Biodegradation of mixed litter-derived dissolved organic matter with varying evenness in a temperate freshwater wetland.

IF 2.3 2区 环境科学与生态学 Q2 ECOLOGY
Oecologia Pub Date : 2024-08-01 Epub Date: 2024-07-08 DOI:10.1007/s00442-024-05590-3
Zhuoma Ga, Shuangshuang Jiang, Jiangang Han, Guoxiang Wang, Xinhou Zhang
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Abstract

Litter-derived dissolved organic matter (DOM) plays an essential role in biogeochemical cycles. In wetlands, species relative abundance and its change have great influences on input features of litter-derived DOM, including chemical characteristics per se and functional diversity of chemical characteristics. Functional diversity is an important factor controlling organic matter biodegradation, but little is known in terms of the DOM. We mixed litter leachates of four macrophytes with a constant concentration (20 mg DOC L-1) but varying dominant species and volume ratios, i.e. 15:1:1:1 (low-evenness), 5:1:1:1 (mid-evenness), and 2:1:1:1 (high-evenness), generating a gradient of chemical characteristics and functional diversity (represented by functional dispersion index FDis). Based on a 42-d incubation, we measured degradation dynamics of these DOM mixtures, and analyzed potential determinants. After 42 days of incubation, the high-evenness treatments, along with mid-evenness treatments sometimes, had most degradation, while the low-evenness treatments always had least degradation. The degradation of mixtures related significantly to not only the volume-weighted mean chemical characteristics but also FDis. Furthermore, the FDis even explained more variation of degradation. The non-additive mixing effects, synergistic effects (faster degradation than predicted) in particular, on degradation of DOM mixtures were rather common, especially in the high- and mid-evenness treatments. Remarkably, the mixing effects increased linearly with the FDis values (r2adj. = 0.426). This study highlights the critical role of functional diversity in regulating degradation of mixed litter-derived DOM. Resulting changes in chemistry and composition of litter leachates due to plant community succession may exert substantial influences on biogeochemical cycling.

Abstract Image

温带淡水湿地中不同均匀度的混合垃圾溶解有机物的生物降解。
垃圾衍生的溶解有机物(DOM)在生物地球化学循环中发挥着重要作用。在湿地中,物种相对丰度及其变化对垃圾衍生的 DOM 的输入特征有很大影响,包括化学特征本身和化学特征的功能多样性。功能多样性是控制有机物生物降解的一个重要因素,但在 DOM 方面却鲜为人知。我们将浓度恒定(20 毫克 DOC L-1)但优势物种和体积比不同的四种大型植物的垃圾渗滤液混合,即 15:1:1:1(低匀度)、5:1:1:1(中匀度)和 2:1:1:1(高匀度),从而产生化学特征和功能多样性(以功能分散指数 FDis 表示)的梯度。在培养 42 天的基础上,我们测量了这些 DOM 混合物的降解动态,并分析了潜在的决定因素。经过 42 天的培养后,高匀度处理和中匀度处理的降解程度最高,而低匀度处理的降解程度最低。混合物的降解不仅与体积加权平均化学特性密切相关,还与 FDis 密切相关。此外,FDis 甚至可以解释更多的降解变化。对 DOM 混合物降解的非加成混合效应,特别是协同效应(比预测的降解速度更快)相当普遍,尤其是在高均匀度和中均匀度处理中。值得注意的是,混合效应与 FDis 值呈线性增长(r2adj.)这项研究强调了功能多样性在调节混合垃圾衍生 DOM 降解中的关键作用。植物群落演替导致的垃圾渗滤液化学成分和组成的变化可能会对生物地球化学循环产生重大影响。
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来源期刊
Oecologia
Oecologia 环境科学-生态学
CiteScore
5.10
自引率
0.00%
发文量
192
审稿时长
5.3 months
期刊介绍: Oecologia publishes innovative ecological research of international interest. We seek reviews, advances in methodology, and original contributions, emphasizing the following areas: Population ecology, Plant-microbe-animal interactions, Ecosystem ecology, Community ecology, Global change ecology, Conservation ecology, Behavioral ecology and Physiological Ecology. In general, studies that are purely descriptive, mathematical, documentary, and/or natural history will not be considered.
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