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Genome‐wide expression quantitative trait locus analysis in a recombinant inbred line population for trait dissection in peanut

机译:基因组表达在花生中具有重组近交系群的重组近交系群定量性状分析

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The transcriptome connects genome to the gene function and ultimate phenome in biology. So far, transcriptomic approach was not used in peanut for performing trait mapping in bi‐parental populations. In this research, we sequenced the whole transcriptome in immature seeds in a peanut recombinant inbred line (RIL) population and explored thoroughly the landscape of transcriptomic variations and its genetic basis. The comprehensive analysis identified total 49?691 genes in RIL population, of which 92 genes followed a paramutation‐like expression pattern. Expression quantitative trait locus (eQTL) analysis identified 1207 local eQTLs and 15?837 distant eQTLs contributing to the whole‐genome transcriptomic variation in peanut. There were 94 eQTL hot spot regions detected across the genome with the dominance of distant eQTL. By integrating transcriptomic profile and annotation analyses, we unveiled a putative candidate gene and developed a linked marker InDel02 underlying a major QTL responsible for purple testa colour in peanut. Our result provided a first understanding of genetic basis of whole‐genome transcriptomic variation in peanut and illustrates the potential of the transcriptome‐aid approach in dissecting important traits in non‐model plants.
机译:转录组在生物学中将基因组连接到基因函数和最终缺陷。到目前为止,在PEANUT中未使用转录组种方法,以在双重父母群体中进行特质。在这项研究中,我们在花生重组近交系(RIL)群体中的未成熟种子中的整个转录组,并彻底探讨了转录组变异的景观及其遗传基础。综合分析鉴定了RIL群体中的49种691个基因,其中92个基因遵循载气相位的表达模式。表达定量性状基因座(EQTL)分析鉴定了1207个局部EQTL和15?837远程EQTL,其有助于花生的全基因组转录组变异。在基因组中检测到94个EQTL热点区域,具有遥远的EQTL的主导地位。通过整合转录组简谱和注释分析,我们推出了推定的候选基因,并开发了一个有关QTL的连接标记Indel02,其负责花生中的紫色Testa颜色。我们的结果提供了对花生中全基因组转录组变异的遗传基础的首次理解,并说明了转录综合体辅助方法在疏忽非模型植物中的重要性状。

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