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生态学杂志 ›› 2026, Vol. 45 ›› Issue (9): 2845-2852.doi: 10.13292/j.1000-4890.202609.036

• ·红树林湿地生态学专栏·(专栏组织专家:曹文志、王文卿、宋长春) • 上一篇    下一篇

淇澳岛红树林凋落叶淋溶分解的碳氮磷迁移特征

游丽霞1,2,魏龙1*,游奕来3,孙争争3,冯建祥2*   

  1. (1广东省林业科学研究院/广东省森林培育与保护利用重点实验室//粤港澳大湾区生态系统保护修复国家林业和草原局重点实验室/广东沿海防护林生态系统定位观测研究站, 广州 510520; 2中山大学海洋科学学院/南方海洋科学与工程广东省实验室(珠海), 广东珠海 519082; 3广东珠海淇澳-担杆岛省级自然保护区管理处, 广东珠海 519000)
  • 出版日期:2026-09-10 发布日期:2026-09-07

The migration characteristics of carbon, nitrogen, and phosphorus during leaching decomposition of mangrove leaf litter in Qi’ao Island.

YOU Lixia1,2, WEI Long1*, YOU Yilai3, SUN Zhengzheng3, FENG Jianxiang2*   

  1. (1Guangdong Academy of Forestry/Guangdong Provincial Key Laboratory of Silviculture, Protection and Utilization/Key Laboratory of National Forestry and Grassland Administration on Ecosystem Conservation and Restoration in the Guangdong-Hong Kong-Macao Greater Bay Area/Guangdong Coastal Shelter-belt Ecosystem National Observation and Research Station, Guangzhou 510520, China; 2School of Marine Sciences, Sun Yat-Sen University, and Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai 519082, Guangdong, China; 3Guangdong Zhuhai Qi’ao-Dangan Island Provincial Nature Reserve Management Office, Zhuhai 519000, Guangdong, China).

  • Online:2026-09-10 Published:2026-09-07

摘要: 凋落物淋溶是红树林凋落物分解的初始阶段,调控着碳和养分向邻近水域的初始释放。本研究以珠海淇澳岛3种红树植物无瓣海桑(Sonneratia apetala)、秋茄(Kandelia obovata)和老鼠簕(Acanthus ilicifolius)的凋落叶为对象,通过室内控制实验模拟潮汐淹水环境,分析前期凋落叶淋溶过程中碳(C)、氮(N)、磷(P)的释放特征及其调控机制。实验设置了单一及混合凋落叶处理,在14天的淋溶期内监测凋落叶干物质损失、元素含量动态及渗滤液中溶解性有机碳(DOC)、总氮(TDN)和总磷(TP)的浓度变化。结果表明:(1)凋落物化学质量(碳氮磷含量、C/N比等)主导分解速率与元素迁移过程。高化学质量凋落叶(老鼠簕)分解最快,其分解速率常数(k=0.2274 d-1)显著高于秋茄(0.1078 d-1)和无瓣海桑(0.1124 d-1)。(2)混合分解产生显著的非加性效应。秋茄与老鼠簕混合产生协同作用,分解速率(k=0.1277 d-1)高于单一处理;而无瓣海桑与老鼠簕混合则表现为拮抗作用,分解速率(k=0.0975 d-1)低于单一处理。(3)不同凋落物组合的C、N、P的迁移路径存在显著差异。凋落物碳以DOC形式直接浸出的比例极低,仅占初始C含量的0.87%(无瓣海桑)~3.31%(老鼠簕)。N的溶解损失潜力较高,老鼠簕的N浸出率最高达12.2%,其渗滤液N浓度(5.17 mg·L-1)也最高。P释放呈现强烈物种特异性,无瓣海桑是主要的P释放源,其最终P浸出量(0.53 mg·g-1)最高;而混合处理能有效抑制P的溶出。本研究揭示了凋落物化学质量与物种互作对元素释放的关键调控机制,同时建议未来研究中对呼吸、颗粒碳输出等不同碳损失途径的通量加强监测,在红树林生态修复中,依据不同管理目标优化树种配置,宜采用混合种植增强固碳和调节物质输出。


关键词: 红树林, 凋落物分解, 无瓣海桑, 秋茄, 混合效应

Abstract: Litter leaching is the initial stage of mangrove litter decomposition, and regulates the initial release of carbon and nutrients to adjacent waters. This study aimed to elucidate the regulatory mechanisms of litter chemical quality on the leaching process and the release patterns of carbon (C), nitrogen (N), and phosphorus (P). We conducted a laboratory experiment simulating tidal inundation with leaf litter of single-species and mixed-species of three mangrove species from Qi’ao Island, Zhuhai, including Sonneratia apetala, Kandelia obovata, and Acanthus ilicifolius. Over a 14 days leaching period, the dynamics of litter dry mass loss, C, N and P contents, and the concentrations of dissolved organic carbon (DOC), total dissolved nitrogen (TDN), and total phosphorus (TP) in the water were monitored. The results showed that: (1) Litter chemical quality (C, N and P contents, C/N ratio) governed the decomposition rate and elemental migration processes. High-quality litter (A. ilicifolius) decomposed the fastest, with a decomposition rate constant of k=0.2274 d-1, significantly higher than that of K. obovata (0.1078 d-1) and S. apetala (0.1124 d-1). (2) Mixed litter decomposition exhibited significant non-additive effects. There was a synergistic effect in the K. obovata and A. ilicifolius mixture, with a decomposition rate (k=0.1277 d-1) higher than that of the single-species treatments. In contrast, an antagonistic effect occurred in the S. apetala and A. ilicifolius mixture, with a lower decomposition rate (k=0.0975 d-1). (3) There were significant differences in the migration pathways of C, N, and P among different litter combinations. The direct leaching loss of litter C as DOC was minimal, accounting for only 0.87% (S. apetala) to 3.31% (A. ilicifolius) of the initial C content. Nitrogen showed a higher potential for dissolved loss, with A. ilicifolius having the highest N leaching rate (12.2%) and the highest leachate N concentration (5.17 mg·L-1). Phosphorus release was highly species-specific. S. apetala was the primary P source, with the highest final P leaching amount (0.53 mg·g-1). The mixed treatments effectively suppressed P leaching. This study reveals the key regulatory mechanisms of litter quality and species interactions on C, N, and P release. It is recommended to enhance the monitoring of flux from different C loss pathways such as respiration and particulate C export. For mangrove ecological restoration, species configuration should be optimized according to different management objectives, and mixed planting is suggested to regulate material export.

Key words: mangrove, litter decomposition, Kandelia obovata, Sonneratia apetala, mixed-species effect