首页> 外文期刊>Journal of Freshwater Ecology >Age-0 walleye Sander vitreus display length-dependent diet shift to piscivory
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Age-0 walleye Sander vitreus display length-dependent diet shift to piscivory

机译:年龄为0的角膜白斑桑德特玻璃体显示出与饮食有关的长度依赖性饮食

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The ontogenetic diet shift to piscivory can be energetically beneficial for fish growth and allows larger, more energetically profitable prey to be consumed. A shift to piscivory may be easier for longer individuals within a cohort due to larger gape size, and an early shift is likely advantageous, potentially leading to increased growth rates and survival. Such length-dependent ontogenetic diet shifts may explain the intracohort variability in length that is common for age-0 walleye (Sander vitreus ). The objectives of this study were to describe seasonal intracohort variability in length, identify the timing of the shift to piscivory and determine if the onset of piscivory was length-dependent in age-0 walleye. Walleye initially fed on zooplankton, but shifted to piscivory during July of 2010 and June of 2011. The onset of piscivory in age-0 walleye was associated with length-dependent differences during both years, in which longer individuals within the cohort became piscivorous earlier than shorter individuals within the same cohort. Intracohort variability in length was detected and increased postontogenetic diet shift. Age-0 walleye that experience a growth advantage could benefit from increased survival and feeding opportunities.
机译:自体饮食向食肉动物的转变可以对鱼类的生长产生能量上的好处,并可以消耗更大,能量上更有利可图的猎物。对于队列中较长的个体,由于间隙较大,可能更容易转向食肉动物,而且尽早转移可能是有利的,有可能导致增长率和生存率的提高。这种与长度有关的个体遗传饮食变化可以解释在0岁的角膜白斑(Sander vitreus)中常见的队列内长度的变异性。这项研究的目的是描述季节性队列内长度的变异性,确定转变为食管动物的时机,并确定食管动物的发病是否在长度上依赖于0岁的角膜白斑。角膜白斑最初以浮游动物为食,但在2010年7月和2011年6月转移到食肉性。0岁角膜白斑的发病与这两年的长度依赖差异有关,在该群体中,较长的个体比食肉性早。同一队列中的较短个体。队列长度的变异性被检测到,并且遗传后的饮食转变增加。经历生长优势的0岁角膜白斑可以受益于存活率和觅食机会的增加。

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