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Exploring the Relationship between Crassulacean Acid Metabolism (CAM) and Mineral Nutrition with a Special Focus on Nitrogen

机译:着眼于氮的探索芥蓝酸代谢(CAM)与矿物质营养之间的关系

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摘要

Crassulacean acid metabolism (CAM) is characterized by nocturnal CO2 uptake and concentration, reduced photorespiration, and increased water-use efficiency (WUE) when compared to C3 and C4 plants. Plants can perform different types of CAM and the magnitude and duration of CAM expression can change based upon several abiotic conditions, including nutrient availability. Here, we summarize the abiotic factors that are associated with an increase in CAM expression with an emphasis on the relationship between CAM photosynthesis and nutrient availability, with particular focus on nitrogen, phosphorus, potassium, and calcium. Additionally, we examine nitrogen uptake and assimilation as this macronutrient has received the greatest amount of attention in studies using CAM species. We also discuss the preference of CAM species for different organic and inorganic sources of nitrogen, including nitrate, ammonium, glutamine, and urea. Lastly, we make recommendations for future research areas to better understand the relationship between macronutrients and CAM and how their interaction might improve nutrient and water-use efficiency in order to increase the growth and yield of CAM plants, especially CAM crops that may become increasingly important as global climate change continues.
机译:与C3和C4植株相比,酒渣酸代谢(CAM)的特征在于夜间吸收和浓缩CO2,减少光呼吸和提高用水效率(WUE)。植物可以执行不同类型的CAM,并且CAM表达的大小和持续时间可以根据几种非生物条件(包括营养素的利用)而变化。在这里,我们总结了与CAM表达增加相关的非生物因素,并着重强调了CAM光合作用与养分利用率之间的关系,尤其着重于氮,磷,钾和钙。另外,我们研究了氮的吸收和吸收,因为这种大量营养素在使用CAM物种的研究中受到了最大的关注。我们还将讨论CAM物种对不同有机和无机氮源(包括硝酸盐,铵,谷氨酰胺和尿素)的偏好。最后,我们为未来的研究领域提供建议,以更好地了解常量营养素和CAM之间的关系,以及它们之间的相互作用如何改善养分和水分利用效率,从而增加CAM植物的生长和产量,尤其是可能变得越来越重要的CAM作物随着全球气候变化的继续。

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