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与氮碳代谢和小麦茎中水溶性碳水化合物积累相关的连锁基因网络。

Linked gene networks involved in nitrogen and carbon metabolism and levels of water-soluble carbohydrate accumulation in wheat stems.

机构信息

CSIRO Plant Industry, 306 Carmody Road, St Lucia, QLD 4067, Australia.

出版信息

Funct Integr Genomics. 2011 Dec;11(4):585-97. doi: 10.1007/s10142-011-0232-5. Epub 2011 Jul 26.

Abstract

High levels of water-soluble carbohydrates (WSC) provide an important source of stored assimilate for grain filling in wheat. To better understand the interaction between carbohydrate metabolism and other metabolic processes associated with the WSC trait, a genome-wide expression analysis was performed using eight field-grown lines from the high and low phenotypic tails of a wheat population segregating for WSC and the Affymetrix wheat genome array. The 259 differentially expressed probe sets could be assigned to 26 functional category bins, as defined using MapMan software. There were major differences in the categories to which the differentially expressed probe sets were assigned; for example, probe sets upregulated in high relative to low WSC lines were assigned to category bins such as amino acid metabolism, protein degradation and transport and to be involved in starch synthesis-related processes (carbohydrate metabolism bin), whereas downregulated probe sets were assigned to cell wall-related bins, amino acid synthesis and stress and were involved in sucrose breakdown. Using the set of differentially expressed genes as input, chemical-protein network analyses demonstrated a linkage between starch and N metabolism via pyridoxal phosphate. Twelve C and N metabolism-related genes were selected for analysis of their expression response to varying N and water treatments in the field in the four high and four low WSC progeny lines; the two nitrogen/amino acid metabolism genes demonstrated a consistent negative association between their level of expression and level of WSC. Our results suggest that the assimilation of nitrogen into amino acids is an important factor that influences the levels of WSC in the stems of field-grown wheat.

摘要

高水平的水溶性碳水化合物 (WSC) 为小麦灌浆提供了重要的储存同化产物来源。为了更好地理解碳水化合物代谢与与 WSC 特性相关的其他代谢过程之间的相互作用,我们使用来自一个 WSC 分离的小麦群体的高表型和低表型尾部的 8 个田间生长的系进行了全基因组表达分析,并使用 Affymetrix 小麦基因组芯片。259 个差异表达探针集可被分配到 26 个功能类别箱,这是使用 MapMan 软件定义的。差异表达探针集的分配类别有很大差异;例如,与低 WSC 系相比,在高 WSC 系中上调的探针集被分配到氨基酸代谢、蛋白质降解和运输等类别箱,并参与淀粉合成相关过程(碳水化合物代谢箱),而下调的探针集被分配到细胞壁相关箱、氨基酸合成和应激相关箱,并参与蔗糖分解。使用差异表达基因集作为输入,化学 - 蛋白质网络分析表明,通过吡哆醛磷酸,淀粉和 N 代谢之间存在联系。选择了 12 个 C 和 N 代谢相关基因,用于分析它们在田间不同 N 和水分处理下在四个高 WSC 和四个低 WSC 后代系中的表达响应;两个氮/氨基酸代谢基因表明它们的表达水平与 WSC 水平之间存在一致的负相关。我们的结果表明,氮同化为氨基酸是影响田间生长的小麦茎中 WSC 水平的一个重要因素。

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