甘蓝型油菜籽粒着生密度及其相关性状全基因组关联分析
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西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院,西南大学农学与生物科技学院

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国家科技支撑项目(2013BAD01B03-12);国家农业部现代农业产业技术体系(CARS-12);重庆市社会事业与民生保障科技创新(cstc2016shmszx0756);西南大学博士启动基金(swu113064)


Genome-wide association analysis of silique density of seed density within per silique and its related traits in Brassica napus L.
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South West University

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    摘要:

    油菜角果内籽粒着生密度将影响每果粒数,对油菜产量有直接或者间接影响。本研究以不同遗传背景和地理来源的213份甘蓝型油菜品种(系)构成的自然群体为研究对象,利用芸薹属60K Illumina Infinium SNP芯片进行群体结构、亲缘关系以及连锁不平衡分析;然后基于最优模型对籽粒着生密度及其相关性状进行全基因组关联分析。通过GWAS分析,共检测到10个SNP位点与籽粒着生密度及其相关性状关联。其中与籽粒着生密度关联的标记有2个,表型贡献率在11.343%-15.96%之间;与角果有效长关联的标记有6个,单个位点可解释9.81%-12.16%的表型变异;与每果粒数相关联的标记有2个,分别解释10.44%和10.86%的表型变异。通过分析关联SNP位点的LD区间的基因信息,筛选出16个与籽粒着生密度及其相关性状有关的候选基因,其中KMD4和UGT76C2基因与细胞分裂素的调控有关;AGL104和ADC2基因参与种子的形成过程;MCCB、NGA2和MATE等基因参与侧生器官的生长发育过程,它们的异常表达会导致一些侧生器官的变异。ADC2和UGT76C2两个候选基因可能对籽粒着生密度和每果粒数一因多效性。

    Abstract:

    Seed density within per silique will affect seed per silique (the constituent elements of rapeseed yield) , which have a direct or indirect effect on rapeseed yield.In this study, a population of 213 Brassica napus accessions (or lines) were collected from different genetic backgrounds and geographical origins with the Brassica 60 K Illumina Infinium SNP array for assess population structure, relative kinship and linkage disequilibrium. Then the optimal model of each trait was selected array for genome-wide association analysis of the silique density of seed density within per silique and its related traits. A total of 10 SNPs were detected to be with significant association with the seed density within per silique and its related traits in 2016 year. 2 SNP sites associated with seed density within per silique were detected, explaining the phenotypic variation of 9.94% and 11.17%, respectively. 6 SNP sites associated with valid silique length were detected, and Single loci can explain the phenotypic variation of 9.81%-12.17% of the phenotypic variation. 2 SNP sites associated with seed per silique were detected, explaining the phenotypic variation of 10.44% and 10.87%, respectively. According to analyzing the genes information of the LD region sequence associated with the SNP site, we screened 16 candidate genes associated with silique density of major inflorescence and its related traits. KMD4 and UGT76C2 genes are involved in the regulation of cytokinin, and the genes i.e. AGL104 and ADC2 was found to be related to seed formation process. Other genes, such as MCCB、NGA2 and MATE, are involved in the growth and development of lateral organs, when abnormal expression lead to lateral organ variants. Two candidate genes ADC and UGT76C2, which overlapped in seed density within per silique and seed per silique, tended to have pleiotropism.

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任义英,崔翠,王倩,等.甘蓝型油菜籽粒着生密度及其相关性状全基因组关联分析[J].植物遗传资源学报,2018,19(2):314-325.

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  • 收稿日期:2017-09-12
  • 最后修改日期:2018-01-29
  • 录用日期:2017-11-27
  • 在线发布日期: 2018-03-19
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