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生态学杂志 ›› 2023, Vol. 42 ›› Issue (10): 2351-2358.doi: 10.13292/j.1000-4890.202310.024

• 湿地生态与修复专栏 • 上一篇    下一篇

围栏禁牧对纳帕海湿地土壤生态化学计量特征的影响

盖杨菊,刘爽,张昆,李文韬,郭雪莲*   

  1. 1云南省高原湿地保护修复与生态服务重点实验室, 昆明 650224; 2国家高原湿地研究中心, 昆明 650224; 3西南林业大学湿地学院, 昆明 650224)

  • 出版日期:2023-10-10 发布日期:2023-10-07

Effects of exclosure on soil ecological stoichiometry in Napahai wetland.

GAI Yangju, LIU Shuang, ZHANG Kun, LI Wentao, GUO Xuelian*   

  1. (Yunnan Key Laboratory of Plateau Wetland Conservation, Restoration and Ecological Services, National Plateau Wetlands Research Center, College of Wetland, Southwest Forestry University, Kunming 650224, China).

  • Online:2023-10-10 Published:2023-10-07

摘要: 开展围栏禁牧对湿地土壤生态化学计量特征影响的研究,为理解围栏禁牧对退化湿地生态系统恢复的影响提供理论基础。本研究选取纳帕海湿地未禁牧、禁牧3年、8年和10年的沼泽化草甸和草甸为对象,比较不同围栏禁牧年限对土壤碳(C)、氮(N)、磷(P)含量及其生态化学计量的影响。结果表明:围栏禁牧提高了沼泽化草甸和草甸土壤总有机碳(TOC)、全氮(TN)、全磷(TP)、硝态氮(NO3--N)、铵态氮(NH4+-N)、微生物生物量碳(MBC)、微生物生物量氮(MBN)、微生物生物量磷(MBP),提高了C/N、C/P、N/P和MBN/MBP。沼泽化草甸和草甸土壤C/N、C/P、N/P均与TOC、TN、含水率、NO3--N、NH4+-N、MBN呈显著正相关(P<0.01),与土壤容重显著负相关。沼泽化草甸土壤MBC/MBN、MBC/MBP与TOC、NH4+-N、MBN和含水率显著负相关,MBN/MBP与所有环境因子均没有显著相关性;草甸土壤MBC/MBN、MBC/MBP与TOC、TN、MBN、含水率呈显著负相关(P<0.01),MBN/MBP与pH、MBN、含水率呈显著正相关(P<0.01)。围栏禁牧条件下,土壤TOC是影响沼泽化草甸和草甸土壤生态化学计量的主导因素。综上所述,围栏禁牧通过影响养分条件改变纳帕海湿地土壤生态化学计量特征。


关键词: 围栏禁牧, 生态化学计量, 沼泽化草甸, 草甸, 纳帕海

Abstract: Clarifying the effects of exclosure on soil stoichiometric characteristics of wetland provides a theoretical basis for better understanding the influence of exclosure on wetland restoration. We chose swamp meadows and meadows with no grazing prohibition, exclosure for 3, 8 and 10 years in Napahai wetland to examine the effects of different exclosure durations on the contents and stoichiometry of carbon (C), nitrogen (N), and phosphorus (P). The results showed that exclosure enhanced the contents of soil total organic carbon (TOC), total nitrogen (TN), total phosphorus (TP), nitrate nitrogen (NO3--N), ammonium nitrogen (NH4+-N), microbial biomass carbon (MBC), microbial biomass nitrogen (MBN) and microbial biomass phosphorus (MBP), as well as C/N, C/P, N/P and MBN/MBP of swamp meadow and meadow. The C/N, C/P, and N/P of swamp meadow and meadow soil were positively correlated with TOC, TN, moisture content, NO3--N, NH4+-N, MBN (P<0.01), but negatively correlated with bulk density. The MBC/MBN and MBC/MBP of swamp meadow soil was significantly negatively correlated with TOC, NH4+-N, MBN, and moisture. MBN/MBP had no significant correlation with all environmental factors. The MBC/MBN, MBC/MBP of meadow soil were significantly negatively correlated with TOC, TN, MBN, and water content (P<0.01). MBN/MBP was significantly positively correlated with pH, MBN, water content (P<0.01). Soil TOC was the dominant factor affecting soil ecological stoichiometry in swamp meadow and meadow under exclosure. In conclusion, exclosure changes soil ecological stoichiometric characteristics of Napahai wetland by affecting nutrient conditions.


Key words: exclosure, ecological stoichiometry, swamp meadow, meadow, Napahai.