Agronomy (Sep 2021)

Growth, Mineral Nutrients, Photosynthesis and Related Physiological Parameters of <i>Citrus</i> in Response to Nitrogen Deficiency

  • Wei-Tao Huang,
  • Yi-Zhi Xie,
  • Xu-Feng Chen,
  • Jiang Zhang,
  • Huan-Huan Chen,
  • Xin Ye,
  • Jiuxin Guo,
  • Lin-Tong Yang,
  • Li-Song Chen

DOI
https://doi.org/10.3390/agronomy11091859
Journal volume & issue
Vol. 11, no. 9
p. 1859

Abstract

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Limited data are available on the physiological responses of Citrus to nitrogen (N) deficiency. ‘Xuegan’ (Citrus sinensis (L.) Osbeck) and ‘Shantian pummelo’ (Citrus grandis (L.) Osbeck) seedlings were fertilized with nutrient solution at a N concentration of 0, 5, 10, 15 or 20 mM for 10 weeks. N deficiency decreased N uptake and N concentration in leaves, stems and roots and disturbed nutrient balance and homeostasis in plants, thus inhibiting plant growth, as well as reducing photosynthetic pigment levels and impairing thylakoid structure and photosynthetic electron transport chain (PETC) in leaves, hence lowering CO2 assimilation. The imbalance of nutrients intensified N deficiency’s adverse impacts on biomass, PETC, CO2 assimilation and biosynthesis of photosynthetic pigments. Citrus displayed adaptive responses to N deficiency, including (a) elevating the distributions of N and other elements in roots, as well as root dry weight (DW)/shoot DW ratio and root-surface-per-unit volume and (b) improving photosynthetic N use efficiency (PNUE). In general, N deficiency had less impact on biomass and photosynthetic pigment levels in C. grandis than in C. sinensis seedlings, demonstrating that the tolerance of C. grandis seedlings to N deficiency was slightly higher than that of C. sinensis seedlings, which might be related to the higher PNUE of the former.

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