Genome-wider organization mapping
Using publicly available genotypic data from our previous study, all 310 of the lines of the association panel contained 56,110 SNP loci (Zhang et al., 2016 ). A total of 39,354 SNPs across 10 chromosomes remained after quality filtering using the following standard: SNPs with a missing rate >5%, SNPs with heterozygosity rate > 20% and SNPs with a minor allele frequency (MAF) <0.05 were expurgated, and only biallelic sites were reserved. The resulting 39,354 SNPs were subsequently used for LD calculation and GWAS analysis. Population structure was estimated by using STRUCTURE 2.3.4 software program with the 5,000 SNPs, which were randomly selected from the above 39,354 SNPs and evenly distributed across 10 chromosomes (Pritchard et al., 2000 ), and a Bayesian me was utilized for assigning individuals to groups. The number of subgroups (K) was set from 1 to 10, and five-time simulations with iterations and burn-ins set to 10,000 were conducted using the mixture model and correlated allele frequency for each K. Based on the output log likelihood of data (LnP(D)) of STRUCTURE, the ad hoc statistic ?K was applied to determine the optimal number of subgroups (Evanno et al., 2005 ). Principle component analysis (PCA) was also performed in R software for calculating the population structure and compared with the result of STRUCTURE. The best number of subpopulations was selected to determine the Q matrix. The software SpAGeDi (Hardy and Vekemans, 2002 ) was used to calculate kinship coefficients (kinship matrix) between the inbred lines of the associated panel. LD between genome-wide SNP markers was calculated using TASSEL 5.0 software (Bradbury et al., 2007 ).
Linkage mapping
Within earlier investigation, a container chart with six,618 recombination pots is created for the IBM people (Liu mais aussi al., 2015 ). The common point was 0.48 cM between surrounding indicators. Contained in this studies, QTL managing the kernel proportions for the 7 (KL and you may KW) otherwise five (KT) of one’s environment (E1b, E2b, E3b, E4b, E5b, E6b and you will E7b) was imagined using a design-period mapping (CIM) approach by making use of Windows QTL Cartographer app version dos.5 (Wang et al., 2012a ). Continue reading »