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Impact of high atmospheric CO2 concentrations on the seasonality of water-related processes, gas exchange, and carbohydrate metabolism in coffee trees under field conditions

机译:高气压二氧化碳浓度对咖啡树在咖啡树中与水有关过程,煤气交换和碳水化合物代谢季节性的影响

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Increasing atmospheric CO2 concentrations ([CO2]) are unequivocal, widespread, and responsible for increased mean global temperatures and altered precipitation patterns. In this context, among the topics that need to be better understood are the changes in the water-related processes and gas exchange properties of plants grown under these conditions. Notably, the effects of climate change on coffee (Coffea spp.) production are particularly concerning given the importance of this commodity. Especially, it has been reported that coffee trees exhibit better photosynthetic efficiency when grown at higher [CO2] levels. In order to elucidate the mechanisms involved with this response, the seasonality of water-related processes, gas exchange, and carbohydrate metabolism were investigated using C. arabica var. Red Catuai grown at ambient and high [CO2] under field conditions, at a free-air CO2 enrichment (FACE) facility for coffee, in Brazil. The trees were evaluated fortnightly, from November to February (hot and rainy-summer) and from June to September (cold and dry-winter). It was found that C. arabica trees grown under high [CO2] conditions exhibited increased photosynthetic rates (averaging 121% higher in summer and 45% higher in winter) in both seasons, without displaying any significant changes in the seasonal photosynthesis pattern. Additionally, there was a tendency for the coffee trees grown at high [CO2] to exhibit increased levels of soluble carbohydrates, organic acids, and amino acids in the leaves. Our findings suggest that coffee trees adapt to increased [CO2] through increased photosynthetic rates, enhanced stomatal conductance regulation, and augmented carbohydrate and organic acid synthesis. It is plausible that these features could help mitigate the effects caused by climate change.
机译:增加大气二氧化碳浓度([CO2])是不确定的,广泛的,并且负责增加平均全球温度和改变的降水模式。在这种情况下,在需要更好地理解的话题中是在这些条件下生长的植物有关过程和煤气交换特性的变化。值得注意的是,鉴于本商品的重要性,咖啡(Coffea SPP)的影响尤为关注。特别是,据报道,咖啡树在较高的[CO2]水平上生长时表现出更好的光合效率。为了阐明这种反应所涉及的机制,使用C.Asbica VAR研究了水有关过程,水交换和碳水化合物代谢的季节性。在环境条件下在环境条件下生长的红色Catuai,在巴西咖啡的免费航空公司富集(面部)设施。从11月到2月(炎热和下雨的夏天)和6月至9月(冷干燥和干燥冬季),树木分别评估。结果发现,在高度[CO2]条件下的C.阿拉比卡树木在两个季节上表现出光合速率增加(夏季平均121%,冬季较高45%),而不会显示季节性光合作用模式的任何显着变化。另外,在高[CO2]中生长的咖啡树倾向于表现出叶片中可溶性碳水化合物,有机酸和氨基酸水平的增加。我们的研究结果表明,咖啡树通过增加光合速率,增强的气孔电导调节和增强碳水化合物和有机酸合成来增加咖啡树。这些功能可以帮助减轻气候变化造成的影响。

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