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生态学杂志 ›› 2023, Vol. 42 ›› Issue (6): 1323-1329.

• 研究报告 • 上一篇    下一篇

鄱阳湖湿地不同环境条件土壤有机碳组分特征及其影响因素

袁继红1,任琼1,周莉荫1*,缪泸君1,迟韵阳1,万方1,王金平2,万松贤3


  

  1. (1江西省林业科学院, 南昌 330032; 2江西省退化生态系统修复与流域生态水文重点实验室, 南昌 330099; 3江西鄱阳湖南矶湿地国家级自然保护区管理局, 南昌 330038)

  • 出版日期:2023-06-10 发布日期:2023-06-05

Characteristics and influencing factors of soil organic carbon components under different environmental conditions in Poyang Lake wetland.

YUAN Jihong1, REN Qiong1, ZHOU Liyin1*, MIAO Lujun1, CHI Yunyang1, WAN Fang1, WANG Jinping2, WAN Songxian3#br#

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  1. (1Jiangxi Academy of Forestry, Nanchang 330032, China; 2Jiangxi Key Laboratory for Restoration of Degraded Ecosystems and Watershed Ecohydrology, Nanchang 330099, China; 3Nanji Wetland National Nature Reserve Agency, Nanchang 330038, China).

  • Online:2023-06-10 Published:2023-06-05

摘要: 环境条件的变化会影响湿地生态系统碳汇功能。探究环境条件对湿地土壤有机碳及其组分的影响,能为湿地土壤碳调控提供科学指导。本研究选择鄱阳湖湿地不同水位条件(高水位和低水位)的2种典型植物群落(南荻Triarrhena lutarioriparia和水蓼Polygonum hydropiper)为对象,比较不同环境条件下土壤有机碳组分差异,分析土壤理化性质与土壤有机碳组分之间的相关关系。结果表明,重组有机碳是湿地土壤有机碳的主要组成部分,占比达70%以上;水位对土壤有机碳组分的影响高于植物群落,尤其是在高水位条件下水蓼群落土壤有机碳、重组有机碳、颗粒有机碳、可溶性有机碳和微生物生物量碳分别比低水位条件下高109.2%、115.5%、175.8%、239.4%和61.7%;土壤pH值与土壤总碳、重组有机碳和颗粒有机碳含量呈显著负相关;土壤含水量、总氮含量与土壤有机碳各组分含量呈显著正相关。因此,提高水位有利于湿地土壤碳的积累。


关键词: 鄱阳湖湿地, 有机碳组分, 水位, 植物群落

Abstract: Changes of environmental conditions can affect carbon sink function of wetlands. Understanding the effects of environmental conditions on soil organic carbon and its components in wetlands can provide scientific guidance for soil carbon regulation in wetlands. Here, we investigated the effects of water levels (high and low water level) and vegetation types (Triarrhena lutarioriparia and Polygonum hydropiper) on soil organic carbon and its components in Poyang Lake wetland. We analyzed the relationships between soil physicochemical properties and soil organic carbon components. Results showed that heavy fraction organic carbon was the main component of soil organic carbon, accounting for more than 70% of the total. Water level had significantly stronger effects on soil organic carbon components than the vegetation type. Soil organic carbon, heavy fraction organic carbon, particulate organic, soluble organic carbon and microbial biomass carbon of P. hydropiper community in high water level were 109.2%, 115.5%, 175.8%, 239.4%, and 61.7% higher than those in low water level, respectively. Soil pH was significantly negatively correlated with soil total carbon, heavy fraction organic carbon, and particulate organic carbon. Soil water content and total nitrogen content were significantly positively correlated with organic carbon components. Therefore, increasing water level is beneficial to soil carbon accumulation in wetlands.


Key words: Poyang Lake wetland, organic carbon component, water level, plant community.