Aluko Oluwaseun Olayemi, Kant Surya, Adedire Oluwafemi Michael, Li Chuanzong, Yuan Guang, Liu Haobao, Wang Qian
Tobacco Research Institute of Chinese Academy of Agricultural Sciences, Qingdao, China.
Graduate School of Chinese Academy of Agricultural Sciences, Beijing, China.
Front Plant Sci. 2023 Feb 21;14:1074839. doi: 10.3389/fpls.2023.1074839. eCollection 2023.
Nitrate ( ) transporters have been identified as the primary targets involved in plant nitrogen (N) uptake, transport, assimilation, and remobilization, all of which are key determinants of nitrogen use efficiency (NUE). However, less attention has been directed toward the influence of plant nutrients and environmental cues on the expression and activities of transporters. To better understand how these transporters function in improving plant NUE, this review critically examined the roles of transporters in N uptake, transport, and distribution processes. It also described their influence on crop productivity and NUE, especially when co-expressed with other transcription factors, and discussed these transporters' functional roles in helping plants cope with adverse environmental conditions. We equally established the possible impacts of transporters on the uptake and utilization efficiency of other plant nutrients while suggesting possible strategic approaches to improving NUE in plants. Understanding the specificity of these determinants is crucial to achieving better N utilization efficiency in crops within a given environment.
硝酸盐( )转运蛋白已被确定为参与植物氮(N)吸收、运输、同化和再利用的主要靶点,所有这些都是氮利用效率(NUE)的关键决定因素。然而,植物养分和环境线索对 转运蛋白表达和活性的影响受到的关注较少。为了更好地理解这些转运蛋白如何在提高植物NUE中发挥作用,本综述批判性地研究了 转运蛋白在氮吸收、运输和分配过程中的作用。它还描述了它们对作物生产力和NUE的影响,特别是当与其他转录因子共表达时,并讨论了这些转运蛋白在帮助植物应对不利环境条件方面的功能作用。我们同样确定了 转运蛋白对其他植物养分吸收和利用效率的可能影响,同时提出了提高植物NUE的可能战略方法。了解这些决定因素的特异性对于在给定环境中实现作物更好的氮利用效率至关重要。