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大西洋银汉鱼纬度种群间能量获取与分配的适应性变化。

Adaptive variation in energy acquisition and allocation among latitudinal populations of the Atlantic silverside.

作者信息

Billerbeck J M, Schultz E T, Conover D O

机构信息

Department of Ecology and Evolution, State University of New York, Stony Brook, NY 11794-5245, USA e-mail:

Department of Ecology and Evolutionary Biology, University of Connecticut, Storrs, CT 06269-3043, USA, , , , , , US.

出版信息

Oecologia. 2000 Feb;122(2):210-219. doi: 10.1007/PL00008848.

Abstract

Understanding the evolution of growth rate requires knowledge of the physiology of growth. This study explored the physiological basis of countergradient variation (CnGV) in somatic growth across latitudinal populations of the Atlantic silverside, Menidia menidia. Energetics of northern (Nova Scotia, Canada) and southern (South Carolina, USA) genotypes were compared across resource levels, temperatures, and fish sizes to identify trade-offs to rapid growth. Offered unlimited resources, genotypes differed in both energy acquisition and allocation. Food consumption, growth, and efficiency of northern genotypes were consistently higher than in southern genotypes, across temperatures and body sizes. Feeding metabolism (specific dynamic action; SDA) was proportional to meal size, differing between genotypes to the extent that food consumption differed. Given limited resources, northern and southern genotypes displayed similar growth, efficiency, routine activity, and SDA across temperatures and fish sizes. Routine metabolism was equal at 17°C and 22°C, yet was significantly higher in northern fish at 28°C. Growth rates in M. menidia do not appear to trade off across environments or body sizes, i.e., at no temperature, ration, or size do southern fish outgrow northern conspecifics. Nor does submaximal growth result from increased costs of maintenance, tissue synthesis, or routine activity. Based on our findings, we propose that CnGV consumption and growth in M. menidia likely result from trade-offs with other energetic components, namely sustained and burst swimming.

摘要

了解生长速率的演变需要掌握生长生理学知识。本研究探讨了大西洋银汉鱼(Menidia menidia)纬度种群间体细胞生长的反梯度变异(CnGV)的生理基础。比较了北方(加拿大新斯科舍省)和南方(美国南卡罗来纳州)基因型在不同资源水平、温度和鱼体大小条件下的能量学特征,以确定快速生长的权衡因素。在提供无限资源的情况下,不同基因型在能量获取和分配方面存在差异。在不同温度和鱼体大小条件下,北方基因型的食物消耗、生长和效率始终高于南方基因型。摄食代谢(特定动力作用;SDA)与食量成正比,不同基因型之间的差异程度与食物消耗的差异程度相同。在资源有限的情况下,北方和南方基因型在不同温度和鱼体大小条件下表现出相似的生长、效率、日常活动和SDA。在17°C和22°C时,日常代谢相等,但在28°C时,北方鱼类的日常代谢显著更高。大西洋银汉鱼的生长速率似乎不会在不同环境或鱼体大小之间进行权衡,即在任何温度、饵料量或鱼体大小条件下,南方鱼类都不会比北方同种鱼类生长得更快。次最大生长也不是由维持、组织合成或日常活动成本增加导致的。基于我们的研究结果,我们提出大西洋银汉鱼的CnGV消耗和生长可能是与其他能量成分(即持续游泳和爆发性游泳)进行权衡的结果。

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