Badigannavar Ashok, Myers Gerald O
Louisiana State University Agricultural Center, School of Plant, Environmental, and Soil Sciences, 104 M. B. Sturgis Hall, Baton Rouge, LA 70803, USA.
J Genet. 2015 Mar;94(1):87-94. doi: 10.1007/s12041-015-0489-x.
Cottonseed contains 16% seed oil and 23% seed protein by weight. High levels of palmitic acid provides a degree of stability to the oil, while the presence of bound gossypol in proteins considerably changes their properties, including their biological value. This study uses genetic principles to identify genomic regions associated with seed oil, protein and fibre content in upland cotton cultivars. Cotton association mapping panel representing the US germplasm were genotyped using amplified fragment length polymorphism markers, yielding 234 polymorphic DNA fragments. Phenotypic analysis showed high genetic variability for the seed traits, seed oil range from 6.47-25.16%, protein from 1.85-28.45% and fibre content from 15.88-37.12%. There were negative correlations between seed oil and protein content.With reference to genetic diversity, the average estimate of FST was 8.852 indicating a low level of genetic differentiation among subpopulations. The AMOVA test revealed that variation was 94% within and 6% among subpopulations. Bayesian population structure identified five subpopulations and was in agreement with their geographical distribution. Among the mixed models analysed, mixed linear model (MLM) identified 21 quantitative trait loci for lint percentage and seed quality traits, such as seed protein and oil. Establishing genetic diversity, population structure and marker trait associations for the seed quality traits could be valuable in understanding the genetic relationships and their utilization in breeding programmes.
棉籽按重量计含有16%的籽油和23%的籽蛋白。高水平的棕榈酸为这种油提供了一定程度的稳定性,而蛋白质中结合棉酚的存在则极大地改变了它们的特性,包括它们的生物学价值。本研究运用遗传原理来鉴定与陆地棉品种的籽油、蛋白质和纤维含量相关的基因组区域。利用扩增片段长度多态性标记对代表美国种质的棉花关联作图群体进行基因分型,产生了234个多态性DNA片段。表型分析表明,种子性状具有较高的遗传变异性,籽油含量范围为6.47 - 25.16%,蛋白质含量范围为1.85 - 28.45%,纤维含量范围为15.88 - 37.12%。籽油和蛋白质含量之间呈负相关。关于遗传多样性,FST的平均估计值为8.852,表明亚群体间的遗传分化水平较低。方差分析表明,94%的变异存在于亚群体内部,6%存在于亚群体之间。贝叶斯群体结构鉴定出五个亚群体,且与它们的地理分布一致。在分析的混合模型中,混合线性模型(MLM)鉴定出21个与皮棉百分率以及种子品质性状(如种子蛋白和油)相关的数量性状位点。建立种子品质性状的遗传多样性、群体结构和标记-性状关联对于理解遗传关系及其在育种计划中的利用可能具有重要价值。