4.7 Article

Modulation of plant nitrogen remobilization and postflowering nitrogen uptake under environmental stresses

期刊

JOURNAL OF PLANT PHYSIOLOGY
卷 277, 期 -, 页码 -

出版社

ELSEVIER GMBH
DOI: 10.1016/j.jplph.2022.153781

关键词

Nitrogen metabolism; Biotic stress; Abiotic stress; Nitrogen use efficiency; Climate change

资金

  1. IJPB's Plant Observatory technological platforms
  2. Saclay Plant Sciences-SPS [ANR-17-EUR-0007]

向作者/读者索取更多资源

This study analyzed the impact of environmental stresses on nitrogen fluxes within plants during seed filling and provided a schematic representation of the major factors that regulate the balance between nitrogen remobilization and nitrogen uptake under stress and control conditions.
Plants are sessile organisms that take up nitrogen (N) from the soil for growth and development. At the post-flowering stage, N that plants require for seed growth and filling derives from either root uptake or shoot remobilization. The balance between N uptake and N remobilization determines the final carbon (C) and N composition of the seed. The N uptake and N remobilization mechanisms are regulated by endogenous signals, including hormones, developmental stage, and carbon/nitrogen ratio, and by environmental factors. The cellular responses to the environment are relatively well known. However, the effects of environmental stresses on the balance between N uptake and N remobilization are still poorly understood. Thus, this study aims to analyze the impact of environmental stresses (drought, heat, darkness, triggered defense, and low nitrate) on N fluxes within plants during seed filling. Using publicly available Arabidopsis transcriptome data, expression of several marker genes involved in N assimilation, transport, and recycling was analyzed in relation to stress. Results showed that the responses of genes encoding inorganic N transporters, N assimilation, and N recycling are mainly regulated by N limitation, the genes encoding housekeeping proteases are principally sensitive to C limitation, and the response of genes involved in the transport of organic N is controlled by both C and N limitations. In addition,N- 15 data were used to examine the effects of severe environmental stresses on N remobilization and N uptake, and a schematic representation of the major factors that regulate the balance between N remobilization and N uptake under the stress and control conditions was provided.

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