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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Improved responses to elevated CO2 in durum wheat at a low nitrate supply associated with the upregulation of photosynthetic genes and the activation of nitrate assimilation
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Improved responses to elevated CO2 in durum wheat at a low nitrate supply associated with the upregulation of photosynthetic genes and the activation of nitrate assimilation

机译:在与光合基因上调和硝酸盐同化的激活相关的低硝酸盐供应下改善对硬质小麦升高的CO2的反应和硝酸盐同化的激活

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摘要

Elevated CO2 often leads to photosynthetic acclimation, and N availability may alter this response. We investigated whether the coordination of shoot-root N assimilation by elevated CO2 may help to optimize the whole-plant N allocation and maximize photosynthesis in hydroponically-grown durum wheat at two NO3- supplies in interaction with plant development. Transcriptional and biochemical analyses were performed on flag leaves and roots. At anthesis, the improved photosynthetic acclimation response to elevated CO2 at low N was associated with increased Rubisco, chlorophyll and amino acid contents, and upregulation of genes related to their biosynthesis, light reactions and Calvin-Benson cycle, while a decrease was recorded at high N. Despite the decrease in carbohydrates with elevated CO2 at low N and the increase at high N, a stronger upward trend in leaf NR activity was found at low rather than high N. The induction of N recycling-related genes was accompanied by an amino acids decline at high N. At the grain-filling stage, the photosynthetic acclimation to elevated CO2 at high N was associated with the downregulation of both N assimilation, mainly in roots, and photosynthetic genes. At low N, enhanced root N assimilation partly compensated for slower shoot N assimilation and maximized photosynthetic capacity.
机译:升高的二氧化碳通常导致光合作用适应性,N可用性可能会改变这种反应。我们调查了升高的CO2茎秆N同化的协调是否有助于优化全植物N分配,并在两种NO3供应与植物发育中的两种NO3供应中最大化光合作用。在国旗叶和根上进行转录和生化分析。在花序中,在低N下改善的光合作用响应对升高的CO 2响应与润氧化铝,叶绿素和氨基酸含量增加有关,以及与其生物合成,光反应和Calvin-Benson循环相关的基因的上调,同时记录高N.尽管在低N下的CO 2升高的碳水化合物和高N的增加,但叶NR活性的较强趋势较低而不是高N.伴随N循环相关基因的诱导伴有氨基伴随着氨基酸在高N.在籽粒灌装阶段下降,在高N处的光合作用率为升高的CO2与N和光合基因的下调和光合基因的下调相关。在低N时,增强的根部N同化部分补偿了较慢的拍摄N同化和最大化的光合容量。

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