Tian Yousheng, Sang Wei, Liu Pengpeng, Liu Jindong, Xiang Jishan, Cui Fengjuan, Xu Hongjun, Han Xinnian, Nie Yingbin, Kong Dezhen, Li Weihua, Mu Peiyuan
The Key Laboratory of the Oasis Ecological Agriculture, College of Agriculture, Shihezi University, Shihezi, China.
Department of Administrative Management, Xinjiang Academy of Agri-reclamation Sciences, Shihezi, China.
Front Genet. 2022 Mar 25;13:830644. doi: 10.3389/fgene.2022.830644. eCollection 2022.
In order to understand the genetic basis of starch pasting viscosity characteristics of Chinese spring wheat, we assessed the genetic variation of RVA parameters determined by the Rapid Visco Analyser in a panel of 192 Chinese spring wheat accessions grown in Er'shi, Shihezi and Zhaosu during 2012 and 2013 cropping seasons. A genome-wide association study with 47,362 single nucleotide polymorphism (SNP) markers was conducted to detect marker-trait associations using mixed linear model. Phenotypic variations of RVA parameters ranged from 1.6 to 30.7% and broad-sense heritabilities ranged from 0.62 to 0.91. Forty-one SNP markers at 25 loci were significantly associated with seven RVA traits in at least two environments; among these, 20 SNPs were located in coding sequences (CDS) of 18 annotation genes, which can lead to discovering novel genes underpinning starch gelatinization in spring wheat. Haplotype analysis revealed one block for breakdown (BD) on chromosome 3B and two blocks for pasting temperature (T) on chromosome 7B. Cultivars with superior haplotypes at these loci showed better starch pasting viscosity than the average of all cultivars surveyed. The identified loci and associated markers provide valuable sources for future functional characterization and genetic improvement of starch quality in wheat.
为了解中国春小麦淀粉糊化粘度特性的遗传基础,我们评估了2012年和2013年种植季在二师、石河子和昭苏种植的192份中国春小麦材料通过快速粘度分析仪测定的RVA参数的遗传变异。利用混合线性模型,对47362个单核苷酸多态性(SNP)标记进行全基因组关联研究,以检测标记与性状的关联。RVA参数的表型变异范围为1.6%至30.7%,广义遗传力范围为0.62至0.91。25个位点的41个SNP标记在至少两个环境中与7个RVA性状显著相关;其中,20个SNP位于18个注释基因的编码序列(CDS)中,这有助于发现春小麦淀粉糊化的新基因。单倍型分析揭示了3B染色体上的一个峰值与峰值粘度(PV)相关,7B染色体上的两个峰值与糊化温度(T)相关。在这些位点具有优良单倍型的品种表现出比所有调查品种的平均值更好的淀粉糊化粘度。所鉴定的位点和相关标记为未来小麦淀粉品质的功能鉴定和遗传改良提供了有价值的资源。