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Differential metabolic networks unravel the effects of silent plant phenotypes.

机译:差异代谢网络揭示了沉默植物表型的影响。

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Current efforts aim to functionally characterize each gene in model plants. Frequently, however, no morphological or biochemical phenotype can be ascribed for antisense or knock-out plant genotypes. This is especially the case when gene suppression or knockout is targeted to isoenzymes or gene families. Consequently, pleiotropic effects and gene redundancy are responsible for phenotype resistance. Here, techniques are presented to detect unexpected pleiotropic changes in such instances despite very subtle changes in overall metabolism. The method consists of the relative quantitation of >1,000 compounds by GC/time-of-flight MS, followed by classical statistics and multivariate clustering. Complementary to these tools, metabolic networks are constructed from pair-wise analysis of linear metabolic correlations. The topology of such networks reflects the underlying regulatory pathway structure. A differential analysis of network connectivity was applied for a silent potato plant line suppressed in expression of sucrose synthase isoform II. Metabolic alterations could be assigned to carbohydrate and amino acid metabolism even if no difference in average metabolite levels was found.
机译:当前的努力旨在功能性地表征模型植物中的每个基因。然而,通常不能将形态学或生化表型归因于反义或敲除植物基因型。当基因抑制或敲除针对同工酶或基因家族时,尤其如此。因此,多效效应和基因冗余是表型抗性的原因。在此,尽管在整体代谢中有非常细微的变化,但仍提出了在这种情况下检测出意料不到的多效性变化的技术。该方法包括通过GC /飞行时间质谱对> 1,000种化合物进行相对定量,然后进行经典统计和多元聚类。作为这些工具的补充,通过线性代谢相关性的成对分析来构建代谢网络。这种网络的拓扑结构反映了潜在的调节途径结构。网络连接的差异分析适用于沉默的蔗糖合酶同工型II表达沉默马铃薯植株。即使没有发现平均代谢物水平的差异,也可以将代谢变化归因于碳水化合物和氨基酸代谢。

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