整合全基因组关联研究和转录组学数据来预测影响甘蓝型油菜种子植酸的候选基因和有利单倍型。

Haijiang Liu, Xiaojuan Li, Qianwen Zhang, Pan Yuan, Lei Liu, Graham J King, Guangda Ding, Sheliang Wang, Hongmei Cai, Chuang Wang, Fangsen Xu, Lei Shi
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引用次数: 2

摘要

植酸盐是被子植物种子中磷的储存形式,在种子发育过程中起着至关重要的作用。然而,在作物植物中,植酸降低了人类、牲畜和家禽对种子源矿物元素的生物利用度,并导致与磷酸盐有关的水污染。然而,对油菜(Brassica napus)的这一特性了解甚少。本文利用3.28 × 106个单核苷酸多态性(SNPs)对505个不同的甘蓝型油菜品种进行了全基因组关联研究(GWAS)筛选。鉴定出119个与植酸浓度(PA_Conc)和植酸含量(PA_Cont)显著相关的snp和6个候选基因。其中,BnaA9。MRP5代表PA_Cont和PA_Conc的重要SNP chrA09_5198034 (27 kb)的候选基因。BnaA9的转录。低植酸品种(LPA20)与高植酸品种(HPA972)相比,MRP5显著升高。关联分析和单倍型分析表明,BnaA9自交系携带特定SNP单倍型。MRP5与高和低植酸表型相关。低植酸和高植酸品种的种子发芽率和种子产量无显著差异。本研究确定的候选基因、有利单倍型和低植酸品种将为甘蓝型油菜低植酸育种提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating a genome-wide association study with transcriptomic data to predict candidate genes and favourable haplotypes influencing Brassica napus seed phytate.

Phytate is the storage form of phosphorus in angiosperm seeds and plays vitally important roles during seed development. However, in crop plants phytate decreases bioavailability of seed-sourced mineral elements for humans, livestock and poultry, and contributes to phosphate-related water pollution. However, there is little knowledge about this trait in oilseed rape (Brassica napus). Here, a panel of 505 diverse B. napus accessions was screened in a genome-wide association study (GWAS) using 3.28 × 106 single-nucleotide polymorphisms (SNPs). This identified 119 SNPs significantly associated with phytate concentration (PA_Conc) and phytate content (PA_Cont) and six candidate genes were identified. Of these, BnaA9.MRP5 represented the candidate gene for the significant SNP chrA09_5198034 (27 kb) for both PA_Cont and PA_Conc. Transcription of BnaA9.MRP5 in a low-phytate variety (LPA20) was significantly elevated compared with a high-phytate variety (HPA972). Association and haplotype analysis indicated that inbred lines carrying specific SNP haplotypes within BnaA9.MRP5 were associated with high- and low-phytate phenotypes. No significant differences in seed germination and seed yield were detected between low and high phytate cultivars examined. Candidate genes, favourable haplotypes and the low phytate varieties identified in this study will be useful for low-phytate breeding of B. napus.

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