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THE INFLUENCE OF ENVIRONMENTAL FACTORS ON SPATIAL AND TEMPORAL VARIATION OF FISH ASSEMBLAGES IN THE LOWER BRAZOS RIVER, TEXAS

机译:环境因素对德克萨斯州下布拉索斯河鱼类种群时空变化的影响

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摘要

Large floodplain rivers are spatially heterogeneous and temporally dynamic ecosystems. However, few studies have quantified the variation or species-environment relationships of fish assemblages in the main-channel of large rivers. Fishes were collected along a 10-km reach of the lower Brazos River, a large floodplain river in Texas. Collections targeted the 15th, 30th, and 50th percentile discharge rates of summer and winter seasons. My objectives were: (1) to compare fish assemblage structure in shallow river-margins versus deepwater habitats, (2) to evaluate the spatial and temporal variability of fish assemblages in these two habitats, (3) to identify species-environment relationships that likely structure these assemblages, and (4) to quantify the relative variation in assemblage structure as related to environmental versus seasonal sources.A total of 41 species and 28,469 individual fishes were collected. Assemblages were less variable than levels typically reported for streams and had weak species-environment relationships. Temporal variability of the shallow river-margin fish assemblage was primarily the result of juvenile recruitment, displacement of individuals following spates, or seasonal immigration by Mugil cephalus. Among the deepwater assemblages, increased movement associated with reproductive activities increased temporal variation. Spatial variation was detected only among deepwater assemblages and was related to velocity. Eighteen commonly collected species were evaluated for relationships with environmental variables and season. Shallow river-margin assemblages were dominated by habitat-generalists and were most strongly differentiated by season, discharge and conductivity. Deepwater samples were dominated by Lepisosteus osseus and L. oculatus and were most strongly differentiated by velocity. For shallow river-margin and deepwater assemblages, environmental variables uniquely explained more of the total variation than season. Results of this study point to biotic factors as probably explaining a large proportion of the unexplained variation.
机译:大型洪泛区河流是空间异质性和时间动态的生态系统。但是,很少有研究量化大河主河道中鱼类种群的变化或物种与环境的关系。在得克萨斯州的一条大洪泛河下游布拉索斯河下游10公里处采集鱼类。收集针对夏季和冬季的15、30和50%百分率。我的目标是:(1)比较浅水域和深水生境中的鱼类群落结构,(2)评价这两个生境中鱼类群落的时空变异,(3)识别可能存在的物种与环境的关系(4)量化与环境和季节来源有关的组合结构的相对变化。总共收集了41种鱼类和28,469条单独的鱼类。组合物的可变性不及通常所报告的溪流水平,且物种与环境之间的关系较弱。浅水河缘鱼类组合的时间变化主要是由于幼年募集,接sp后个体流离失所或穆吉尔头颅的季节性迁徙造成的。在深水组合中,与生殖活动有关的运动增加会增加时间变化。仅在深水组合中检测到空间变化,并且与速度有关。评价了18个常用物种与环境变量和季节的关系。浅河边的组合主要由生境学家主导,并且在季节,流量和电导率上有最强的区别。深水样品主要由鱼和Le鱼所控制,并通过速度最强地区分。对于浅水河缘和深水集合,环境变量唯一地解释了总变化量而不是季节。这项研究的结果表明,生物因素可能解释了很大一部分无法解释的变异。

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  • 作者

    LI RAYMOND Y.;

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  • 年度 2003
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