The heat is on: Genetic adaptation to urbanization mediated by thermal tolerance and body size

被引:148
作者
Brans, Kristien I. [1 ]
Jansen, Mieke [1 ]
Vanoverbeke, Joost [1 ,2 ]
Tuzun, Nedim [1 ]
Stoks, Robby [1 ]
De Meester, Luc [1 ]
机构
[1] Katholieke Univ Leuven, Lab Aquat Ecol Evolut & Conservat, B-3000 Leuven, Belgium
[2] Res Inst Nat & Forest INBO, Brussels, Belgium
基金
美国国家科学基金会;
关键词
critical thermal maximum; Daphnia magna; global warming; haemoglobin; phenotypic plasticity; structural equationmodelling; temperature-size rule; urban evolution; WATER FLEA DAPHNIA; RAPID EVOLUTION; CLIMATE-CHANGE; MICROCRUSTACEAN DAPHNIA; URBAN-ENVIRONMENT; DYNAMIC ACTION; TEMPERATURE; MAGNA; ISLAND; STRESS;
D O I
10.1111/gcb.13784
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Worldwide, urbanization leads to tremendous anthropogenic environmental alterations, causing strong selection pressures on populations of animals and plants. Although a key feature of urban areas is their higher temperature (urban heat islands), adaptive thermal evolution in organisms inhabiting urban areas has rarely been studied. We tested for evolution of a higher heat tolerance (CTMAX) in urban populations of the water flea Daphnia magna, a keystone grazer in freshwater ecosystems, by carrying out a common garden experiment at two temperatures (20 degrees C and 24 degrees C) with genotypes of 13 natural populations ordered along a well-defined urbanization gradient. We also assessed body size and haemoglobin concentration to identify underlying physiological drivers of responses in CTMAX. We found a higher CTMAX in animals isolated from urban compared to rural habitats and in animals reared at higher temperatures. We also observed substantial genetic variation in thermal tolerance within populations. Overall, smaller animals were more heat tolerant. While urban animals mature at smaller size, the effect of urbanization on thermal tolerance is only in part caused by reductions in body size. Although urban Daphnia contained higher concentrations of haemoglobin, this did not contribute to their higher CTMAX. Our results provide evidence of adaptive thermal evolution to urbanization in the water flea Daphnia. In addition, our results show both evolutionary potential and adaptive plasticity in rural as well as urban Daphnia populations, facilitating responses to warming. Given the important ecological role of Daphnia in ponds and lakes, these adaptive responses likely impact food web dynamics, top-down control of algae, water quality, and the socio-economic value of urban ponds.
引用
收藏
页码:5218 / 5227
页数:10
相关论文
共 88 条
[21]   ZOOPLANKTON COMPETITION AND PREDATION - EXPERIMENTAL TEST OF SIZE-EFFICIENCY HYPOTHESIS [J].
DODSON, SI .
ECOLOGY, 1974, 55 (03) :605-613
[22]   Adaptive evolution in urban ecosystems [J].
Donihue, Colin M. ;
Lambert, Max R. .
AMBIO, 2015, 44 (03) :194-203
[23]   Urban warming favours C4 plants in temperate European cities [J].
Duffy, Grant A. ;
Chown, Steven L. .
JOURNAL OF ECOLOGY, 2016, 104 (06) :1618-1626
[24]   DRY WEIGHT ESTIMATE OF BIOMASS IN A SELECTION OF CLADOCERA, COPEPODA AND ROTIFERA FROM PLANKTON, PERIPHYTON AND BENTHOS OF CONTINENTAL WATERS [J].
DUMONT, HJ ;
VANDEVELDE, I ;
DUMONT, S .
OECOLOGIA, 1975, 19 (01) :75-97
[25]   Heat-shock proteins, molecular chaperones, and the stress response: Evolutionary and ecological physiology [J].
Feder, ME ;
Hofmann, GE .
ANNUAL REVIEW OF PHYSIOLOGY, 1999, 61 :243-282
[26]   Rapid evolution of thermal tolerance in the water flea Daphnia [J].
Geerts, A. N. ;
Vanoverbeke, J. ;
Vanschoenwinkel, B. ;
Van Doorslaer, W. ;
Feuchtmayr, H. ;
Atkinson, D. ;
Moss, B. ;
Davidson, T. A. ;
Sayer, C. D. ;
De Meester, L. .
NATURE CLIMATE CHANGE, 2015, 5 (07) :665-+
[27]  
Geerts AN, 2014, EVOL ECOL RES, V16, P517
[28]   Adaptive versus non-adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments [J].
Ghalambor, C. K. ;
McKay, J. K. ;
Carroll, S. P. ;
Reznick, D. N. .
FUNCTIONAL ECOLOGY, 2007, 21 (03) :394-407
[29]  
Gianuca A. T., 2016, P ROYAL SOC B, V283, P1
[30]  
Grace J.B., 2005, Bulletin of the Ecological Society of America, V86, P283, DOI [DOI 10.1890/0012-9623(2005)86[283:ITRFMR]2.0.CO