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The Influence of Fruit Load on the Tomato Pericarp Metabolome in a Solanum chmielewskii Introgression Line Population

机译:果实负荷对茄果渗入系番茄番茄果皮代谢组的影响

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摘要

It has been recently demonstrated, utilizing interspecific introgression lines of tomato, generated from the cross between Solanum lycopersicum and the wild species Solanum pennellii, that the efficiency of photosynthate partitioning exerts a considerable influence on the metabolic composition of tomato fruit pericarp. In order to further evaluate the influence of source-sink interaction, metabolite composition was determined by gas chromatography-mass spectrometry in a different population. For this purpose, we used 23 introgression lines resulting from an interspecific cross between S. lycopersicum and the wild species Solanum chmielewskii under high (unpruned trusses) and low (trusses pruned to one fruit) fruit load conditions. Following this strategy, we were able to contrast the metabolite composition of fruits from plants cultivated at both fruit loads as well as to compare the network behavior of primary metabolism in the introgression line population. The study revealed that while a greater number of metabolic quantitative trait loci were observed under high fruit load (240) than under low fruit load (128) cultivations, the levels of metabolites were more highly correlated under low fruit load cultivation. Finally, an analysis of genotype × fruit load interactions indicated a greater influence of development and cultivation than genotype on fruit composition. Comparison with previously documented transcript profiles from a subset of these lines revealed that changes in metabolite levels did not correlate with changes in the levels of genes associated with their metabolism. These findings are discussed in the context of our current understanding of the genetic and environmental influence on metabolic source-sink interactions in tomato, with particular emphasis given to fruit amino acid content.
机译:最近已经证明,利用番茄的种间渗入系,该番茄由番茄和野生种茄之间的杂交产生,光合产物分配的效率对番茄果皮的代谢组成有相当大的影响。为了进一步评估源-库相互作用的影响,通过气相色谱-质谱法测定了不同人群的代谢物组成。为了这个目的,我们使用了在高(未修剪的桁架)和低(修剪成一个水果的桁架)水果负荷条件下,S。lycopersicum和野生种Solanum chmielewskii之间的种间杂交产生的23个基因渗入系。遵循该策略,我们能够对比在两种水果负荷条件下种植的植物的水果代谢产物组成,并比较渗入系种群初级代谢的网络行为。研究表明,虽然在高果量(240)下观察到的代谢数量性状基因位点比低果量(128)下观察到的代谢数量性状基因座多,但在低果量的栽培下代谢产物的相关性更高。最后,对基因型×果实负荷相互作用的分析表明,发育和栽培对基因组成的影响大于基因型。与来自这些品系的子集的先前记录的转录物谱的比较表明,代谢物水平的变化与与其代谢相关的基因水平的变化不相关。在我们目前对遗传和环境对番茄代谢源-库相互作用的影响的理解的背景下讨论了这些发现,并特别强调了水果氨基酸含量。

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