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首页> 外文期刊>Plant and cell physiology >Atlas of Rice Grain Filling-Related Metabolism under High Temperature: Joint Analysis of Metabolome and Transcriptome Demonstrated Inhibition of Starch Accumulation and Induction of Amino Acid Accumulation
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Atlas of Rice Grain Filling-Related Metabolism under High Temperature: Joint Analysis of Metabolome and Transcriptome Demonstrated Inhibition of Starch Accumulation and Induction of Amino Acid Accumulation

机译:高温下水稻籽粒灌浆相关代谢图谱:代谢组和转录组联合分析表明抑制淀粉积累和诱导氨基酸积累

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摘要

High temperature impairs grain filling by inhibiting the deposition of storage materials such as starch and protein. To comprehend its impact on grain filling metabolism in rice (Oryza sativa), levels of metabolites and transcripts related to central pathways of metabolism were simultaneously determined in developing caryopses exposed to high temperature (33C/28C) and a control temperature (25C/20C) during the milky stage. A capillary electrophoresis-based metabolomic analysis revealed that high temperature increased the accumulation of sucrose and pyruvate/ oxaloacetate-derived amino acids and decreased levels of sugar phosphates and organic acids involved in glycolysis/gluconeogenesis and the tricarboxylic acid (TCA) cycle, respectively. A transcriptomic analysis using a whole genome-covering microarray unraveled the possible metabolic steps causing the shortage of storage materials under the elevated temperature. Starch deposition might be impaired by down-regulation of sucrose import/degradation and starch biosynthesis, and/or up-regulation of starch degradation as well as inefficient ATP production by an inhibited cytochrome respiration chain, as indicated by the response of gene expression to high temperature. Amino acid accumulation might be attributed to the heat-stable import of amino acids into the caryopsis and/or repression of protein synthesis especially the tRNA charging step under high temperature. An atlas showing the effect of high temperature on levels of metabolites and gene expression in the central metabolic pathways is presented.
机译:高温会抑制淀粉和蛋白质等存储材料的沉积,从而损害谷物填充。为了理解其对水稻(Oryza sativa)籽粒充实代谢的影响,同时测定了暴露于高温(33C / 28C)和控制温度(25C / 20C)的颈章鱼与代谢中心途径相关的代谢产物和转录物的水平。在乳白色的阶段基于毛细管电泳的代谢组学分析表明,高温分别增加了蔗糖和丙酮酸/草酰乙酸衍生的氨基酸的积累,并降低了参与糖酵解/糖异生和三羧酸(TCA)循环的糖磷酸和有机酸的水平。使用覆盖整个基因组的微阵列进行的转录组分析揭示了可能的代谢步骤,从而导致高温下储存材料的短缺。蔗糖的导入/降解和淀粉生物合成的下调,和/或淀粉降解的上调,以及受抑制的细胞色素呼吸链的ATP产生效率低下,可能会损害淀粉的沉积,如基因表达对高糖蛋白的反应所表明的那样温度。氨基酸积累可能归因于氨基酸热稳定地导入颖果中和/或抑制了蛋白质合成,尤其是高温下的tRNA充电步骤。展示了显示高温对中枢代谢途径中代谢物和基因表达的影响的图集。

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