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首页> 外文期刊>Science of the total environment >Land cover alteration shifts ecological assembly processes in floodplain lakes: Consequences for fish community dynamics
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Land cover alteration shifts ecological assembly processes in floodplain lakes: Consequences for fish community dynamics

机译:土地覆盖改造在洪泛湖湖泊中转移生态装配过程:鱼群体动态的后果

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摘要

Habitat degradation is expected to alter community structure and consequently, ecosystem functions including the maintenance of biodiversity. Understanding the underlying abiotic and biotic assembly mechanisms controlling temporal and spatial community structure and patterns is a central issue in biodiversity conservation. In this study, using monthly time series of fish abundance data collected over a three-year period, we compared the temporal community dynamics in natural habitats and poplar plantations in one of the largest river-lake flood-plain ecosystems in China, the Dongting Lake. We found a prevailing strong positive species covariance, i.e. species abundance changes in the same way, in all communities that was significantly negatively impacted by higher water nutrient levels. In contrast to species covariance, community stability, which was measured by the average of aggregated abundance divided by temporal standard deviation, was significantly higher in poplar plantations than in natural habitats. The positive species covariance, which was consistent for both wet and dry years and among habitat types, had significantly negative effects on community stability. Furthermore, our results demonstrated that the ecological stochasticity (i.e. community assembly processes generating diversity patterns that are indistinguishable from random chance) was significantly higher in natural sites than in poplar plantations, suggesting that deterministic processes might control the community composition (richness and abundance) at the modified habitat through reducing species synchrony and positive species covariance observed in the natural habitats, leading to significantly lower temporal β-diversity. When combined, our results suggest that habitat modification created environmental conditions for the development of stable fish community in the highly dynamic floodplains, leading to niche-based community with lower temporal β-diversity.
机译:栖息地降解预计会改变社区结构,因此,生态系统功能包括维持生物多样性。了解控制时间和空间群落结构和模式的潜在的非生物和生物组装机制是生物多样性保护中的核心问题。在这项研究中,使用每月三年内收集的每月时间系列鱼丰序数据,我们将天然栖息地和杨树种植园中的颞群体动态进行了比较了中国中最大的河湖洪水平原生态系统之一,洞庭湖。我们发现了一种普遍的强大的阳性特性协方差,即物种丰富的变化与较高水营养水平显着产生负面影响的所有社区相同。与物种协方差相比,杨树种植园的汇总丰度的平均值测量的社区稳定性比在天然栖息地中显着高。阳性物种协方差与潮湿和干燥年份和栖息地类型一致,对社区稳定性显着产生了负面影响。此外,我们的结果表明,天然位点的生态随机性(即,从随机机会中难以区分的多样性模式)显着高于杨树种植园,表明确定性过程可能控制社区成分(丰富和丰富)通过减少物种同步和阳性物种协方差在自然栖息地观察到改良的栖息地,导致时间β-多样性明显较低。当合并时,我们的结果表明,栖息地修改为高度动态洪泛平坦开发稳定鱼群的发展为环境条件,导致基于利基的患者β-多样性。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|146724.1-146724.15|共15页
  • 作者单位

    School of Ecology and Nature Conservation Beijing Forestry University Beijing 100083 China;

    School of Ecology and Nature Conservation Beijing Forestry University Beijing 100083 China;

    School of Ecology and Nature Conservation Beijing Forestry University Beijing 100083 China;

    Department of Earth and Environmental Sciences Macquarie University Sydney 2109 Australia;

    School of Ecology and Nature Conservation Beijing Forestry University Beijing 100083 China;

    School of Ecology and Nature Conservation Beijing Forestry University Beijing 100083 China Science Division NSW Department of Planning Industry and Environment Sydney 2124 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Community stability; Species synchrony; Variance rate; Ecological stochasticity; Ecological deterministic; Null models;

    机译:社区稳定;物种同步;方差率;生态瞬间;生态确定性;零模型;

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