Isolated by lakes: the influence of connectivity on benthic macroinvertebrate community structure in river- and lake-connected streams

IF 2 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Jarno Turunen, Henna Snåre
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引用次数: 0

Abstract

Habitat connectivity is a key spatial attribute influencing biodiversity patterns in river networks by controlling the extent of dispersal in stream metacommunities. Large lake basins within river networks may hinder upstream dispersal of benthic macroinvertebrates to inlet streams, but the effects on biodiversity patterns have not been explicitly explored. We studied the effects of lake-induced variation in connectivity and environmental factors on alpha and beta diversity, and the active aerial dispersal (AAD) trait of stream macroinvertebrate species. Our analysis included data from 19 river-connected (RC) tributary streams and 17 more isolated lake-connected (LC) tributaries, with sampling conducted within approximately 1.5 km upstream of the stream-river confluence or stream-lake transition zone. Generalized additive models (GAM) and partial effects plots were used to assess the associations and the relative importance of connectivity and environmental factors on the community attributes. Species richness and the relative abundance of AAD were positively associated with the connectivity of the sampling site but species richness was also related to environmental factors, whereas the rarefied species richness and exponential of Shannon diversity were solely related to environmental variability. Beta diversity was negatively associated with connectivity but also to variation in pH. The results suggest that environmental factors largely control macroinvertebrate community structure in RC and LC streams, but the connectivity of the site might influence stream macroinvertebrate metacommunity patterns in river networks by enhancing dispersal and the occurrence of rare species. However, large lake basins seem to have a limited barrier effect on stream macroinvertebrate metacommunities, though further research is needed to fully understand this influence.

被湖泊隔离:连通性对河流和湖泊相连溪流中底栖大型无脊椎动物群落结构的影响
生境连通性是影响河网生物多样性格局的关键空间属性,它通过控制河流元群落的扩散程度。河网内的大型湖泊流域可能会阻碍底栖大型无脊椎动物向上游扩散,但对生物多样性模式的影响尚未明确探讨。研究了湖泊诱导的连通性变化和环境因子对河流大型无脊椎动物物种α和β多样性以及主动空中传播(AAD)特性的影响。我们的分析包括来自19条河流连接(RC)支流和17条更孤立的湖泊连接(LC)支流的数据,并在河-河汇合处或河-湖过渡带上游约1.5公里处进行采样。采用广义加性模型(GAM)和部分效应图来评估连通性和环境因子对群落属性的相关性和相对重要性。物种丰富度和AAD相对丰度与样地连通性呈正相关,但物种丰富度也与环境因子相关,而稀薄物种丰富度和Shannon多样性指数仅与环境变异性相关。结果表明,环境因素在很大程度上控制着RC和LC河流的大型无脊椎动物群落结构,但站点的连通性可能会通过增强分散和稀有物种的发生来影响河流网络中大型无脊椎动物群落的格局。然而,大型湖泊流域似乎对河流大型无脊椎动物元群落具有有限的屏障作用,尽管需要进一步的研究来充分了解这种影响。
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来源期刊
Aquatic Sciences
Aquatic Sciences 环境科学-海洋与淡水生物学
CiteScore
3.90
自引率
4.20%
发文量
60
审稿时长
1 months
期刊介绍: Aquatic Sciences – Research Across Boundaries publishes original research, overviews, and reviews dealing with aquatic systems (both freshwater and marine systems) and their boundaries, including the impact of human activities on these systems. The coverage ranges from molecular-level mechanistic studies to investigations at the whole ecosystem scale. Aquatic Sciences publishes articles presenting research across disciplinary and environmental boundaries, including studies examining interactions among geological, microbial, biological, chemical, physical, hydrological, and societal processes, as well as studies assessing land-water, air-water, benthic-pelagic, river-ocean, lentic-lotic, and groundwater-surface water interactions.
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