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Fine mapping and discovery of candidate genes for seed size in watermelon by genome survey sequencing

机译:通过基因组调查测序精细定位和发现西瓜种子大小的候选基因

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摘要

Fine mapping and discovery of candidate genes underlying seed size are important for modern watermelon breeding. Here, by using a high-resolution genetic map and whole-genome genetic variation detection aided by genome survey sequencing, we fine mapped and discovered candidate genes for seed size in watermelon. QTL (quantitative trait locus) mapping identified two pleiotropic QTLs for seed size, namely, qSS4 and qSS6, using a high-density genetic map constructed by specific length amplified fragment sequencing. qSS6 explained 93.00%, 94.11% and 95.26% of the phenotypic variation in thousand-seed weight, seed length and seed width, respectively, and was defined as a major QTL. Then, high-coverage re-sequencing of two parental lines detected a total of 193,395 SNPs (single nucleotide polymorphisms) and 45,065 indels (insertions/deletions), which corresponded to a frequency of 534 SNPs/Mb and 124 indels/Mb. Based on the genetic variation in the two parental lines, newly developed PCR-based markers allowed the region of qSS6 to be narrowed to 55.5?kb. Three potential candidates were identified, including a known seed size regulator in rice, SRS3. Taken together, our results reveal successful rapid fine mapping and discovery of candidate genes for seed size in watermelon, which could be applied to many traits of interest in plants.
机译:精细定位和发现潜在种子大小的候选基因对于现代西瓜育种很重要。在这里,通过使用高分辨率的遗传图谱和全基因组遗传变异检测,并借助基因组调查测序,我们精细地定位并发现了西瓜种子大小的候选基因。 QTL(定量性状基因座)作图使用通过特定长度扩增片段测序构建的高密度遗传图谱确定了两个多效性QTL的种子大小,即qSS4和qSS6。 qSS6分别解释了千粒重,种子长度和种子宽度表型变异的93.00%,94.11%和95.26%,并被定义为主要QTL。然后,对两个亲本品系的高覆盖率重测序检测到总共193,395个SNP(单核苷酸多态性)和4,0055个indel(插入/缺失),对应于534个SNPs / Mb和124个indels / Mb的频率。基于两个亲本系的遗传变异,新开发的基于PCR的标记使qSS6的区域缩小到55.5?kb。确定了三个潜在的候选对象,包括水稻中已知的种子大小调节剂SRS3。综上所述,我们的结果揭示了成功的快速精细作图和西瓜种子大小候选基因的发现,这些基因可应用于植物中许多重要的性状。

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