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区域关联分析与转录组分析揭示了影响油菜籽种子油积累的候选基因。

Regional association analysis coupled with transcriptome analyses reveal candidate genes affecting seed oil accumulation in Brassica napus.

机构信息

Collaborative Innovation Center of Grain and Oil Crops in South China, Hunan Agricultural University, Changsha, 410128, China.

Molecular Biology, Department of Pathology, MTI-LRH, Peshawar, 25000, Pakistan.

出版信息

Theor Appl Genet. 2021 May;134(5):1545-1555. doi: 10.1007/s00122-021-03788-0. Epub 2021 Mar 6.

Abstract

Regional association analysis of 50 re-sequenced Chinese semi-winter rapeseed accessions in combination with co-expression analysis reveal candidate genes affecting oil accumulation in Brassica napus. One of the breeding goals in rapeseed production is to enhance the seed oil content to cater to the increased demand for vegetable oils due to a growing global population. To investigate the genetic basis of variation in seed oil content, we used 60 K Brassica Infinium SNP array along with phenotype data of 203 Chinese semi-winter rapeseed accessions to perform a genome-wide analysis of haplotype blocks associated with the oil content. Nine haplotype regions harbouring lipid synthesis/transport-, carbohydrate metabolism- and photosynthesis-related genes were identified as significantly associated with the oil content and were mapped to chromosomes A02, A04, A05, A07, C03, C04, C05, C08 and C09, respectively. Regional association analysis of 50 re-sequenced Chinese semi-winter rapeseed accessions combined with transcriptome datasets from 13 accessions was further performed on these nine haplotype regions. This revealed natural variation in the BnTGD3-A02 and BnSSE1-A05 gene regions correlated with the phenotypic variation of the oil content within the A02 and A04 chromosome haplotype regions, respectively. Moreover, co-expression network analysis revealed that BnTGD3-A02 and BnSSE1-A05 were directly linked with fatty acid beta-oxidation-related gene BnKAT2-C04, thus forming a molecular network involved in the potential regulation of seed oil accumulation. The results of this study could be used to combine favourable haplotype alleles for further improvement of the seed oil content in rapeseed.

摘要

中国 50 个半冬油菜重测序品系的区域关联分析结合共表达分析揭示了影响油菜籽中油脂积累的候选基因。油菜籽生产的一个目标是提高种子含油量,以满足由于全球人口增长而对植物油需求的增加。为了研究种子油含量变化的遗传基础,我们使用了 60K Brassica Infinium SNP 芯片以及 203 个中国半冬油菜品系的表型数据,对与油含量相关的单倍型块进行了全基因组分析。发现 9 个含有脂质合成/转运、碳水化合物代谢和光合作用相关基因的单倍型区域与油含量显著相关,并分别被定位到 A02、A04、A05、A07、C03、C04、C05、C08 和 C09 染色体上。对这 9 个单倍型区域进行了 50 个中国半冬油菜重测序品系的区域关联分析,并结合 13 个品系的转录组数据集进行了进一步分析。这揭示了 BnTGD3-A02 和 BnSSE1-A05 基因区域的自然变异与 A02 和 A04 染色体单倍型区域油含量的表型变异相关。此外,共表达网络分析显示,BnTGD3-A02 和 BnSSE1-A05 与脂肪酸β-氧化相关基因 BnKAT2-C04 直接相关,从而形成了一个涉及种子油积累潜在调控的分子网络。本研究的结果可用于结合有利的单倍型等位基因,进一步提高油菜籽的种子含油量。

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