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首页> 外文期刊>Frontiers in Plant Science >QTL Analyses in Multiple Populations Employed for the Fine Mapping and Identification of Candidate Genes at a Locus Affecting Sugar Accumulation in Melon ( Cucumis melo L.)
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QTL Analyses in Multiple Populations Employed for the Fine Mapping and Identification of Candidate Genes at a Locus Affecting Sugar Accumulation in Melon ( Cucumis melo L.)

机译:对影响甜瓜糖分积累的一个座位的候选基因进行精细定位和鉴定的多个人群的QTL分析。( Cucumis melo L.)

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Sugar content is the major determinant of both fruit quality and consumer acceptance in melon ( Cucumis melo L), and is a primary target for crop improvement. Near-isogenic lines (NILs) derived from the intraspecific cross between a “Piel de Sapo” (PS) type and the exotic cultivar “Songwhan Charmi” (SC), and several populations generated from the cross of PS × Ames 24294 (“Trigonus”), a wild melon, were used to identify QTL related to sugar and organic acid composition. Seventy-eight QTL were detected across several locations and different years, with three important clusters related to sugar content located on chromosomes 4, 5, and 7. Two PS × SC NILs (SC5-1 and SC5-2) sharing a common genomic interval of 1.7 Mb at the top of chromosome 5 contained QTL reducing soluble solids content (SSC) and sucrose content by an average of 29 and 68%, respectively. This cluster collocated with QTL affecting sugar content identified in other studies in lines developed from the PS × SC cross and supported the presence of a stable consensus locus involved in sugar accumulation that we named SUCQSC5.1 . QTL reducing soluble solids and sucrose content identified in the “Trigonus” mapping populations, as well as QTL identified in previous studies from other ssp. agrestis sources, collocated with SUCQSC5.1 , suggesting that they may be allelic and implying a role in domestication. In subNILs derived from the PS × SC5-1 cross, SUCQSC5.1 reduced SSC and sucrose content by an average of 18 and 34%, respectively, and was fine-mapped to a 56.1 kb interval containing four genes. Expression analysis of the candidate genes in mature fruit showed differences between the subNILs with PS alleles that were “high” sugar and SC alleles of “low” sugar phenotypes for MELO3C014519, encoding a putative BEL1-like homeodomain protein. Sequence differences in the gene predicted to affect protein function were restricted to SC and other ssp. agrestis cultivar groups. These results provide the basis for further investigation of genes affecting sugar accumulation in melon.
机译:糖含量是瓜果质量和消费者接受度的主要决定因素,并且是改善作物的主要目标。来自“ Piel de Sapo”(PS)类型和外来品种“ Songwhan Charmi”(SC)之间种内杂交的近等基因系(NIL),以及由PS×Ames 24294(“ Trigonus” ”)(一种野生瓜)用于鉴定与糖和有机酸成分有关的QTL。在多个位置和不同年份检测到78个QTL,其中三个重要的簇与糖含量有关,位于染色体4、5和7上。两个PS×SC NIL(SC5-1和SC5-2)共享一个共同的基因组间隔5号染色体顶部的1.7 Mb含有QTL,可溶固体含量(SSC)和蔗糖含量分别平均降低29%和68%。该簇与影响QTL的糖含量并列,在其他研究中从PS×SC杂交系得到了证实,并支持存在一个涉及糖积累的稳定共有位点(我们命名为SUCQSC5.1)。 QTL减少了在“ Trigonus”作图群体中发现的可溶性固形物和蔗糖含量,以及先前研究中从其他物种鉴定出的QTL。 agrestis来源与SUCQSC5.1并置,表明它们可能是等位基因并暗示在驯化中起作用。在源自PS×SC5-1杂交的subNIL中,SUCQSC5.1分别将SSC和蔗糖含量平均降低18%和34%,并被精细映射到56.1 kb的间隔,包含四个基因。成熟果实中候选基因的表达分析显示,subloILILs与MELO3C014519的PS等位基因是“高”糖表型,SC等位基因是“低”糖表型,编码假定的BEL1样同源域蛋白。预测影响蛋白质功能的基因序列差异仅限于SC和其他ssp。 agrestis品种组。这些结果为进一步研究影响甜瓜糖分积累的基因提供了基础。

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