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Fish Functional Traits Correlated with Environmental Variables in a Temperate Biodiversity Hotspot

机译:温带生物多样性热点中与环境变量相关的鱼类功能性状

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摘要

The global biodiversity crisis has invigorated the search for generalized patterns in most disciplines within the natural sciences. Studies based on organismal functional traits attempt to broaden implications of results by identifying the response of functional traits, instead of taxonomic units, to environmental variables. Determining the functional trait responses enables more direct comparisons with, or predictions for, communities of different taxonomic composition. The North American freshwater fish fauna is both diverse and increasingly imperiled through human mediated disturbances, including climate change. The Tennessee River, USA, contains one of the most diverse assemblages of freshwater fish in North America and has more imperiled species than other rivers, but there has been no trait-based study of community structure in the system. We identified 211 localities in the upper Tennessee River that were sampled by the Tennessee Valley Authority between 2009 and 2011 and compiled fish functional traits for the observed species and environmental variables for each locality. Using fourth corner analysis, we identified significant correlations between many fish functional traits and environmental variables. Functional traits associated with an opportunistic life history strategy were correlated with localities subject to greater land use disturbance and less flow regulation, while functional traits associated with a periodic life history strategy were correlated with localities subject to regular disturbance and regulated flow. These are patterns observed at the continental scale, highlighting the generalizability of trait-based methods. Contrary to studies that found no community structure differences when considering riparian buffer zones, we found that fish functional traits were correlated with different environmental variables between analyses with buffer zones vs. entire catchment area land cover proportions. Using existing databases and fourth corner analysis, our results support the broad application potential for trait-based methods and indicate trait-based methods can detect environmental filtering by riparian zone land cover.
机译:全球生物多样性危机推动了自然科学中大多数学科对通用模式的探索。基于生物功能性特征的研究试图通过识别功能性特征而不是分类单位对环境变量的响应来扩大结果的含义。确定功能性状反应可与不同分类组成的群落进行更直接的比较或预测。北美淡水鱼的动物种类繁多,并且由于包括气候变化在内的人为因素而受到破坏。美国田纳西河包含北美最丰富的淡水鱼类组合之一,并且受威胁物种的数量比其他河流还多,但是该系统中尚未进行基于特征的群落结构研究。我们确定了田纳西河上游管理局在2009年至2011年之间对田纳西河上游的211个地区进行采样,并针对观察到的物种和每个地区的环境变量编制了鱼类功能特征。使用第四角分析,我们发现了许多鱼类功能性状与环境变量之间的显着相关性。与机会性生活史策略相关的功能性状与受土地利用干扰较大且流量调节较少的地区相关,而与周期性生活史策略相关的功能性状与受常规干扰和流量管制的地区相关。这些是在大陆范围内观察到的模式,突显了基于特征的方法的可推广性。与在研究河岸缓冲带时没有发现群落结构差异的研究相反,我们发现在缓冲带分析与整个集水区土地覆盖比例之间的分析中,鱼类功能性状与不同的环境变量相关。使用现有的数据库和第四个角分析,我们的结果支持基于特征的方法的广泛应用潜力,并表明基于特征的方法可以检测河岸带土地覆被的环境过滤。

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