Niche partitioning in a periphyton metacommunity peaks at intermediate species richness in midsized rivers

IF 4.4 2区 环境科学与生态学 Q1 ECOLOGY
Ecology Pub Date : 2025-01-21 DOI:10.1002/ecy.4524
Thomas Fuß, Lukas Thuile Bistarelli, Robert Ptacnik, Gabriel A. Singer
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Abstract

The trait-based partitioning of species plays a critical role in biodiversity–ecosystem function relationships. This niche partitioning drives and depends on community structure, yet this link remains elusive in the context of a metacommunity, where local community assembly is dictated by regional dispersal alongside local environmental conditions. Hence, elucidating the coupling of niche partitioning and community structure needs spatially explicit studies. Such studies are particularly necessary in river networks, where local habitats are highly connected by unidirectional water flow in a spatially complex network structure and frequent disturbance makes community structure strongly dependent on recolonization. Here, we show that taxonomic turnover among periphyton communities colonizing deployed bricks (microhabitats) at multiple sampling sites (local habitats) in a river network came along with a turnover in traits. This niche partitioning showed a hump-shaped relationship with richness of periphyton communities, which increased along river size. Our observations suggest downstream dispersal along the river network to increase the regional metacommunity pool, which then ensures local colonization by taxa possessing diverse traits allowing them to efficiently partition into environmentally different microhabitats. However, at the most downstream sites, the excessive dispersal of widespread generalists drove mass effects which inflated richness with taxa that co-occupied several microhabitats and swamped niche partitioning. Further, efficient niche partitioning depended on communities rich in rare taxa, an indication for the importance of specialists. Alarmingly, richness and rare taxa declined with high phosphorus concentrations and conductivity, respectively, two environmental variables which potentially reflected anthropogenic activity.

Abstract Image

中型河流周边植物元群落的生态位划分在物种丰富度中等时达到峰值。
物种的性状划分在生物多样性-生态系统功能关系中起着至关重要的作用。这种生态位划分驱动并依赖于社区结构,但在元社区的背景下,这种联系仍然是难以捉摸的,在元社区中,当地社区的聚集是由区域分散和当地环境条件决定的。因此,阐明生态位划分与群落结构的耦合关系需要空间上的明确研究。这类研究在河网中尤为必要,在河网中,局部栖息地在空间复杂的网络结构中由单向水流高度连接,而频繁的干扰使群落结构强烈依赖于再定植。在这里,我们表明,在河流网络的多个采样点(当地栖息地)中,定居部署砖块(微栖息地)的周围植物群落之间的分类更替伴随着性状的更替。这种生态位划分与周边植物群落丰富度呈驼峰型关系,其丰富度随河流大小而增加。我们的观察表明,沿着河流网络的下游分散增加了区域元群落池,从而确保具有不同特征的分类群在当地的殖民化,使它们能够有效地划分到环境不同的微栖息地。然而,在大多数下游样地,广布通才的过度分散导致了质量效应,这些质量效应使得物种丰富度膨胀,同时占据了多个微生境,淹没了生态位划分。此外,有效的生态位划分依赖于富含稀有类群的群落,这表明专家的重要性。令人担忧的是,丰富度和稀有分类群分别随着高磷浓度和高电导率而下降,这两个环境变量可能反映了人类活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ecology
Ecology 环境科学-生态学
CiteScore
8.30
自引率
2.10%
发文量
332
审稿时长
3 months
期刊介绍: Ecology publishes articles that report on the basic elements of ecological research. Emphasis is placed on concise, clear articles documenting important ecological phenomena. The journal publishes a broad array of research that includes a rapidly expanding envelope of subject matter, techniques, approaches, and concepts: paleoecology through present-day phenomena; evolutionary, population, physiological, community, and ecosystem ecology, as well as biogeochemistry; inclusive of descriptive, comparative, experimental, mathematical, statistical, and interdisciplinary approaches.
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