数字农科院2.0

Canopy nitrogen and water addition affect fine-root survival strategies and carbon allocation in a warm-temperate forest in China

文献类型: 外文期刊

作者: Wen Li;Yanzhu Su;Yiwen Qin;Fuwei Li;Tenglong Zhou;Yaqi He;Jianing Mao;Mengke Li;Chang Liu;Yifei Shi;Dandan Zhu;Chunyu Shen;Lei Ma;Shenglei Fu

作者机构:

关键词: Canopy nitrogen addition;Canopy water addition;Carbon allocation;Fine roots biomass;Fine roots survival strategy;Functional diversity

期刊名称: Forest Ecology and Management

ISSN: 0378-1127

年卷期: 2025 年 590 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Fine roots adapt to habitat changes, influencing plant survival strategies. However, there is a limited understanding of fine-root survival strategies under different nitrogen (N) and water treatments. Therefore, in an eight-year field control experiment conducted in a warm-temperate forest, we investigated the effects of changes in fine-root survival strategies in response to canopy N, canopy water, and N–water addition on fine-root biomass and functional diversity. Increases in soil nutrients (available N and moisture) promoted a conservative strategy of fine roots in dominant species, as indicated by the community-weighted mean. Compared to increasing tissue density in the non-growth period (with a maximum 44.6 % increase under canopy water addition), increasing fine-root diameter (up to 55.1 % increase under canopy N–water addition) and competition mitigated (maximum 49.9 % reduction under canopy N addition) the decrease in nutrient absorption rate indicators during the growth period, especially for absorptive fine roots. The conservative survival strategy adopted by dominant species provided living spaces for other species, thereby increasing fine-root biomass at the community level (maximum 33.4 % increase in non-growing seasons and 39.3 % in growing seasons, both under combined canopy N–water addition), particularly for non-dominant species. Our study elucidates the changes in fine-root survival strategies under different contexts that reflect potential climate change scenarios, and provides important evidence on the relationship between functional diversity and subsurface carbon allocation.

分类号:

  • 相关文献

[1]Fine root biomass and morphology in a temperate forest are influenced more by canopy water addition than by canopy nitrogen addition. Li, Wen,Wang, Chuang,Liu, Haowei,Wang, Wenqian,Sun, Ruomin,Li, Mengke,Shi, Yifei,Zhu, Dandan,Du, Wenzhi,Ma, Lei,Fu, Shenglei. 2023

[2]Influence of nitrogen addition on the functional diversity and biomass of fine roots in warm-temperate and subtropical forests. Li, Wen,Wang, Wenqian,Sun, Ruomin,Li, Mengke,Liu, Haowei,Shi, Yifei,Zhu, Dandan,Li, Junyong,Ma, Lei,Fu, Shenglei. 2023

[3]Carbon and nitrogen allocations in corn grown in Central and Northeast China: different responses to fertilization treatments. Mia Hui-tian,Lu Jia-long,Mia Hui-tian,Xu Ming-gang,Zhang Wen-ju,Huang Shao-min,Peng Chang,Chen Li-ming. 2015

[4]Ecosystem-Scale Carbon Allocation Among Different Land Uses: Implications For Carbon Stocks In The Yellow River Delta. Li, YQ, Li, JR, Jiao, SY, Li, Y, Xu, ZY, Kong, BH. 2020

[5]Consecutive annual mowing reduces soil respiration and increases the proportion of autotrophic component in a meadow steppe. Wen Zhu,Tsegaye Gemechu Legesse,Xiaobing Dong,Aogui Li,Ziyue Shi,Qi Tong,Changliang Shao,Weixing Liu. 2024

[6]Development trend, evolution of themes, gaps, and challenges of the research investigating ozone effects on vegetation. Ning Yang,Lorenzo Cotrozzi,Chunlan Liu,Qing Qiao,Xiaoke Wang,Feixiang Zheng,Yasutomo Hoshika,Cristina Nali,Elena Paoletti,Claudia Pisuttu,Samuele Risoli,Elisa Pellegrini. 2025

[7]Plant N:P stoichiometric-nonstructural carbohydrate linkages are age-dependent in extremely overfertilized apple production systems. Zhao, Jiarui,Liu, Zhanjun,Ai, Chao,Xu, Xinpeng,Zhai, Bingnian,Zhu, Yuanjun,Ning, Dongfeng. 2024

[8]Effects of fertilization regimes on active microbial groups in photosynthetic carbon utilization. Siyu Zhang,Hui Wang,Hao Zhang,Na Jiang,Jianning Zhao,Haifang Zhang,Dianlin Yang. 2025

[9]Glyphosate biodegradation and potential soil bioremediation by Bacillus subtilis strain Bs-15. Yu, X. M.,Yu, T.,Dong, Q. L.,An, M.,Wang, H. R.,Ai, C. X.,Yu, T.,Yin, G. H.,Dong, Q. L.. 2015

[10]Effect of Trichoderma longbrachiatum T2 on functional diversity of cucumber rhizomicrobes. Li, Shigui,Lu, Tianxiao,Zhang, Xiaoxia,Gu, Gingang,Niu, Yongchun.

[11]Decreased plant productivity resulting from plant group removal experiment constrains soil microbial functional diversity. Zhang, Ximei,Zhang, Ximei,Lu, Xiaotao,Han, Xingguo,Johnston, Eric R.,Barberan, Albert,Ren, Yi,Han, Xingguo.

[12]Responses of soil microbial community to different concentration of fomesafen. Xu, Jun,Dong, Fengshou,Liu, Xingang,Zheng, Yongquan.

[13]Impact of fluxapyroxad on the microbial community structure and functional diversity in the silty-loam soil. Xu Jun,Liu Yong-zhuo,Dong Feng-shou,Liu Xin-gang,Zhang Wen-wen,Zheng Yong-quan. 2015

[14]Effects of cultivation of OsrHSA transgenic rice on functional diversity of microbial communities in the soil rhizosphere. Xiaobing Zhang, Xujing Wang, Qiaoling Tang, Ning Li, Peilei Liu, Yufeng Dong,Weimin Pang, Jiangtao Yang, Zhixing Wang. 2015

[15]Editorial: Soil microbiome community and functional succession mechanism driven by different factors in agricultural ecology. Bin Huang,Wensheng Fang,Qin Gu,Bruno Tilocca. 2023

[16]Root traits and plasticity differences explain complementarity between co-existing species in phosphorus-limited grassland. Ji, Hui,Zhou, Na,Rengel, Zed,Jing, Jingying,Li, Hongbo. 2024

[17]Promoting effects of soil C and N and limiting effect of soil P jointly determine the plant diversity during the aerial seeding restoration process in Mu Us sandy land, China. Xiaoqian Gong,Zhimin Qi,Jia Wen,Yongzhi Yan,Qingfu Liu,Yuanheng Li,Qing Zhang. 2023

[18]Integrity and Size of Green Spaces Are Critical for the Functional Diversity of Birds: Evidence from the Eastern and Northwestern Regions of China. Lingxuan Gong,Lili Wang,Yao Yao,Linyi Wu,Su Wang,Bingchang Tan,Hongdan Yuan,Runan Hu. 2024

[19]Plant species loss reduces rare soil microbes through diversity effects amplified by multitrophic interactions. Li, Jie,Wei, Yanan,Lv, Ruixue,Liu, Weixing,Niu, Kechang. 2025

[20]The response of soil microbial community to application of organic amendment to saline land. Cong, Peifei,Huang, Pengfei,Huang, Zhisheng. 2025

作者其他论文 更多>>