International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, 502 324, India.
Institute of Biotechnology, Professor Jayshankar Telangana State Agricultural University (PJTSAU), Rajendranagar, Hyderabad, 500 030, India.
Sci Rep. 2017 May 12;7(1):1813. doi: 10.1038/s41598-017-01535-4.
Sterility mosaic disease (SMD) is one of the serious production constraints that may lead to complete yield loss in pigeonpea. Three mapping populations including two recombinant inbred lines and one F, were used for phenotyping for SMD resistance at two locations in three different years. Genotyping-by-sequencing approach was used for simultaneous identification and genotyping of SNPs on above mentioned populations. In total, 212,464, 89,699 and 64,798 SNPs were identified in ICPL 20096 × ICPL 332 (PRIL_B), ICPL 20097 × ICP 8863 (PRIL_C) and ICP 8863 × ICPL 87119 (F) respectively. By using high-quality SNPs, genetic maps were developed for PRIL_B (1,101 SNPs; 921.21 cM), PRIL_C (484 SNPs; 798.25 cM) and F (996 SNPs; 1,597.30 cM) populations. The average inter marker distance on these maps varied from 0.84 cM to 1.65 cM, which was lowest in all genetic mapping studies in pigeonpea. Composite interval mapping based QTL analysis identified a total of 10 QTLs including three major QTLs across the three populations. The phenotypic variance of the identified QTLs ranged from 3.6 to 34.3%. One candidate genomic region identified on CcLG11 seems to be promising QTL for molecular breeding in developing superior lines with enhanced resistance to SMD.
无菌镶嵌病毒病(SMD)是可能导致兵豆完全减产的严重生产限制因素之一。在三年的两个不同地点,使用两个重组自交系和一个 F₁群体的三个作图群体对 SMD 抗性进行表型分析。使用测序的基因分型方法同时鉴定和基因分型上述群体中的 SNP。在 ICPL 20096×ICPL 332(PRIL_B)、ICPL 20097×ICP 8863(PRIL_C)和 ICP 8863×ICPL 87119(F)三个群体中,共鉴定出 212464、89699 和 64798 个 SNP。利用高质量的 SNP,分别为 PRIL_B(1101 个 SNP;921.21 cM)、PRIL_C(484 个 SNP;798.25 cM)和 F(996 个 SNP;1597.30 cM)群体开发了遗传图谱。这些图谱上的平均标记间距离从 0.84 cM 到 1.65 cM 不等,在所有兵豆的遗传图谱研究中是最低的。基于复合区间作图的 QTL 分析在三个群体中共鉴定出 10 个 QTL,包括三个主 QTL。鉴定出的 QTL 的表型方差范围为 3.6%至 34.3%。在 CcLG11 上鉴定出的一个候选基因组区域似乎是一个很有前途的 QTL,可用于分子育种,培育对 SMD 具有增强抗性的优良品系。