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Use of expression analysis to dissect alterations in carbohydrate metabolism in wheat leaves during drought stress

机译:利用表达分析解剖干旱胁迫下小麦叶片碳水化合物代谢的变化

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Water deficit in plants causes a reduction in photosynthesis and high demands for osmolyte synthesis. To elucidate regulation of carbohydrate metabolic genes in wheat (Triticum aestivum) leaves during drought stress, we performed a systematic expression study using quantitative RT-PCR and cDNA microarray. These analyses revealed that expression levels of most genes encoding chloroplast enzymes involved in carbon fixation (Calvin cycle) were reduced in the leaves during prolonged drought stress. Transcript levels of highly expressed isoenzymes of hexokinase and fructokinase also decreased. Conversely, genes encoding cytoplasmic and vacuolar enzymes in the pathways leading to glucose, fructose and fructan production were up-regulated in the stressed leaves. Systematic expression analysis of an almost complete set of genes involved in conversion of triose phosphates to hexoses and hexose phosphorylation showed that isoenzymes of many enzymes were differentially regulated during drought stress. Correlation analysis indicated that the drought down-regulated Calvin cycle genes were coordinately regulated. This coordinated down-regulation extended to genes encoding major isoenzymes of chloroplast triose-phosphate/phosphate translocator, cytoplasmic fructose-1,6-bisphosphate aldolase and fructose bisphosphatase. Highly correlated expression was also observed between drought up-regulated genes involved in sucrose synthesis and hydrolysis or fructan synthesis. These data dissect coordination in regulation of key enzyme genes involved in carbon fixation and accumulation of hexoses and fructans and provide an insight into molecular mechanisms at the transcript level underlying changes in carbohydrate metabolism in wheat adaptation to drought stress.
机译:植物中的水分缺乏导致光合作用的减少和对渗透压合成的高要求。为了阐明干旱胁迫下小麦(Triticum aestivum)叶片中碳水化合物代谢基因的调控,我们使用定量RT-PCR和cDNA微阵列进行了系统表达研究。这些分析表明,在长期干旱胁迫下,大多数参与碳固定(卡尔文循环)的叶绿体酶编码基因的表达水平降低。己糖激酶和果糖激酶的高表达同工酶的转录水平也降低了。相反,在导致葡萄糖,果糖和果聚糖产生的途径中,编码细胞质和液泡酶的基因在胁迫叶片中被上调。系统性表达分析涉及磷酸三糖向己糖的转化和己糖磷酸化的几乎完整基因集,表明在干旱胁迫下许多酶的同工酶受到不同的调控。相关分析表明,干旱下调的卡尔文循环基因被协调调控。这种协调的下调扩展到了编码叶绿体磷酸三糖/磷酸转运蛋白,细胞质-1,6-二磷酸果糖醛缩酶和果糖双磷酸酶主要同工酶的基因。在与蔗糖合成和水解或果聚糖合成有关的干旱上调基因之间也观察到高度相关的表达。这些数据剖析了参与碳固定和己糖和果聚糖积累的关键酶基因调控的协调性,并提供了在小麦适应干旱胁迫的碳水化合物代谢变化的转录本水平上的分子机制的见解。

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