Yamanaka N, Ninomiya S, Hoshi M, Tsubokura Y, Yano M, Nagamura Y, Sasaki T, Harada K
Graduate School of Science and Technology, Chiba University, Matsudo City, Japan.
DNA Res. 2001 Apr 27;8(2):61-72. doi: 10.1093/dnares/8.2.61.
A genetic linkage map covering a large region of the genome with informative markers is essential for plant genome analysis, including identification of quantitative trait loci (QTLs), map-based cloning, and construction of a physical map. We constructed a soybean genetic linkage map using 190 F2 plants derived from a single cross between the soybean varieties Misuzudaizu and Moshidou Gong 503, based on restriction-fragment-length polymorphisms (RFLPs) and simple-sequence-repeat polymorphisms (SSRPs). This linkage map has 503 markers, including 189 RFLP markers derived from expressed sequence tag (EST) clones, and consists of 20 major linkage groups that may correspond to the 20 pairs of soybean chromosomes, covering 2908.7 cM of the soybean genome in the Kosambi function. Using this linkage map, we identified 4 QTLs--FT1, FT2, FT3, and FT4--for flowering time, the QTLs for the 5 largest principal components determining leaflet shape, 6 QTLs for single leaflet area, and 18 regions of segregation distortion. All 503 analyzed markers identified were located on the map, and almost all phenotypic variations in flowering time were explained by the detected QTLs. These results indicate that this map covers a large region of the soybean genome.
一张覆盖基因组大片段区域且带有信息丰富标记的遗传连锁图谱对于植物基因组分析至关重要,包括数量性状位点(QTL)的鉴定、基于图谱的克隆以及物理图谱的构建。我们利用190株F2植株构建了一张大豆遗传连锁图谱,这些植株源自大豆品种水玉大豆和茂知豆贡503之间的单交,基于限制性片段长度多态性(RFLP)和简单序列重复多态性(SSRP)。这张连锁图谱有503个标记,包括189个源自表达序列标签(EST)克隆的RFLP标记,由20个主要连锁群组成,可能对应于20对大豆染色体,在Kosambi函数下覆盖了大豆基因组的2908.7 cM。利用这张连锁图谱,我们鉴定出了4个控制开花时间的QTL——FT1、FT2、FT3和FT4,5个决定小叶形状的最大主成分的QTL,6个单叶面积的QTL,以及18个分离畸变区域。所有分析的503个标记都定位在了图谱上,并且检测到的QTL解释了开花时间几乎所有的表型变异。这些结果表明这张图谱覆盖了大豆基因组的大片段区域。