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Ecosystem-specific growth responses to climate pattern by a temperate freshwater fish

机译:温带淡水鱼对生态系统的特定生态系统生长响应

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摘要

Somatic growth patterns among animal populations are maintained through complex processes that vary among ecosystems. Changes in growth patterns may be concomitant with changes in climate; however, understanding how growth will manifest among ecosystems is limited. Information embedded within fish hard-parts (i.e., otoliths, spines, vertebrae) can account for variation in growth patterns resulting from changing climate conditions. Channel catfish Ictalurus punctatus is a freshwater fish species widely distributed across North America with limited information regarding climate influences on growth and differences in climate-growth relations among ecological systems. We assessed growth (total length) response to changing climate conditions for channel catfish among three waterbody types-pit lakes, irrigation and power-generation reservoirs, and flood-control reservoirs in Nebraska, USA. We used linear mixed-effect models and an information theoretic approach to assess the relative strengths among competing hypotheses. The most supported linear mixed-effect model of channel catfish growth was a function of fish age and an interaction between waterbody type and growingdegree-day (GDD). A positive trend existed in GDD from 1990 through 2008 whereby the predicted increase in GDD among waterbody types ranged from 182 GDD to 189 GDD. The predicted change in channel catfish growth resulting from increased GDD ranged from 1% to 39% among waterbody types. Channel catfish population rate functions, thus, may not respond similarly to climate conditions across ecosystem types. Changes in climate variables may contribute to system-specific responses in population dynamics for channel catfish as well as other similar freshwater species. The establishment of relations between climate and growth variables for a freshwater generalist with a plastic diet and broad temperature tolerance serves as an indication of the breadth of responses possible for freshwater fishes under global changes in climate conditions.
机译:动物种群之间的体细胞生长模式通过生态系统之间不同的复杂过程得以维持。生长方式的变化可能与气候变化同时发生;但是,了解增长将如何在生态系统中体现的认识有限。嵌入鱼类坚硬部分(即耳石,刺,椎骨)中的信息可以解释由于气候条件变化而导致的生长方式的变化。斑cat鱼Ictalurus punctatus是一种淡水鱼类,在北美广泛分布,有关气候对生长的影响以及生态系统之间的气候-生长关系差异的信息有限。我们在美国内布拉斯加州的三种水体类型的湖泊,灌溉和发电水库以及防洪水库中评估了channel鱼对气候条件变化的增长(总长)。我们使用线性混合效应模型和信息理论方法来评估竞争假设之间的相对优势。通道cat鱼生长的最受支持的线性混合效应模型是鱼龄的函数以及水体类型与生长日(GDD)之间的相互作用。从1990年到2008年,GDD存在着积极的趋势,据此,水体类型中GDD的预测增长范围从182 GDD到189 GDD。在水体类型中,由GDD升高引起的channel鱼生长的预测变化范围为1%至39%。因此,鱼种群速率函数对整个生态系统类型的气候条件的响应可能不同。气候变量的变化可能有助于对channel鱼以及其他类似淡水物种的种群动态做出系统特定的响应。对于具有可塑性饮食和宽温度耐受性的淡水通才,气候与生长变量之间的关系的建立表明了全球气候条件变化对淡水鱼类可能做出的反应的广度。

著录项

  • 来源
    《Ecological indicators》 |2020年第5期|106130.1-106130.6|共6页
  • 作者

  • 作者单位

    Univ Arkansas Pine Bluff Sch Agr Fisheries & Human Sci Pine Bluff AR 71601 USA;

    Univ Nebraska Sch Nat Resources Lincoln NE USA;

    Univ Nebraska Sch Nat Resources Lincoln NE USA|US Geol Survey Nebraska Cooperat Fish & Wildlife Res Unit Lincoln NE USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate; Mixed models; Fish growth; Channel catfish; Freshwater ecology; Growing-degree-days;

    机译:气候;混合模型;鱼类生长;鱼;淡水生态学;生长度天;

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