Physiological mechanisms underlying animal social behaviour Introduction

被引:37
|
作者
Seebacher, Frank [1 ]
Krause, Jens [2 ,3 ]
机构
[1] Univ Sydney, Sch Life & Environm Sci A08, Sydney, NSW 2006, Australia
[2] Leibniz Inst Freshwater Ecol & Inland Fisheries, Dept Biol & Ecol Fishes, Muggelseedamm 310, D-12587 Berlin, Germany
[3] Humboldt Univ, Fac Life Sci, Invalidenstr 42, D-10115 Berlin, Germany
基金
澳大利亚研究理事会;
关键词
fission-fusion; glucocorticoids; locomotion; metabolism; neuroendocrine systems; sociality; TINBERGENS; 4; QUESTIONS; OPTIMAL GROUP-SIZE; EUROPEAN SEA BASS; SKELETAL-MUSCLE; SPATIAL POSITION; SWIMMING SPEED; PACIFIC-OCEAN; CONSEQUENCES; COST; MOVEMENT;
D O I
10.1098/rstb.2016.0231
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Many species of animal live in groups, and the group represents the organizational level within which ecological and evolutionary processes occur. Understanding these processes, therefore, relies on knowledge of the mechanisms that permit or constrain group formation. We suggest that physiological capacities and differences in physiology between individuals modify fission-fusion dynamics. Differences between individuals in locomotor capacity and metabolism may lead to fission of groups and sorting of individuals into groups with similar physiological phenotypes. Environmental impacts such as hypoxia can influence maximum group sizes and structure in fish schools by altering access to oxygenated water. The nutritional environment determines group cohesion, and the increase in information collected by the group means that individuals should rely more on social information and form more cohesive groups in uncertain environments. Changing environmental contexts require rapid responses by individuals to maintain group coordination, which are mediated by neuroendocrine signalling systems such as nonapeptides and steroid hormones. Brain processing capacity may constrain social complexity by limiting information processing. Failure to evaluate socially relevant information correctly limits social interactions, which is seen, for example, in autism. Hence, functioning of a group relies to a large extent on the perception and appropriate processing of signals from conspecifics. Many if not all physiological systems are mechanistically linked, and therefore have synergistic effects on social behaviour. A challenge for the future lies in understanding these interactive effects, which will improve understanding of group dynamics, particularly in changing environments. This article is part of the themed issue 'Physiological determinants of social behaviour in animals'.
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页数:8
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