Zooplankton community size structure across lakes within a semi-arid landscape: the effect of temperature and salinity

IF 1.9 3区 环境科学与生态学 Q2 MARINE & FRESHWATER BIOLOGY
Matías Mariani, Alicia Vignatti, Santiago Echaniz, Gerardo Cueto, Horacio Zagarese, Nadia Diovisalvi
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Abstract

Abstract Body size is a master trait controlling biological communities and ecosystem functioning. Mean population size not only depends on the size of individuals, but also on the size distribution of individuals within the population. Mean community size is additionally influenced by the composition of species (larger- or smaller-sized species). Shallow lakes within semi-arid landscapes are prone to experience large changes in temperature and salinity, which affect the zooplankton size structure. Higher temperatures are expected to result in smaller average body size, while the effect of salinity appears to depend on the range under study. Here we analyze zooplankton body size patterns across shallow lakes from the semi-arid central region of Argentina. All community size descriptors point to decreasing size and a narrow size range at higher temperatures. On the other hand, the maximum average community body size occurred at intermediate (~30 gL−1) salinity levels. The combined effect of both variables resulted in a bell-shaped pattern, with maximum community body size toward lower temperatures and intermediate salinities. Based on future temperature scenarios, one may anticipate an overall decrease in community body size. But such prediction is strongly conditioned by regional and local trends in salinity.
半干旱地区湖泊浮游动物群落规模结构:温度和盐度的影响
体型是控制生物群落和生态系统功能的主要性状。平均种群大小不仅取决于个体的大小,而且取决于个体在种群内的大小分布。平均群落大小还受物种组成(较大或较小的物种)的影响。半干旱地区的浅湖容易经历较大的温度和盐度变化,从而影响浮游动物的大小结构。较高的温度预计会导致平均体型变小,而盐度的影响似乎取决于所研究的范围。在这里,我们分析了阿根廷中部半干旱地区浅湖浮游动物的体型模式。所有的群落大小描述符都表明,在较高的温度下,群落大小减小,范围缩小。另一方面,最大平均群落大小出现在中等(~30 gL−1)盐度水平。这两个变量的综合作用导致了一个钟形模式,最大的群落规模向低温度和中等盐度方向发展。根据未来的温度情况,人们可以预测群落规模的总体减少。但是这种预测强烈地受到区域和当地盐度趋势的制约。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Plankton Research
Journal of Plankton Research 生物-海洋学
CiteScore
3.50
自引率
9.50%
发文量
65
审稿时长
1 months
期刊介绍: Journal of Plankton Research publishes innovative papers that significantly advance the field of plankton research, and in particular, our understanding of plankton dynamics.
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