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Environmental and genetic effects on tomato seed metabolic balance and its association with germination vigor

机译:环境和遗传对番茄种子代谢平衡的影响及其与发芽势的关系

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Background The metabolite content of a seed and its ability to germinate are determined by genetic makeup and environmental effects during development. The interaction between genetics, environment and seed metabolism and germination was studied in 72 tomato homozygous introgression lines (IL) derived from Solanum pennelli and S. esculentum M82 cultivar. Plants were grown in the field under saline and fresh water irrigation during two consecutive seasons, and collected seeds were subjected to morphological analysis, gas chromatograph-mass spectrometry (GC-MS) metabolic profiling and germination tests. Results Seed weight was under tight genetic regulation, but it was not related to germination vigor. Salinity significantly reduced seed number but had little influence on seed metabolites, affecting only 1% of the statistical comparisons. The metabolites negatively correlated to germination were simple sugars and most amino acids, while positive correlations were found for several organic acids and the N metabolites urea and dopamine. Germination tests identified putative loci for improved germination as compared to M82 and in response to salinity, which were also characterized by defined metabolic changes in the seed. Conclusions An integrative analysis of the metabolite and germination data revealed metabolite levels unambiguously associated with germination percentage and rate, mostly conserved in the different tested seed development environments. Such consistent relations suggest the potential for developing a method of germination vigor prediction by metabolic profiling, as well as add to our understanding of the importance of primary metabolic processes in germination.
机译:背景技术种子的代谢物含量及其发芽能力取决于发育过程中的基因组成和环境影响。在72个番茄中,分别从茄茄和S. esculentum M82品种的纯合渗入系(IL)中研究了遗传,环境与种子代谢和萌发之间的相互作用。在连续两个季节中,在盐水和淡水灌溉下使植物在田间生长,并对收集的种子进行形态分析,气相色谱-质谱(GC-MS)代谢谱分析和发芽测试。结果种子重量受严格的遗传调控,但与发芽势无关。盐度显着降低了种子数量,但对种子代谢产物的影响很小,仅影响统计比较的1%。与发芽负相关的代谢物是单糖和大多数氨基酸,而几种有机酸与氮代谢物尿素和多巴胺呈正相关。萌发测试确定了与M82相比发芽率提高且对盐度有响应的推定基因座,其特征还在于种子中确定的代谢变化。结论对代谢物和发芽数据的综合分析表明,代谢物水平与发芽率和发芽率明确相关,大多数情况下在不同的试验种子发育环境中均保持不变。这种一致的关系表明了通过代谢谱分析开发出一种发芽势预测方法的潜力,并增加了我们对主要代谢过程在发芽中的重要性的理解。

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