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High night temperature strongly impacts TCA cycle amino acid and polyamine biosynthetic pathways in rice in a sensitivity-dependent manner

机译:夜间高温以敏感性依赖的方式强烈影响水稻的TCA循环氨基酸和多胺生物合成途径

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摘要

Global climate change combined with asymmetric warming can have detrimental effects on the yield of crop plants such as rice (Oryza sativa L.). Little is known about metabolic responses of rice to high night temperature (HNT) conditions. Twelve cultivars with different HNT sensitivity were used to investigate metabolic changes in the vegetative stage under HNT compared to control conditions. Central metabolism, especially TCA cycle and amino acid biosynthesis, were strongly affected particularly in sensitive cultivars. Levels of several metabolites were correlated with HNT sensitivity. Furthermore, pool sizes of some metabolites negatively correlated with HNT sensitivity under control conditions, indicating metabolic pre-adaptation in tolerant cultivars. The polyamines putrescine, spermidine and spermine showed increased abundance in sensitive cultivars under HNT conditions. Correlations between the content of polyamines and 75 other metabolites indicated metabolic shifts from correlations with sugar-phosphates and 1-kestose under control to correlations with sugars and amino and organic acids under HNT conditions. Increased expression levels of ADC2 and ODC1, genes encoding enzymes catalysing the first committed steps of putrescine biosynthesis, were restricted to sensitive cultivars under HNT. Additionally, transcript levels of eight polyamine biosynthesis genes were correlated with HNT sensitivity. Responses to HNT in the vegetative stage result in distinct differences between differently responding cultivars with a dysregulation of central metabolism and an increase of polyamine biosynthesis restricted to sensitive cultivars under HNT conditions and a pre-adaptation of tolerant cultivars already under control conditions with higher levels of potentially protective compatible solutes.
机译:全球气候变化与不对称变暖的结合可能对诸如水稻(Oryza sativa L.)的农作物的产量产生不利影响。关于大米对高夜间温度(HNT)条件的代谢反应知之甚少。与对照条件相比,使用十二个具有不同HNT敏感性的品种研究HNT在营养阶段的代谢变化。中央代谢,特别是TCA循环和氨基酸生物合成,受到强烈影响,特别是在敏感品种中。几种代谢物的水平与HNT敏感性相关。此外,在控制条件下,某些代谢物的库大小与HNT敏感性呈负相关,表明在耐性品种中代谢预适应。在HNT条件下,敏感品种中的多胺腐胺,亚精胺和亚精胺含量增加。多胺与75种其他代谢物含量之间的相关性表明,在HNT条件下,代谢从与控制下的糖磷酸酯和1糖的相关性转移到与糖,氨基和有机酸的相关性。 ADC2和ODC1的表达水平增加,编码酶的基因催化腐胺生物合成的第一步,但仅限于HNT条件下的敏感品种。此外,八个多胺生物合成基因的转录水平与HNT敏感性相关。在营养阶段对HNT的反应导致不同反应的品种之间出现明显差异,这些品种在HNT条件下中央代谢失调,多胺生物合成的增加仅限于敏感品种,而在适应水平较高的控制条件下已经对耐性品种进行了预先适应具有潜在保护意义的兼容溶质。

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