首页> 外文期刊>Journal of Experimental Botany >Variation of metabolic profiles in developing maize kernels up- and down-regulated for the hda101 gene.
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Variation of metabolic profiles in developing maize kernels up- and down-regulated for the hda101 gene.

机译:hda101基因上调和下调的发育玉米籽粒中代谢谱的变化。

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To shed light on the specific contribution of HDA101 in modulating metabolic pathways in the maize seed, changes in the metabolic profiles of kernels obtained from hda101 mutant plants have been investigated by a metabonomic approach. Dynamic properties of chromatin folding can be mediated by enzymes that modify DNA and histones. The enzymes responsible for the steady-state of histone acetylation are histone acetyltransferase and histone deacetylase (HDA). Therefore, it is interesting to evaluate the effects of up- and down-regulation of a Rpd-3 type HDA on the development of maize seeds in terms of metabolic changes. This has been reached by analysing nuclear magnetic resonance spectra by different chemometrician approaches, such as Orthogonal Projection to Latent Structure-Discriminant Analysis, Parallel Factors Analysis, and Multi-way Partial Least Squares-Discriminant Analysis (N-PLS-DA). In particular, the latter approaches were chosen because they explicitly take time into account, organizing data into a set of slices that refer to different steps of the developing process. The results show the good discriminating capabilities of the N-PLS-DA approach, even if the number of samples ought be increased to obtain better predictive capabilities. However, using this approach, it was possible to show differences in the accumulation of metabolites during development and to highlight the changes occuring in the modified seeds. In particular, the results confirm the role of this gene in cell cycle control.
机译:为了阐明HDA101在调节玉米种子中代谢途径中的特定作用,已经通过代谢组学方法研究了从hda101突变植物获得的籽粒代谢谱的变化。染色质折叠的动态特性可以由修饰DNA和组蛋白的酶介导。负责组蛋白乙酰化稳态的酶是组蛋白乙酰转移酶和组蛋白脱乙酰酶(HDA)。因此,从代谢变化的角度评估Rpd-3型HDA上调和下调对玉米种子发育的影响是很有趣的。通过使用不同化学计量学家的方法来分析核磁共振谱已经达到了这一目的,例如正交投影到潜在结构判别分析,并行因素分析和多路偏最小二乘判别分析(N-PLS-DA)。特别是,选择后一种方法是因为它们明确考虑了时间,将数据组织为一组切片,这些切片涉及开发过程的不同步骤。结果表明,即使应增加样本数量以获得更好的预测能力,N-PLS-DA方法也具有良好的区分能力。但是,使用这种方法可以显示发育过程中代谢物积累的差异,并突出显示修饰种子中发生的变化。特别地,结果证实了该基因在细胞周期控制中的作用。

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