College of Life Science, Northeast Agricultural University, 150030 Harbin, Heilongjiang, People's Republic of China.
Mol Biol Rep. 2011 Mar;38(3):1841-6. doi: 10.1007/s11033-010-0300-2. Epub 2010 Sep 22.
To discover new SNPs and develop an easy assay method in soybean, we compared the high-throughput pyrosequencing ESTs with whole genome sequences in different soybean varieties and identified 3899 SNPs. Transitions were found to be much more frequent than transversions in these SNPs. We found that SNPs were widely distributed in the soybean genome, targeting numerous genes involved in various physiological and biochemical processes influencing important agronomic traits. A set of 16 SNPs were validated in nine soybean varieties, and seven SNPs were converted into CAPS. From functional gene association analysis, the marker CAPS282 on the 3'-UTR of gene Glyma07g03490 was identified as associated with 100-seed weight in soybean. The SNP discovery and CAPS markers conversion system developed in this study is fast and cost effective, and holds great promise for molecular-assisted breeding of soybean.
为了在大豆中发现新的 SNP 并开发一种简单的检测方法,我们比较了高通量焦磷酸测序 ESTs 与不同大豆品种的全基因组序列,鉴定出 3899 个 SNP。这些 SNP 中转换的频率明显高于颠换。我们发现 SNP 广泛分布于大豆基因组中,针对许多涉及影响重要农艺性状的各种生理和生化过程的基因。在 9 个大豆品种中验证了 16 个 SNP,其中 7 个 SNP 被转化为 CAPS。通过功能基因关联分析,鉴定出基因 Glyma07g03490 3'-UTR 上的标记 CAPS282 与大豆百粒重相关。本研究中开发的 SNP 发现和 CAPS 标记转化系统快速且具有成本效益,为大豆的分子辅助育种提供了广阔的前景。