Synergistic effects of leaf nitrogen and phosphorus on photosynthetic capacity in subtropical forest

被引:0
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作者
Longkang Ni
Daxing Gu
Jiashuang Qin
Wen He
Kechao Huang
Dennis Otieno
机构
[1] Guangxi Institute of Botany,Guangxi Key Laboratory of Plant Conservation and Restoration Ecology in Karst Terrain
[2] Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences,Guangxi Guilin Urban Ecosystem Research Station
[3] National Forestry and Grassland Administration,undefined
[4] Jaramogi Oginga Odinga University of Science and Technology,undefined
关键词
V; J; Linear mixed model; N×P interaction; Karst species;
D O I
暂无
中图分类号
学科分类号
摘要
The photosynthetic capacity is contingent upon the balance between nitrogen (N) and phosphorus (P) concentration, as well as environmental factors. Ensuring a balanced and timely supply of nitrogen and phosphorus facilitated healthy leaf growth and sustained efficient photosynthetic activity during trees active growth phases. However, the effects of the interactions between these factors on photosynthesis, particularly in the unique context of karst ecosystems, remain unclear. To address this, we conducted an assessment of photosynthetic parameters, including the 25 ℃ maximum carboxylation rate (Vcmax,25) and the 25 ℃ maximum electron transport rate (Jmax,25), and chemical traits of leaves (leaf N, leaf P, and N:P ratio) in nine locally dominant species across both subtropical non-karst and karst areas in southwestern China. Our findings revealed that concentrations of leaf phosphorus and soil phosphorus were significantly higher in karst areas compared to non-karst areas. Additionally, the Vcmax,25 of both karst and non-karst species were synergistically affected by leaf N and P concentrations, rather than being constrained by least available nutrient. Specifically, Vcmax,25 of karst species was strongly related to leaf P, and increasing leaf N substantially increased the sensitivity of Vcmax,25 to leaf P, highlighting the importance of maintaining a balance between N and P concentrations. These insights substantially enhance the understanding of photosynthetic dynamics and resource management in diverse ecosystems, providing a solid foundation for further research and conservation strategies.
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页码:97 / 111
页数:14
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