Dang Xiaojing, Fang Bingjie, Chen Xiangong, Li Dalu, Sowadan Ognigamal, Dong Zhiyao, Liu Erbao, She Dong, Wu Guocan, Liang Yinfeng, Hong Delin
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing, China.
Front Plant Sci. 2017 Dec 12;8:2112. doi: 10.3389/fpls.2017.02112. eCollection 2017.
The panicle exsertion length (PEL) in rice ( L.) is an important trait for hybrid seed production. We investigated the PEL in a chromosome segment substitution line (CSSL) population consisting of 66 lines and a natural population composed of 540 varieties. In the CSSL population, a total of seven QTLs for PEL were detected across two environments. The percentage of phenotypic variance explained (PVE) ranged from 10.22 to 50.18%, and the additive effect ranged from -1.77 to 6.47 cm. Among the seven QTLs, had the largest PVE, 44.05 and 50.18%, with an additive effect of 5.91 and 6.47 cm in 2015 and in 2016, respectively. In the natural population, 13 SSR marker loci were detected that were associated with PEL in all four environments, with the PVE ranging from 1.20 to 6.26%. Among the 13 loci, 7 were novel. The RM5746-170 bp allele had the largest phenotypic effect (5.11 cm), and the typical carrier variety was Qiaobinghuang. An RM5620-RM6100 region harboring the locus on chromosome 10 was detected in both populations. The sequencing results showed that the accessions with a shorter PEL contained the A base, while the accessions with a longer PEL contained the G base at the 1,475 bp location of the gene.
水稻的穗伸出长度(PEL)是杂交种子生产的一个重要性状。我们在由66个株系组成的染色体片段代换系(CSSL)群体和由540个品种组成的自然群体中研究了PEL。在CSSL群体中,在两个环境中总共检测到7个控制PEL的QTL。表型变异解释率(PVE)范围为10.22%至50.18%,加性效应范围为-1.77至6.47厘米。在这7个QTL中, 具有最大的PVE,分别为2015年的44.05%和2016年的50.18%,加性效应分别为5.91和6.47厘米。在自然群体中,在所有四个环境中检测到13个与PEL相关的SSR标记位点,PVE范围为1.20%至6.26%。在这13个位点中,7个是新发现的。RM5746 - 170 bp等位基因具有最大的表型效应(5.11厘米),典型的携带品种是桥粳黄。在两个群体中都检测到了位于第10号染色体上含有 位点的RM5620 - RM6100区域。测序结果表明,PEL较短的材料在 基因的1475 bp位置含有A碱基,而PEL较长的材料含有G碱基。