Nitrogen (N) availability is a major factor determining plant growth and productivity. Plants acquire inorganic N from the soil, mainly in the form of nitrate and ammonium. To date, researchers have focused on these N sources, and demonstrated that plants exhibit elaborate responses at both physiological and morphological levels. Mixtures of nitrate and ammonium are beneficial in terms of plant growth, as compared to nitrate or ammonium alone, and therefore synergistic responses to both N sources are predicted at different steps ranging from acquisition to assimilation. In this review, we summarize interactions between nitrate and ammonium with respect to uptake, allocation, assimilation, and signaling. Given that cultivated land often contains both nitrate and ammonium, a better understanding of the synergism between these N sources should help to identify targets with the potential to improve crop productivity.

译文

:氮(N)的可用性是决定植物生长和生产力的主要因素。植物从土壤中获取无机氮,主要是以硝酸盐和铵的形式。迄今为止,研究人员已将重点放在这N种来源上,并证明植物在生理和形态学水平上均表现出精细的反应。与单独的硝酸盐或铵相比,硝酸盐和铵的混合物在植物生长方面是有益的,因此在从采集到同化的不同步骤中预测了对两种氮源的协同响应。在这篇综述中,我们总结了硝酸盐和铵盐之间在吸收,分配,同化和信号传导方面的相互作用。鉴于耕地通常同时含有硝酸盐和铵盐,因此更好地了解这些氮源之间的协同作用将有助于确定具有提高作物生产力潜力的目标。

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