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Comparative fine mapping of fruit quality QTLs on chromosome 4 introgressions derived from two wild tomato species

机译:两种野生番茄物种的4号染色体上的果实质量QTL的比较精细作图

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摘要

Despite their unsuitability for agricultural production, the wild relatives of crop species represent a largely untapped resource of novel QTLs potentially useful for crop plant improvement. In this regard, previous introgression studies, involving several different wild tomato species, have shown that the long arm of chromosome 4 contains QTLs for many horticulturally important traits including soluble solids content, fruit shape, lycopene content and biochemical composition. However, these earlier studies were unable to determine how many genes control these traits and whether genes affecting the same character from different wild species are allelic or not. In an effort to shed light on these issues,we have constructed a series of lines containing small, overlapping introgressions for portions of the long arm of chromosome 4 from L. peruvianum and L. hirsutum and tested these lines in replicated field trials. The results provide evidence for multiple, non-allelic loci controlling soluble solids and fruit weight. They also show that the loci controlling some traits (e.g. fruit shape, fruit weight, epidermal reticulation) co-localize to the same portions of chromosome 4, a result that maybe attributed to pleiotropy and/or gene dense areas with lower than average recombination. The implications of these finding for molecular breeding and utilization of exotic germplasm are discussed.
机译:尽管不适合农业生产,但农作物物种的野生近缘种仍是新型QTL的未开发资源,它们可能对改善作物植物有用。在这方面,以前的渗入研究涉及几种不同的野生番茄品种,显示第4号染色体的长臂含有QTL,这些QTL具有许多园艺上重要的性状,包括可溶性固形物含量,果实形状,番茄红素含量和生化成分。但是,这些较早的研究无法确定有多少基因控制这些性状,以及影响不同野生物种同一性状的基因是否是等位基因。为了阐明这些问题,我们构建了一系列品系,其中包含来自秘鲁乳杆菌和陆地棉的4号染色体长臂部分的小且重叠的渗入,并在重复的田间试验中对其进行了测试。结果为控制可溶性固体和果实重量的多个非等位基因座提供了证据。他们还表明,控制某些特征(例如果实形状,果实重量,表皮网状结构)的基因座共定位于4号染色体的相同部分,这一结果可能归因于多效性和/或基因重组密度低于平均水平的区域。讨论了这些发现对外来种质的分子育种和利用的意义。

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