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Spatial variation in growth, maturation schedules and reproductive investment of female sole Solea solea in the Northeast Atlantic

机译:东北大西洋女性唯一Solea solea的生长,成熟时间表和生殖投资的空间变化

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摘要

Latitudinal variation in life-history traits is often explained by phenotypically plastic responses or local adaptations to different thermal regimes. We compared growth, maturation schedules and reproductive investment of female sole Solea solea between 8 populations, covering much of the species' distribution in northern Europe, with respect to thermal gradients. An energy allocation model was fitted to size-age data, and probabilistic maturation reaction norms were estimated from size-age-maturity data. We found that northern populations from colder environments had higher rates of energy acquisition and reproductive investment, an intrinsic tendency to mature earlier, and had smaller asymptotic sizes than southern populations from warmer environments. Consequently, growth rate was higher before maturation but lower after maturation in the north compared to the south. This is opposite to Bergmann's rule according to which slower growth, delayed maturation and larger asymptotic sizes are usually observed at lower temperatures. The observed patterns could indicate strong countergradient thermal adaptation for rapid growth and development as well as sustained fecundity in the north, or indicate a response to other selection pressures correlated with the thermal gradient. Potentially higher mortality in northern populations during cold winters might be one of the key drivers of the observed geographical variation in growth and maturation of sole.
机译:生命历史特征的纬度变化通常通过表型塑性响应或对不同热态的局部适应来解释。我们比较了8个种群中唯一的雌性Solea solea的生长,成熟时间表和生殖投资,这些物种在热梯度方面涵盖了北欧大部分物种的分布。将能量分配模型拟合至尺寸-年龄数据,并从尺寸-年龄-成熟度数据估计概率成熟反应规范。我们发现,来自较冷环境的北部人口比来自较温暖环境的南部人口具有更高的能源获取和生殖投资率,这是一种较早成熟的内在趋势,并且其渐近大小较小。因此,与南部相比,北部的成熟前生长速率较高,而成熟后则较低。这与Bergmann规则相反,在Bergmann规则中,通常在较低温度下观察到较慢的生长,延迟的成熟和较大的渐近大小。观察到的模式可能表明强烈的逆梯度热适应,以促进快速增长和发展以及北部持续的繁殖力,或者表明对与热梯度相关的其他选择压力的响应。在寒冷的冬季,北部人群的死亡率可能更高,这可能是观察到的唯一生长和成熟地理差异的主要驱动因素之一。

著录项

  • 来源
    《Journal of sea research》 |2013年第11期|109-121|共13页
  • 作者单位

    Wageningen Institute for Marine Resources and Ecosystem Studies (IMARES), P.O. Box 68, 1970 AB IJmuiden, The Netherlands,Evolution and Ecology Program, International Institute for Applied Systems Analysis, Schlossplatz 1, A-2361 Laxenburg, Austria,Blueyou Consulting Ltd, Zentralstrasse 156, 8003 Zuerich, Switzerland;

    Centre for Environment, Fisheries and Aquaculture Science (Cefas), Pakefield Road, Lowestoft NR33 0HT, UK;

    Institute of Coastal Research, Swedish Board of Fisheries, OEregrund, Sweden,Department of Biology, University of Eastern Finland (P.O. Box 111, FI-80101 Joensuu, Finland);

    Swedish University of Agricultural Sciences, Department of Ecology, Box 7044, 75007 Uppsala, Sweden;

    Wageningen Institute for Marine Resources and Ecosystem Studies (IMARES), P.O. Box 68, 1970 AB IJmuiden, The Netherlands,Aquaculture and Fisheries group, Wageningen University, P.O. Box 338, 6700 AH, Wageningen, The Netherlands;

    IFREMER, HMMN, Laboratoire Ressources Halieutiques, F-62200 Boulogne-sur-Mer, France,Univ Lille Nord de France, F-59000 Lille, France;

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

    Countergradient variation; Phenotypic plasticity; Growth; Maturation reaction norm; Temperature; Mortality-induced evolution;

    机译:反梯度变化;表型可塑性成长;成熟反应规范;温度;死亡率诱发的进化;

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