Huang Zhen, Liu Lu, Lu Hong, Lang Lina, Zhao Na, Ding Juan, Xu Aixia
State Key Laboratory of Crop Stress Biology for Arid Areas/College of Agronomy, Northwest A&F University , Yangling, Shaanxi 712100 , China.
Breed Sci. 2016 Mar;66(2):175-80. doi: 10.1270/jsbbs.66.175. Epub 2016 Mar 1.
Previous studies showed that the yellow seed color gene of a yellow mustard was located on the A09 chromosome. In this study, the sequences of the molecular markers linked to the yellow seed color gene were analyzed, the gene was primarily mapped to an interval of 23.304 to 29.402M. Twenty genes and eight markers' sequences in this region were selected to design the IP and SCAR primers. These primers were used to screen a BC8S1 population consisting of 1256 individuals. As a result, five IP and five SCAR markers were successfully developed. IP4 and Y1 were located on either side of the yellow seed color gene at a distance of 0.1 and 0.3 cM, respectively. IP1, IP2 and IP3 derived from Bra036827, Bra036828, Bra036829 separately, co-segregated with the target gene. BLAST analysis indicated that the sequences of newly developed markers showed good collinearity with those of the A09 chromosome, and that the target gene might exist between 27.079 and 27.616M. In light of annotations of the genes in this region, only Bra036828 is associated with flavonoid biosynthesis. This gene has high similarity with the TRANSPARENT TESTA6 gene, Bra036828 was hence identified as being the gene possibly responsible for yellow seed color, in our research.
先前的研究表明,一种黄芥的黄色种皮基因位于A09染色体上。在本研究中,对与黄色种皮基因连锁的分子标记序列进行了分析,该基因初步定位在23.304至29.402M的区间内。从该区域的20个基因和8个标记序列中选择设计IP和SCAR引物。这些引物用于筛选由1256个个体组成的BC8S1群体。结果成功开发了5个IP和5个SCAR标记。IP4和Y1分别位于黄色种皮基因两侧,距离分别为0.1和0.3 cM 。IP1、IP2和IP3分别来源于Bra036827、Bra036828、Bra036829,与目标基因共分离。BLAST分析表明,新开发标记的序列与A09染色体的序列具有良好的共线性,目标基因可能存在于27.079至27.616M之间 。根据该区域基因的注释,只有Bra036828与类黄酮生物合成相关。该基因与透明种皮6基因高度相似,因此在我们的研究中,Bra036828被确定为可能导致黄色种皮的基因。