Hort. Sci. (Prague), X:X | DOI: 10.17221/53/2025-HORTSCI

Effects of nitrogen on the hydraulic characteristics and biomass allocation in Notopterygium franchetii in the Qinghai-Tibet PlateauOriginal Paper

Shengrong Xu1,3, Lili Pei1, Honghong Zhou1, Yijin Hu1, Li Tong3, Ruili Ma2,3
1 School of Pharmacy, Qinghai University, Xining, Qinghai, P.R. China
2 Department of Traditional Chinese Medicine, Medical College, Qinghai University, Xining, Qinghai, P.R. China
3 Qinghai Provincial Key Laboratory of Traditional Chinese Medicine Research for Glucolipid Metabolic Diseases, Qinghai University, Xining, Qinghai, P.R. China


Nitrogen fertiliser changes the soil environment, regulates the water balance of plants, and directly affects nitrogen and water use efficiency. In order to identify the adaptation mechanism and water regulation strategy of Notopterygium franchetii to the soil nitrogen environment, this study was conducted. Two-year-old Notopterygium franchetii plants grown in farmland were used as the test material. The hydraulic characteristics, natural dehydration, water capacitance and biomass allocation were investigated at three nitrogen application levels (0, 40, 80 kg/ha) and four growth periods (seedling, jointing, flowering and harvesting period). Nitrogen content in roots, stems and leaves increased with different levels of nitrogen treatments at each growth stage, and the change of nitrogen content in stems was the most significant. The overall water capacitance of all tissues was root > stem > leaf. After medium nitrogen treatment and high nitrogen treatments, the average water capacitance of leaves was 122.00% and 129.26% of low nitrogen treatment, and the average water capacitance of stems was 125.78% and 134.59% of low nitrogen treatment, the average water capacitance of leaves was 112.28% and 116.37% of low nitrogen treatment. Nitrogen treatment can improve the water use efficiency of plant roots, stems and leaves, and the relative content of stable carbon isotope (δ13C) in the whole growing season increased by 0.77%, 1.96% and 5.27% of the control group after medium nitrogen treatment, and 1.60%, 2.18% and 1.61% of the control group after high nitrogen treatment. The ratio of root to canopy decreased significantly in each growth stage after nitrogen treatment, and the change was most significant at seedling period (from 1.25 to 0.66), and the change was the most least at jointing period (from 0.77 to 0.63). Our study thus indicates that nitrogen addition could regulate water balance in plants, which is beneficial to water storage and utilisation, but excessive nitrogen fertiliser supply will also affect the distribution of plant biomass.

Keywords: water capacitance; natural dehydration; stable carbon isotope; biomass distribution

Received: April 16, 2025; Revised: November 27, 2025; Accepted: January 6, 2026; Prepublished online: July 31, 2026 

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References

  1. Borghetti M., Gentilesca T., Leonardi S., van Noije T., Rita A. (2017): Long-term temporal relationships between environmental conditions and xylem functional traits: A meta-analysis across a range of woody species along climatic and nitrogen deposition gradients. Tree Physiology, 37: 4-17. Go to original source... Go to PubMed...
  2. Cabeza R.A., Schulze J., Salinas-Roco S., Morales-González A., Amigo R., Pérez-Díaz R., Carrasco B., Contreras-Soto R., Maldonado C., Pedreschi R., Espinoza S., del Pozo A. (2024): The inhibition of N2 fixation by nitrogen is attenuated by the P supply, altering the plant metabolism. Environmental and Experimental Botany, 222: 105762. Go to original source...
  3. Cheng M., Wang H., Fan J., Xiang Y., Tang Z., Pei S., Zeng H., Zhang C., Dai Y., Li Z., Zou Y., Zhang F. (2021): Effects of nitrogen supply on tomato yield, water use efficiency and fruit quality: A global meta-analysis. Scientia Horticulturae, 290: 110553. Go to original source...
  4. Christophe M., Philippe N. (2020): Root architecture and hydraulics converge for acclimation to changing water availability. Nature Plants, 6: 744-749. Go to original source... Go to PubMed...
  5. Feng H., Guo J., Peng C., Kneeshaw D., Roberge G., Pan C., Ma X., Zhou D., Wang W. (2023): Nitrogen addition promotes terrestrial plants to allocate more biomass to aboveground organs: A global meta-analysis. Global Change Biology, 29: 3970-3989. Go to original source... Go to PubMed...
  6. He Y., Geng Y., Han B., Shi L., Shao X., Liu K. (2024): Water controls the divergent responses of terrestrial plant photosynthesis under nitrogen enrichment. Journal of Ecology, 112: 2638-2651. Go to original source...
  7. Huang C.W., Domec J.C., Ward E.J., Duman T., Manoli G., Parolari A.J., Katul G.G. (2017): The effect of plant water storage on water fluxes within the coupled soil-plant system. New Phytologist, 213: 1093-1106. Go to original source... Go to PubMed...
  8. Huang X., Hou Z., Ma B., Zhao H., Jiang Z., Cai J. (2024): Seasonality in embolism resistance and hydraulic capacitance jointly mediate hydraulic safety in branches and leaves of oriental cork oak (Quercus variabilis Bl.). Tree Physiology, 44: 109. Go to original source... Go to PubMed...
  9. Jin Y., Wang C. (2015): Trade-offs between plant leaf hydraulic and economic traits. Chinese Journal of Plant Ecology, 39: 1021-1032. Go to original source...
  10. Kebbas S., Lutts S., Aid F. (2015): Effect of drought stress on the photosynthesis of Acacia tortills subsp. raddiana at the young seedling stage. Photonythetica, 53: 288-298. Go to original source...
  11. Li H., Li X., Mei X., Vinay N., Rui G., Hao W., Wang J. (2023a): An alternative water-fertilizer-saving management practice for wheat-maize cropping system in the North China Plain: Based on a 4-year field study. Agricultural Water Management, 276: 108053. Go to original source...
  12. Li H., César T., Miguel B., Fernando T.M., Zhu Z., Josep P., Yu K., Luo L., Gong J., Ye J. (2023b): Nitrogen enrichment delays the emergence of an aridity-induced threshold for plant biomass. National Science Review, 242: 10. Go to original source... Go to PubMed...
  13. Li J., Liu W., Yang Y., Dong X., Gu X., Jing J. (2023c): Comparative analysis and comprehensive evaluation of the natural dehydration rate of pods of 35 peanut cultivars. Molecular Plant Breeding, 21: 6232-6243.
  14. Li S., Zhang C., Li W., Wang H., Yang D., Li X. (2018): Measurement of kernel natural dehydration rate in maize single-cross hybrids and its application. Molecular Plant Breeding, 9: 80-86.
  15. Liang X., Zhang T., Lu X., Ellsworth David S., BassiriRad H., You C., Wang D., He P., Deng Q., Liu H., Mo J., Ye Q. (2020): Global response patterns of plant photosynthesis to nitrogen addition: A meta-analysis. Global Change Biology, 26: 3585-3600. Go to original source... Go to PubMed...
  16. Liu C., Dong X., Yan Y., Chen R., Ben H., Huang C., Xu W. (2025): Effects of foliar spraying with selenium on nitrogen metabolism and yield of rice grown under different nitrogen levels in cold regions. Journal of Agro-Environment Science, 44: 2253-2263.
  17. Liu H., Luo Z., Dong H. (2021): Research progress on the regulation of NO3- uptake and transport in plant. Biotechnology Bulletin, 37: 192-201.
  18. Liu J., Uri H., Asaf A., Shabtai C. (2023): Trade-offs between residual conductance, hydraulic capacitance and water access in Mediterranean species. Tree Physiology, 45: tpaf023. Go to original source...
  19. Ma F., Song B., Quan Q., Zhang F., Wang J., Zhou Q., Niu S. (2020): Light competition and biodiversity loss cause saturation response of aboveground net primary productivity to nitrogen enrichment. Journal of Geophysical Research: Biogeosciences, 125: e2019JG005556. Go to original source...
  20. Ma Y., Qian C., Deng L. (2017): Effects of combining Chinese milk vetch with nitrogen fertilizer on grain and dry matter yield, nitrogen absorption and utilization of double-cropping rice. Journal of Nuclear Agricultural Sciences, 31: 2399-2407.
  21. Navarro-Morillo .I, Blasco B., Cámara-Zapata J., MuñozAcero J., Simón-Grao S., Alfosea-Simón M., Plasencia F., García-Sanchez F. (2024): Corn steep liquor application on pepper plants (Capsicum annum L.) stimulates growth under nitrogen-defcient growing conditions. Scientia Horticulturae, 328: 112955. Go to original source...
  22. Pan Q., Zhang J., Meng P., Wang G., Yang H. (2019): Hyperspectral estimation of water content in walnut leaves in hilly areas of North China. Journal of Northeast Forestry University, 47: 68-74.
  23. Sack L., Tyree M., Holbrook N. (2005): Leaf hydraulic architecture correlates with regeneration irradiance in tropical rainforest trees. New Phytologist, 167: 403-413. Go to original source... Go to PubMed...
  24. Shen H., Gao Y., Sun K., Gu Y., Ma X. (2023): Effects of differential irrigation and nitrogen reduction replacement on winter wheat yield and water productivity and nitrogen-use efficiency. Agricultural Water Management, 282: 108289. Go to original source...
  25. Shi A. (2022): Effects of Nitrogen Density Interaction on Physiological Characteristics, Yield and Nitrogen Use Efficiency of Double Cropping Hybrid Rice. Hunan Agricultural University, Changsha, Hunan.
  26. Si Z., Muhammad Z., Faisal M., Wang G., Gao Y., Duan A. (2020): Effects of nitrogen application rate and irrigation regime on growth, yield, and water-nitrogen use efficiency of drip-irrigated winter wheat in the North China Plain. Agricultural Water Management, 231: 106002. Go to original source...
  27. Sun J., Zhang B., Pan Q., Liu W., Wang X., Huang J., Chen D., Wang C., Han X. (2023): Non-linear response of productivity to precipitation extremes in the Inner Mongolia grassland. Functional Ecology, 37: 1663-1673. Go to original source...
  28. Wang Z., Sun J., Du Y.D., Sun D., Gan H.C., Niu W.Q. (2022): Effects of mulching practices on soil carbon, nitrogen contents, and grain yield, water and nitrogen use efficiencies of summer maize. Chinese Journal of Eco-Agriculture, 30: 913-923.
  29. Xiong D., Nadal M. (2020): Linking water relations and hydraulics with photosynthesis. The Plant Journal, 101: 800-815. Go to original source... Go to PubMed...
  30. Yang Y., Zou J., Feng B., Hu S., Qiao B., Huang W., Zhang L., Zheng H., Matthew T., Liu K., Wen X., Chen F., Yin X. (2025): Long-term N fertilization increases water use and use-efficiency of winter wheat. Field Crops Research, 325: 109808. Go to original source...
  31. Ye T., Ma J., Zhang P., Shan S., Liu L., Tang L., Cao W., Liu B., Zhu Y. (2022): Interaction effects of irrigation and nitrogen on the coordination between crop water productivity and nitrogen use efficiency in wheat production on the North China Plain. Agricultural Water Management, 271: 107787. Go to original source...
  32. Ying J., Wang C.K., Zhou Z.H., Gu J.C. (2022): Leaf hydraulic traits of larch and ash trees in response to long-term nitrogen addition in northeastern China. Journal of Plant Ecology, 14: 1105-1114. Go to original source...

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