Osovitz Christopher J, Hofmann Gretchen E
Department of Ecology, Evolution, and Marine Biology, University of California, Santa Barbara, CA 93106-9610, USA.
Comp Biochem Physiol A Mol Integr Physiol. 2007 Aug;147(4):821-7. doi: 10.1016/j.cbpa.2007.02.012. Epub 2007 Feb 20.
A new approach toward understanding marine ecosystems has emerged through the integration of ecological physiology and macroecology. This multidisciplinary approach, titled here marine macrophysiology, facilitates unique insight into the foundation of macro-scale ecological patterns, such as biogeographic distributions, via examination of functional attributes of marine organisms across large spatial scales. For example, these broad-scale physiological inquiries confer the ability to directly assess the abundant-center hypothesis (aka Brown's principle) which proposes that species have decreased performance toward their range edges. By extension, the marine macrophysiological perspective also stands to clarify our understanding of more complex macro-scale phenomena such as biological invasions, the design of marine protected areas, and species' responses to global climate change. In this article, we review recent marine macrophysiology research and offer insights into future directions for this emerging field.
通过整合生态生理学和宏观生态学,出现了一种理解海洋生态系统的新方法。这种多学科方法,在这里称为海洋宏观生理学,通过在大空间尺度上检查海洋生物的功能属性,有助于对宏观尺度生态模式的基础,如生物地理分布,获得独特的见解。例如,这些广泛的生理探究赋予了直接评估丰度中心假说(又称布朗原理)的能力,该假说认为物种在其分布范围边缘的表现会下降。由此延伸,海洋宏观生理学的观点也有助于澄清我们对更复杂的宏观尺度现象的理解,如生物入侵、海洋保护区的设计以及物种对全球气候变化的反应。在本文中,我们回顾了最近的海洋宏观生理学研究,并对这个新兴领域的未来方向提供了见解。