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Environmental constraints upon locomotion and predator–prey interactions in aquatic organisms: an introduction

机译:对水生生物的运动和捕食者与猎物相互作用的环境限制:简介

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摘要

Environmental constraints in aquatic habitats have become topics of concern to both the scientific community and the public at large. In particular, coastal and freshwater habitats are subject to dramatic variability in various environmental factors, as a result of both natural and anthropogenic processes. The protection and sustainable management of all aquatic habitats requires greater understanding of how environmental constraints influence aquatic organisms. Locomotion and predator–prey interactions are intimately linked and fundamental to the survival of mobile aquatic organisms. This paper summarizes the main points from the review and research articles which comprise the theme issue ‘Environmental constraints upon locomotion and predator–prey interactions in aquatic organisms’. The articles explore how natural and anthropogenic factors can constrain these two fundamental activities in a diverse range of organisms from phytoplankton to marine mammals. Some major environmental constraints derive from the intrinsic properties of the fluid and are mechanical in nature, such as viscosity and flow regime. Other constraints derive from direct effects of factors, such as temperature, oxygen content of the water or turbidity, upon the mechanisms underlying the performance of locomotion and predator–prey interactions. The effect of these factors on performance at the tissue and organ level is reflected in constraints upon performance of the whole organism. All these constraints can influence behaviour. Ultimately, they can have an impact on ecological performance. One issue that requires particular attention is how factors such as temperature and oxygen can exert different constraints on the physiology and behaviour of different taxa and the ecological implications of this. Given the multiplicity of constraints, the complexity of their interactions, and the variety of biological levels at which they can act, there is a clear need for integration between the fields of physiology, biomechanics, behaviour, ecology, biological modelling and evolution in both laboratory and field studies. For studies on animals in their natural environment, further technological advances are required to allow investigation of how the prevailing physico-chemical conditions influence basic physiological processes and behaviour.
机译:水生生境中的环境限制已成为科学界和整个公众关注的话题。特别地,由于自然和人为过程,沿海和淡水生境在各种环境因素中都存在巨大的变化。对所有水生生境的保护和可持续管理要求对环境限制如何影响水生生物有更多的了解。运动和捕食者与猎物之间的相互作用是紧密联系的,并且是流动水生生物生存的基础。本文总结了综述和研究文章的要点,这些文章包括主题问题“水生生物的运动和捕食者与猎物之间的相互作用的环境约束”。文章探讨了自然因素和人为因素如何限制从浮游植物到海洋哺乳动物的多种生物中的这两种基本活动。一些主要的环境限制条件是从流体的固有属性得出的,并且本质上是机械的,例如粘度和流动状态。其他约束条件还来自温度,水中的氧气含量或浊度等因素对运动和捕食者与猎物相互作用基础机制的直接影响。这些因素在组织和器官水平上的性能影响反映在整个生物体性能的限制上。所有这些限制都会影响行为。最终,它们会对生态绩效产生影响。需要特别关注的一个问题是温度和氧气等因素如何对不同分类单元的生理和行为以及生态学意义施加不同的限制。考虑到约束的多样性,它们之间相互作用的复杂性以及它们可以发挥作用的多种生物学水平,两个实验室的生理学,生物力学,行为,生态学,生物学建模和进化领域之间显然需要整合和实地研究。为了研究自然环境中的动物,需要进一步的技术进步以允许调查主要的物理化学条件如何影响基本的生理过程和行为。

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