of repeat units in Magnoliaceae species were relatively conserved and these loci will be useful for developing M. grandiflora cp genome vectors. In addition, results indicated that the cp genome size in Magnoliaceae species and the position of the IR border were closely related to the length of the ycfl gene. Phylogenetic analyses based on 66 shared genes from 30 species using maximum parsimony (MP) and max- imum likelihood (ML) methods provided strong support for the phylogenetic position of Magnolia. The availability of the complete cp genome sequence of M. grandiflora provides valuable information for breeding of desirable varieties, cp genetic engineering, developing useful molecular markers and phylogenetic analyses in Magnoliaceae. 展开更多
关键词 INTRON inverted repeats SSR phyiogenetics
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