首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genome-wide QTL and bulked transcriptomic analysis reveals new candidate genes for the control of tuber carotenoid content in potato (Solanum tuberosum L.)
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Genome-wide QTL and bulked transcriptomic analysis reveals new candidate genes for the control of tuber carotenoid content in potato (Solanum tuberosum L.)

机译:全基因组的QTL和大量的转录组分析揭示了控制马铃薯(Solanum tuberosum L.)块茎类胡萝卜素含量的新候选基因

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Genome-wide QTL analysis of potato tuber carotenoid content was investigated in populations of Solanum tuberosum Group Phureja that segregate for flesh colour, revealing a novel major QTL on chromosome 9. The carotenoid content of edible plant storage organs is a key nutritional and quality trait. Although the structural genes that encode the biosynthetic enzymes are well characterised, much less is known about the factors that determine overall storage organ content. In this study, genome-wide QTL mapping, in concert with an efficient 'genetical genomics' analysis using bulked samples, has been employed to investigate the genetic architecture of potato tuber carotenoid content. Two diploid populations of Solanum tuberosum Group Phureja were genotyped (AFLP, SSR and DArT markers) and analysed for their tuber carotenoid content over two growing seasons. Common to both populations were QTL that explained relatively small proportions of the variation in constituent carotenoids and a major QTL on chromosome 3 explaining up to 71 % of the variation in carotenoid content. In one of the populations (01H15), a second major carotenoid QTL was identified on chromosome 9, explaining up to 20 % of the phenotypic variation. Whereas the major chromosome 3 QTL was likely to be due to an allele of a gene encoding beta-carotene hydroxylase, no known carotenoid biosynthetic genes are located in the vicinity of the chromosome 9 QTL. A unique expression profiling strategy using phenotypically distinct bulks comprised individuals with similar carotenoid content provided further support for the QTL mapping to chromosome 9. This study shows the potential of using the potato genome sequence to link genetic maps to data arising from eQTL approaches to enhance the discovery of candidate genes underlying QTLs
机译:在马铃薯群体Phureja的种群中,对马铃薯块茎类胡萝卜素含量进行了全基因组QTL分析,该群体分离出肉色,揭示了9号染色体上的新主要QTL。可食用植物存储器官的类胡萝卜素含量是关键的营养和品质特征。尽管编码生物合成酶的结构基因已被很好地表征,但对于决定总存储器官含量的因素知之甚少。在这项研究中,全基因组QTL作图与使用大量样品进行的有效“遗传基因组学”分析相结合,已被用于研究马铃薯块茎类胡萝卜素含量的遗传结构。对马铃薯Phureja组的两个二倍体种群进行了基因分型(AFLP,SSR和DArT标记),并分析了两个生长季节中它们的块茎类胡萝卜素含量。两种种群共有的QTL解释了构成类胡萝卜素变化的比例相对较小,而3号染色体上的主要QTL则解释了多达71%的类胡萝卜素含量变化。在一个种群(01H15)中,在第9号染色体上鉴定出第二个主要类胡萝卜素QTL,解释了多达20%的表型变异。主要3号染色体QTL可能是由于编码β-胡萝卜素羟化酶的基因的等位基因引起的,而9号染色体QTL附近没有已知的类胡萝卜素生物合成基因。一种独特的表达谱分析策略,使用表型上不同的大量物质,包括类胡萝卜素含量相似的个体,为QTL映射到9号染色体提供了进一步的支持。这项研究表明,利用马铃薯基因组序列将遗传图谱与eQTL方法产生的数据联系起来以增强基因表达的潜力。发现潜在的QTL候选基因

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