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生态学杂志 ›› 2026, Vol. 45 ›› Issue (4): 1181-1188.doi: 10.13292/j.1000-4890.202604.035

• 研究报告 • 上一篇    下一篇

亚热带森林凋落叶分解及其相关真菌群落结构对氮磷添加的响应

陈佳渊,杨浩,史加勉,张晗烁,邱旖婷,林成芳,郑勇*   

  1. (福建师范大学湿润亚热带生态地理过程教育部重点实验室, 福州 350117)

  • 出版日期:2026-04-10 发布日期:2026-04-10

Responses of leaf litter decomposition and associated fungal community structure to nitrogen and/or phosphorus addition in subtropical forests.

CHEN Jiayuan, YANG Hao, SHI Jiamian, ZHANG Hanshuo, QIU Yiting, LIN Chengfang, ZHENG Yong*   

  1. (Key Laboratory for Humid Subtropical Ecogeographical Processes of the Ministry of Education, Fujian Normal University, Fuzhou 350117, China).

  • Online:2026-04-10 Published:2026-04-10

摘要: 森林生态系统中凋落叶的分解受到凋落叶性质以及参与凋落叶分解的微生物群落结构等因素的影响。本研究基于野外建立的长期氮、磷添加试验,于中龄林(40~50年)和成熟林(80~100年)两种类型的亚热带森林生态系统中开展为期2年的凋落叶分解实验,通过分解袋法与高通量测序技术,研究了凋落叶的分解速率及其相关真菌的群落结构。结果表明:在中龄林中,磷添加显著影响凋落叶的分解速率(P<0.05),单独磷添加与氮磷同时添加处理提高分解速率,提高幅度分别为20.3%和19.5%,单独氮添加降低凋落叶分解速率,降低幅度为10.5%。在成熟林中,氮添加或磷添加对凋落叶分解速率均无显著影响。无论森林类型,相对于对照,氮添加显著降低凋落叶相关真菌的丰富度和香农指数,降幅超20%。凋落叶相关真菌的群落组成在中龄林与成熟龄林之间存在显著差异(P=0.001),且均受到氮添加或磷添加的影响。土壤总碳、总氮、总磷及凋落叶总磷含量是影响其真菌群落组成的重要因子。研究强调了外源氮磷输入对于亚热带森林凋落叶分解的重要性,有助于更好地理解凋落叶分解过程及其影响因素。


关键词: 氮添加, 磷添加, 分解速率, 凋落叶真菌

Abstract: The decomposition of leaf litter in forest ecosystems is influenced by leaf properties and litter-associated microbial community structure. A 2-year nitrogen (N) and/or phosphorus (P) addition field experiment was established in two forest types (40-50 vs 80-100 years old, representing middle-aged and mature forest, respectively). The decomposition rate of leaf litter and the associated fungal community structures were investigated using litterbag method and high-throughput sequencing technique. The results showed that P addition significantly affected the decomposition rate in the middle-aged forest (P<0.05), with higher decomposition rates being observed in the P addition alone (+20.3%) and NP (+19.5%) addition treatments. N addition alone decreased the decomposition rate by 10.5% in middle-aged forests. However, the addition of N and/or P did not affect the decomposition rate in the mature forest. N addition significantly reduced (-20%) leaf litter-associated fungal richness and Shannon index regardless of forest type. There were significant differences in community composition of leaf litter-associated fungi between the middle-aged and mature forests (PerMANOVA, P=0.001). The fungal community composition was impacted by N or P addition. The contents of soil total carbon, total N, total P and litter total P were important factors affecting fungal community composition. This study emphasizes the importance of exogenous N and P inputs for the decomposition of leaf litter, which improves our understanding of litter decomposition and influencing factors in subtropical forest ecosystems.


Key words: nitrogen addition, phosphorus addition, decomposition rate, leaf litter-associated fungi