Molecular Genetics and Genomics Lab, Department of Horticulture, Chungnam National University, Gung-Dong, Yuseong-Gu, Daejeon 305-764, Republic of Korea.
DNA Res. 2011 Oct;18(5):305-20. doi: 10.1093/dnares/dsr017. Epub 2011 Jul 17.
Genic microsatellite markers, also known as functional markers, are preferred over anonymous markers as they reveal the variation in transcribed genes among individuals. In this study, we developed a total of 707 expressed sequence tag-derived simple sequence repeat markers (EST-SSRs) and used for development of a high-density integrated map using four individual mapping populations of B. rapa. This map contains a total of 1426 markers, consisting of 306 EST-SSRs, 153 intron polymorphic markers, 395 bacterial artificial chromosome-derived SSRs (BAC-SSRs), and 572 public SSRs and other markers covering a total distance of 1245.9 cM of the B. rapa genome. Analysis of allelic diversity in 24 B. rapa germplasm using 234 mapped EST-SSR markers showed amplification of 2 alleles by majority of EST-SSRs, although amplification of alleles ranging from 2 to 8 was found. Transferability analysis of 167 EST-SSRs in 35 species belonging to cultivated and wild brassica relatives showed 42.51% (Sysimprium leteum) to 100% (B. carinata, B. juncea, and B. napus) amplification. Our newly developed EST-SSRs and high-density linkage map based on highly transferable genic markers would facilitate the molecular mapping of quantitative trait loci and the positional cloning of specific genes, in addition to marker-assisted selection and comparative genomic studies of B. rapa with other related species.
基因微卫星标记,也称为功能标记,优先于匿名标记,因为它们可以揭示个体中转录基因的变异。在这项研究中,我们共开发了 707 个基于表达序列标签的简单重复序列标记(EST-SSR),并用于使用四个个体作图群体构建白菜的高密度整合图谱。该图谱共包含 1426 个标记,包括 306 个 EST-SSR、153 个内含子多态性标记、395 个细菌人工染色体衍生 SSR(BAC-SSR)和 572 个公共 SSR 以及其他标记,总长度为 1245.9cM 的白菜基因组。使用 234 个映射的 EST-SSR 标记对 24 份白菜种质资源进行等位基因多样性分析,结果显示大多数 EST-SSR 都扩增了 2 个等位基因,尽管也发现了扩增 2-8 个等位基因的情况。对 35 种栽培和野生芸薹属亲缘植物的 167 个 EST-SSR 进行转移能力分析,结果显示 42.51%(Sysimprium leteum)到 100%(B. carinata、B. juncea 和 B. napus)都能扩增。我们新开发的基于高度可转移基因标记的 EST-SSR 和高密度连锁图谱将有助于白菜数量性状基因座的分子作图和特定基因的定位克隆,以及标记辅助选择和白菜与其他相关物种的比较基因组研究。