Balancing the nutrient needs: Optimising growth in Malus sieversii seedlings through tailored nitrogen and phosphorus effects

Author:

Zhou Weiyi1234ORCID,Tao Ye1234,Peng Lan15,Zheng Hongwei1346ORCID,Zhou Xiaobing1234,Yin Benfeng1234,Zhang Jing1234ORCID,Zhang Yuanming1234ORCID

Affiliation:

1. National Key Laboratory of Ecological Security and Sustainable Development in Arid Region, State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences Urumqi Xinjiang China

2. Key Laboratory of Biodiversity Conservation and Application in Arid Lands Xinjiang, Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences Urumqi Xinjiang China

3. Research Center for Ecology and Environment of Central Asia Chinese Academy of Sciences Urumqi Xinjiang China

4. University of Chinese Academy of Sciences Beijing China

5. College of Resource and Environment Sciences Xinjiang University Urumqi Xinjiang China

6. Key Laboratory of RS & GIS Application Xinjiang, Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences Urumqi Xinjiang China

Abstract

AbstractThe impact of nitrogen (N) and phosphorus (P) on the physiological and biochemical processes crucial for tree seedling growth is substantial. Although the study of plant hydraulic traits in response to N and P is growing, comprehensive research on their combined effects remains limited. Malus sieversii, a key ancestral species of modern apples and a dominant species in Xinjiang's Tianshan wild fruit forest, is witnessing a decline due to climate change, pests and diseases, compounded by challenges in seedling regeneration. Addressing this, a 4‐year study was conducted to determine the optimal fertilisation method for it. The experiment explored varying levels of N (N10, N20 and N40) and P (P2, P4 and P8), and their combined effects (N20Px: N20P2, N20P4, N20P8; NxP4: N10P4, N20P4 and N40P4), assessing their impact on gas exchange, hydraulic traits, and the interplay among functional traits in Tianshan Mountains' M. sieversii seedlings. Our study revealed that All N‐inclusive fertilisers slightly promoted the net photosynthetic rate. N10 significantly increasing leaf hydraulic conductivity. All P‐inclusive fertilisers adversely affected hydraulic conductivity. P8, N20P4 and N20P8 notably increased seedlings' vulnerability to embolism. Seedlings can adaptively adjust multiple functional traits in response to nutrient changes. The research suggests N10 and N20 as the most effective fertilisation treatments for M. sieversii seedlings in this region, while fertilisation involving phosphorus is less suitable. This study contributes valuable insights into the specific nutrient needs of it, vital for conservation and cultivation efforts in the Tianshan region.

Publisher

Wiley

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