首页> 美国卫生研究院文献>Journal of Experimental Botany >Uncovering tomato quantitative trait loci and candidate genes for fruit cuticular lipid composition using the Solanum pennellii introgression line population
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Uncovering tomato quantitative trait loci and candidate genes for fruit cuticular lipid composition using the Solanum pennellii introgression line population

机译:利用茄茄渗入系发现番茄定量性状位点和果实表皮脂质组成的候选基因

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摘要

The cuticle is a specialized cell wall layer that covers the outermost surface of the epidermal cells and has important implications for fruit permeability and pathogen susceptibility. In order to decipher the genetic control of tomato fruit cuticle composition, an introgression line (IL) population derived from a biparental cross between Solanum pennellii (LA0716) and the Solanum lycopersicum cultivar M82 was used to build a first map of associated quantitative trait loci (QTLs). A total of 24 cuticular waxes and 26 cutin monomers were determined. They showed changes associated with 18 genomic regions distributed in nine chromosomes affecting 19 ILs. Out of the five main fruit cuticular components described for the wild species S. pennellii, three of them were associated with IL3.4, IL12.1, and IL7.4.1, causing an increase in n-alkanes (≥C30), a decrease in amyrin content, and a decrease in cuticle thickness of ~50%, respectively. Moreover, we also found a QTL associated with increased levels of amyrins in IL3.4. In addition, we propose some candidate genes on the basis of their differential gene expression and single nucleotide polymorphism variability between the introgressed and the recurrent alleles, which will be the subjects of further investigation.
机译:角质层是专门的细胞壁层,覆盖表皮细胞的最外表面,对水果的通透性和病原体敏感性具有重要意义。为了破译番茄果实表皮成分的遗传控制,使用了Pennellii茄(LA0716)和番茄M82的双亲杂交获得的渗入系(IL)种群,以建立相关数量性状基因座的第一个图谱( QTL)。总共测定了24种表皮蜡和26种角质素单体。他们显示出与分布在影响19个IL的9条染色体上的18个基因组区域相关的变化。在描述的野生种S.pennellii的五个主要水果表皮成分中,其中三个与IL3.4,IL12.1和IL7.4.1相关,导致正构烷烃增加(≥C30),而下降糊精含量的降低和表皮厚度的降低分别约50%。此外,我们还发现了与IL3.4中的淀粉样蛋白水平升高相关的QTL。此外,我们根据基因的差异表达以及渐渗等位基因和复发等位基因之间的单核苷酸多态性变异性,提出了一些候选基因,这些将成为进一步研究的对象。

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