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Mode of Inheritance of Primary Metabolic Traits in Tomato.

Plant Cell(2008)SCI 1区

Max Planck Inst Mol Plant Physiol

Cited 212|Views38
Abstract
To evaluate components of fruit metabolic composition, we have previously metabolically phenotyped tomato (Solanum lycopersicum) introgression lines containing segmental substitutions of wild species chromosome in the genetic background of a cultivated variety. Here, we studied the hereditability of the fruit metabolome by analyzing an additional year's harvest and evaluating the metabolite profiles of lines heterozygous for the introgression (ILHs), allowing the evaluation of putative quantitative trait locus (QTL) mode of inheritance. These studies revealed that most of the metabolic QTL (174 of 332) were dominantly inherited, with relatively high proportions of additively (61 of 332) or recessively (80 of 332) inherited QTL and a negligible number displaying the characteristics of overdominant inheritance. Comparison of the mode of inheritance of QTL revealed that several metabolite pairs displayed a similar mode of inheritance of QTL at the same chromosomal loci. Evaluation of the association between morphological and metabolic traits in the ILHs revealed that this correlation was far less prominent, due to a reduced variance in the harvest index within this population. These data are discussed in the context of genomics-assisted breeding for crop improvement, with particular focus on the exploitation of wide biodiversity.
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要点】:本文研究了番茄果实代谢特征的遗传模式,揭示了大多数代谢数量性状座位(QTL)呈显性遗传,为基因组辅助育种提供了重要信息。

方法】:作者通过分析具有野生种染色体片段替换的番茄导入系,评估了杂合导入系(ILHs)的代谢物谱,以研究果实代谢组的遗传性。

实验】:在额外一年的收获期中,作者对ILHs的代谢物谱进行了评估,使用的数据集未明确提及,实验结果表明大部分代谢QTL呈显性遗传,部分呈加性或隐性遗传,极少数表现为超显性遗传。