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玉米杂交种表现出较低的代谢物变异性和复杂的代谢物遗传模式。

Corn hybrids display lower metabolite variability and complex metabolite inheritance patterns.

机构信息

Max-Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, 14476 Potsdam, Germany.

出版信息

Plant J. 2011 Oct;68(2):326-36. doi: 10.1111/j.1365-313X.2011.04689.x. Epub 2011 Jul 27.

Abstract

We conducted a comparative analysis of the root metabolome of six parental maize inbred lines and their 14 corresponding hybrids showing fresh weight heterosis. We demonstrated that the metabolic profiles not only exhibit distinct features for each hybrid line compared with its parental lines, but also separate reciprocal hybrids. Reconstructed metabolic networks, based on robust correlations between metabolic profiles, display a higher network density in most hybrids as compared with the corresponding inbred lines. With respect to metabolite level inheritance, additive, dominant and overdominant patterns are observed with no specific overrepresentation. Despite the observed complexity of the inheritance pattern, for the majority of metabolites the variance observed in all 14 hybrids is lower compared with inbred lines. Deviations of metabolite levels from the average levels of the hybrids correlate negatively with biomass, which could be applied for developing predictors of hybrid performance based on characteristics of metabolite patterns.

摘要

我们对 6 个亲本玉米自交系及其 14 个表现出鲜重杂种优势的相应杂种进行了根代谢组的比较分析。结果表明,代谢谱不仅与每个杂种系与其亲本系相比具有明显特征,而且还与正反交杂种系相分离。基于代谢谱之间稳健相关性构建的代谢网络,在大多数杂种中表现出比相应自交系更高的网络密度。就代谢物水平的遗传而言,观察到加性、显性和超显性模式,没有特定的优势。尽管观察到遗传模式的复杂性,但对于大多数代谢物,在所有 14 个杂种中观察到的方差低于自交系。代谢物水平与杂种平均值的偏差与生物量呈负相关,这可用于基于代谢物模式特征开发杂种表现的预测因子。

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