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全基因组关联研究和候选基因在高粱籽粒中铁和锌浓度的表达。

Genome-wide association study and expression of candidate genes for Fe and Zn concentration in sorghum grains.

机构信息

International Crops Research Institute for the Semi-Arid Tropics, Patancheru, Telangana, India.

Vasantrao Naik Marathwada Agriculture University, Parbhani, Maharashtra, India.

出版信息

Sci Rep. 2024 Jun 3;14(1):12729. doi: 10.1038/s41598-024-63308-0.

Abstract

Sorghum germplasm showed grain Fe and Zn genetic variability, but a few varieties were biofortified with these minerals. This work contributes to narrowing this gap. Fe and Zn concentrations along with 55,068 high-quality GBS SNP data from 140 sorghum accessions were used in this study. Both micronutrients exhibited good variability with respective ranges of 22.09-52.55 ppm and 17.92-43.16 ppm. Significant marker-trait associations were identified on chromosomes 1, 3, and 5. Two major effect SNPs (S01_72265728 and S05_58213541) explained 35% and 32% of Fe and Zn phenotypic variance, respectively. The SNP S01_72265728 was identified in the cytochrome P450 gene and showed a positive effect on Fe accumulation in the kernel, while S05_58213541 was intergenic near Sobic.005G134800 (zinc-binding ribosomal protein) and showed negative effect on Zn. Tissue-specific in silico expression analysis resulted in higher levels of Sobic.003G350800 gene product in several tissues such as leaf, root, flower, panicle, and stem. Sobic.005G188300 and Sobic.001G463800 were expressed moderately at grain maturity and anthesis in leaf, root, panicle, and seed tissues. The candidate genes expressed in leaves, stems, and grains will be targeted to improve grain and stover quality. The haplotypes identified will be useful in forward genetics breeding.

摘要

高粱种质表现出谷物铁和锌的遗传变异性,但只有少数几个品种具有这些矿物质的生物强化作用。这项工作有助于缩小这一差距。本研究使用了 140 份高粱材料的 55068 个高质量 GBS SNP 数据和铁、锌浓度。这两种微量营养素都表现出很好的变异性,分别为 22.09-52.55 ppm 和 17.92-43.16 ppm。在染色体 1、3 和 5 上鉴定到了显著的标记-性状关联。两个主要效应 SNP(S01_72265728 和 S05_58213541)分别解释了 35%和 32%的铁和锌表型方差。SNP S01_72265728 位于细胞色素 P450 基因中,对核仁铁积累有正向影响,而 S05_58213541 则位于 Sobic.005G134800(锌结合核糖体蛋白)基因的基因间,对 Zn 表现出负向影响。组织特异性的计算机模拟表达分析导致了多个组织(如叶片、根、花、穗和茎)中 Sobic.003G350800 基因产物的高水平表达。Sobic.005G188300 和 Sobic.001G463800 在叶片、根、穗和种子组织中在成熟和开花时适度表达。在叶片、茎和籽粒中表达的候选基因将被靶向用于提高籽粒和秸秆品质。鉴定的单倍型将有助于正向遗传学育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8549/11148041/e5e4f0f97dfb/41598_2024_63308_Fig1_HTML.jpg

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