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首页> 外文期刊>Environmental Biology of Fishes >Feeding modes in stream salmonid population models: is drift feeding the whole story?
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Feeding modes in stream salmonid population models: is drift feeding the whole story?

机译:溪流鲑鱼种群模型中的饲养方式:漂移是整个过程的源头吗?

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Drift-feeding models are essential components of broader models that link stream habitat to salmonid populations and community dynamics. But is an additional feeding mode needed for understanding and predicting salmonid population responses to streamflow and other environmental factors? We addressed this question by applying two versions of the individual-based model inSTREAM to a field experiment in which streamflow was varied in experimental units that each contained a stream pool and the adjacent upstream riffle. The two model versions differed only in the feeding options available to fish. Both versions of inSTREAM included drift feeding; one also included a search feeding mode to represent feeding in which food availability is largely independent of streamflow, such as feeding from the benthos, or feeding from the water column or the water's surface in low water velocities. We compared the abilities of the two model versions to fit the observed distributions of growth by individual rainbow trout (Oncorhynchus mykiss) in the field experiment. The version giving fish the daily choice between drift or search feeding better fit observations than the version in which fish fed only on drift. Values for drift and search food availability from calibration to the individual mass changes of fish in experimental units with unaltered streamflow yielded realistic distributions of individual growth when applied to experimental units in which streamflow was reduced by 80 %. These results correspond with empirical studies that show search feeding can be an important alternative to drift feeding for salmonids in some settings, and indicate that relatively simple formulations of both processes in individual-based population models can be useful in predicting the effects of environmental alterations on fish populations.
机译:漂流喂养模型是更广泛模型的重要组成部分,这些模型将河流生境与鲑鱼种群和社区动态联系起来。但是,是否需要一种额外的喂养方式来理解和预测鲑鱼种群对水流和其他环境因素的反应?我们通过将两个版本的基于个人的模型inSTREAM应用于现场实验,解决了这个问题,在该实验中,流量以不同的实验单位变化,每个实验单位包含一个流池和相邻的上游浅滩。两种型号的区别仅在于可用于鱼类的喂养方式不同。两种版本的inSTREAM均包含漂移进给;一种还包括搜索进食模式,该模式代表了进食模式,在该模式中,食物的可利用性在很大程度上与溪流无关,例如从底栖动物进食,或以低水速从水柱或水面进食。我们在野外实验中比较了两个模型版本的能力,以适应单个虹鳟(Oncorhynchus mykiss)观察到的生长分布。与只在漂流中觅食的鱼相比,这种鱼每天在漂流或搜寻觅食之间进行选择的方式更适合观察。从流量到流量不变的实验单位中,从校准到鱼类个体质量变化的漂移和搜索食物可用性的值,当应用于流量减少80%的实验单位时,可得出个体生长的实际分布。这些结果与经验研究相对应,表明在某些情况下搜寻觅食可以替代鲑鱼的漂流觅食,并且表明基于个体的种群模型中两个过程的相对简单的公式化对于预测环境变化对鲑鱼的影响可能是有用的。鱼类种群。

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