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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Association Study Reveals Candidate Genes for Control of Plant Height, Branch Initiation Height and Branch Number in Rapeseed ( Brassica napus L.)
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Genome-Wide Association Study Reveals Candidate Genes for Control of Plant Height, Branch Initiation Height and Branch Number in Rapeseed ( Brassica napus L.)

机译:全基因组关联研究揭示了可控制油菜籽中植物高度,分支起始高度和分支数的候选基因(甘蓝型油菜 L.)

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Plant architecture is crucial for rapeseed yield and is determined by plant height (PH), branch initiation height (BIH), branch number (BN) and leaf and inflorescence morphology. In this study, we measured three major factors (PH, BIH, and BN) in a panel of 333 rapeseed accessions across 4 years. A genome-wide association study (GWAS) was performed via Q + K model and the panel was genotyped using the 60 k Brassica Infinium SNP array. We identified seven loci for PH, four for BIH, and five for BN. Subsequently, by determining linkage disequilibrium (LD) decay associated with 38 significant SNPs, we gained 31, 15, and 17 candidate genes for these traits, respectively. We also showed that PH is significantly correlated with BIH, while no other correlation was revealed. Notably, a GA signaling gene ( BnRGA ) and a flowering gene ( BnFT ) located on chromosome A02 were identified as the most likely candidate genes associated with PH regulation. Furthermore, a meristem initiation gene ( BnLOF2 ) and a NAC domain transcriptional factor ( BnCUC3 ) that may be associated with BN were identified on the chromosome A07. This study reveals novel insight into the genetic control of plant architecture and may facilitate marker-based breeding for rapeseed.
机译:植物结构对于油菜籽产量至关重要,取决于植物高度(PH),分支起始高度(BIH),分支数(BN)以及叶片和花序形态。在这项研究中,我们在4年中的333个油菜籽中,测量了三个主要因素(PH,BIH和BN)。通过Q + K模型进行全基因组关联研究(GWAS),并使用60 k Brassica Infinium SNP阵列对面板进行基因分型。我们为PH确定了7个基因座,为BIH确定了4个基因座,为BN确定了5个基因座。随后,通过确定与38个重要SNP相关的连锁不平衡(LD)衰减,我们分别获得了这些性状的31、15和17个候选基因。我们还表明,PH与BIH显着相关,而没有其他相关性被揭示。值得注意的是,位于A02染色体上的GA信号基因(BnRGA)和开花基因(BnFT)被确定为最可能与PH调节相关的候选基因。此外,在染色体A07上鉴定了可能与BN相关的分生组织起始基因(BnLOF2)和NAC结构域转录因子(BnCUC3)。这项研究揭示了对植物结构遗传控制的新见解,并可能促进基于标记的油菜育种。

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