首页> 外文期刊>Journal of Agricultural and Food Chemistry >Effect of Genetics, Environment, and Phenotype on the Metabolome of Maize Hybrids Using GC/MS and LC/MS
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Effect of Genetics, Environment, and Phenotype on the Metabolome of Maize Hybrids Using GC/MS and LC/MS

机译:GC / MS和LC / MS的遗传,环境和表型对玉米杂种代谢物的影响

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We evaluated the variability of metabolites in various maize hybrids due to the effect of environment, genotype, phenotype as well as the interaction of the first two factors. We analyzed 480 forage and the same number of grain samples from 21 genetically diverse non-GM Pioneer brand maize hybrids, including some with drought tolerance and viral resistance phenotypes, grown at eight North American locations. As complementary platforms, both GC/MS and LC/MS were utilized to detect a wide diversity of metabolites. GC/MS revealed 166 and 137 metabolites in forage and grain samples, respectively, while LC/MS captured 1841 and 635 metabolites in forage and grain samples, respectively. Univariate and multivariate analyses were utilized to investigate the response of the maize metabolome to the environment, genotype) phenotype, and their interaction. Based on combined percentages from GC/MS and LC/MS datants, the environment affected 36% to 84% of forage metabolites, while less than 7% were affected by genotype. The environment:affected 12% to 90% of grain metabolites, whereas less than 27% were affected by genotype. Less than 10% and 11% of the metabolites were affected by phenotype in forage and grain, respectively. Unsupervised PCA arid HCA analyses revealed similar trends, i.e.,,environmentaleffectwas much stronger than genotype or phenotype effects. On the basis of comparisons of disease tolerant and disease susceptible hybrids, neither forage nor grain samples originating from different locations showed obvious phenotype effects. Our findings demonstrate that the combination of GC/MS and LC/MS based metabolite profiling followed by broad statistical analysis is an effective approach to identify the relative impact of environmental, genetic and phenotypic effects on the forage and grain composition of maize hybrids.
机译:由于环境,基因型,表型以及前两个因素的相互作用,我们评估了各种玉米杂种中代谢物的可变性。我们分析了480个遗传和相同数量的谷物样品,从21种遗传多样的非GM先驱品牌玉米杂种,包括一些耐旱性和病毒抗性表型,在八个北美地区种植。作为互补平台,GC / MS和LC / MS都被利用来检测代谢物的广泛多样性。 GC / MS分别显示出饲料和谷物样品中的166和137代谢物,而LC / MS分别捕获了1841和635个代谢物,分别在饲料和谷物样品中。利用单变量和多变量分析来研究玉米代谢物至环境,基因型)表型的响应及其相互作用。基于GC / MS和LC / MS日期的组合百分比,环境影响了36%至84%的饲料代谢物,而不到7%受基因型的影响。环境:影响12%至90%的谷物代谢物,而小于27%受基因型的影响。饲料和谷物中的表型分别影响小于10%和11%的代谢物。无监督的PCA干旱HCA分析显示了类似的趋势,即,环境,环境缺点比基因型更强大或表型效应。在耐受性和疾病易感杂交种的比较的基础上,源自不同地点的遗传和谷物样品都没有显示出明显的表型效应。我们的研究结果表明,GC / MS和LC / MS的代谢物分析的组合随后是广泛的统计分析是一种有效的方法,是确定环境,遗传和表型对玉米杂种饲料和谷物组成的相对影响的有效方法。

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