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利用数量性状基因座的遗传分析鉴定面包小麦淀粉胶凝参数和直链淀粉-脂质复合物(抗性淀粉 5)的新基因。

Genetic dissection of quantitative traits loci identifies new genes for gelatinization parameters of starch and amylose-lipid complex (Resistant starch 5) in bread wheat.

机构信息

National Agri-Food Biotechnology Institute (NABI), Sector-81, SAS Nagar, Mohali-140 306, Punjab, India; Department of Botany, School of Basic Sciences, Central University of Punjab, Bathinda.

Department of Botany, School of Basic Sciences, Central University of Punjab, Bathinda.

出版信息

Plant Sci. 2022 Dec;325:111452. doi: 10.1016/j.plantsci.2022.111452. Epub 2022 Sep 8.

Abstract

Starch is a major component of cereal grains such as wheat. Physicochemical and functional properties of starch affect end-use food quality and nutrients. To improve cultivars that preserve superior starch quality, the genetic foundation of the wheat starch and amylose-lipid complex (ALc, Resistant starch type 5) gelatinization are needed. This genome-wide association (GWA) mapping used 192 wheat genotypes (previously reported) to generate SNPs using an enhanced version of sequencing termed ddRAD on the Illumina Hi-seq X platform and 3696 high-quality influential SNPs were filtered out. The heterozygosity and Fst ranges in five subpopulations were 0.31-0.40 and 0.18-0.30 respectively. Nucleotide diversity and PIC ranged from 0.21 (6A) to 0.32 (2A) and 0.29 (6A) to 0.39 (4D) respectively. The Shannon waiver index was 1.7 and the whole-genome LD decay was 22 Mb at r = 0.38. Following FDR, 23 and 8 SNPs showed association with starch properties in the year 2017 and 2018, respectively while 93 and 20 SNPs were associated with ALc gelatinization in the year 2017 and 2018 respectively. The identified potential new genes (GSK3-alpha, RING-type domain-containing protein, Tetratricopeptide repeat, Hexosyltransferase, GLP, SNF1, and WRKY transcription factor) within LD range (∼16 Kb to ∼15 Mb), BLUP value, and cis and trans-position of SNPs network provide valuable information for the future wheat breeding strategy for the improvement of the starch quality trait.

摘要

淀粉是小麦等谷物的主要成分。淀粉的物理化学和功能特性影响最终用途食品的质量和营养。为了改良保持优良淀粉品质的品种,需要了解小麦淀粉和直链淀粉-脂质复合物(ALc,抗性淀粉类型 5)胶凝的遗传基础。该全基因组关联(GWA)图谱使用 192 个小麦基因型(先前报道),在 Illumina Hi-seq X 平台上使用称为 ddRAD 的测序增强版生成 SNP,并过滤出 3696 个有影响力的高质量 SNP。五个亚群的杂合度和 Fst 范围分别为 0.31-0.40 和 0.18-0.30。核苷酸多样性和 PIC 范围从 0.21(6A)到 0.32(2A)和 0.29(6A)到 0.39(4D)。Shannon 弃权指数为 1.7,全基因组 LD 衰减在 r = 0.38 时为 22 Mb。经过 FDR 调整后,2017 年和 2018 年分别有 23 个和 8 个 SNP 与淀粉特性相关,2017 年和 2018 年分别有 93 个和 20 个 SNP 与 ALc 胶凝相关。在 LD 范围内(∼16 Kb 到 ∼15 Mb)、BLUP 值以及 SNP 网络的顺式和反式位置确定的潜在新基因(GSK3-alpha、RING 结构域蛋白、四肽重复、己糖基转移酶、GLP、SNF1 和 WRKY 转录因子)提供了有价值的信息,有助于未来的小麦育种策略,以改良淀粉品质性状。

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