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鱼类觅食模式、对捕捞的脆弱性及其对跨尺度生态系统功能管理的意义。

Fish foraging patterns, vulnerability to fishing, and implications for the management of ecosystem function across scales.

机构信息

Australian Research Council Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, Queensland 4811, Australia.

出版信息

Ecol Appl. 2013 Oct;23(7):1632-44. doi: 10.1890/12-2031.1.

Abstract

The function of species has been recognized as critical for the maintenance of ecosystems within desired states. However, there are still considerable gaps in our knowledge of interspecific differences in the functional roles of organisms, particularly with regard to the spatial scales over which functional impact is exerted. This has implications for the delivery of function and the maintenance of ecosystem processes. In this study we assessed the allometric relationship between foraging movements and fish body length at three sites, for 20 species of herbivorous reef fishes within four different functional groups: browsers, farmers, grazer/ detritivores, and scraper/excavators. The relationship between vulnerability of species to fishing and their scale of foraging was also examined. We present empirical evidence of the strong, positive, log-linear relationship between the scale of foraging movement and fish body length. This relationship was consistent among sites and between the two different movement metrics used. Phylogeny did not affect these results. Functional groups foraged over contrasting ranges of spatial scales; for example, scraper/excavators performed their role over a wide range of scales, whereas browsers were represented by few species and operated over a narrow range of scales. Overfishing is likely not only to remove species operating at large scales, but also to remove the browser group as a whole. Large fishes typically have a significant role in removing algae on reefs, and browsers are key to controlling macroalgae and reversing shifts to macroalgal-dominated states. This vulnerability to exploitation has serious consequences for the ability of fish assemblages to deliver their functional role in the face of anthropogenic impacts. However, identification of the scales at which herbivorous fish assemblages are susceptible to fishing provides managers with critical knowledge to design management strategies to support coral-dominated reefs by maintaining function at the spatial scales at which vulnerable species operate.

摘要

物种的功能已被认为对维持期望状态下的生态系统至关重要。然而,我们对于生物种间功能作用的差异的认识仍然存在很大的差距,特别是在功能作用施加的空间尺度上。这对功能的实现和生态系统过程的维持都有影响。在这项研究中,我们在三个地点评估了 20 种草食性礁鱼的种间差异,这些鱼属于四个不同的功能组:食草者、耕者、食草/碎屑食者和刮食/挖掘者,评估了这些鱼类的觅食运动与其身体长度之间的比例关系,以及物种对捕捞的脆弱性与其觅食规模之间的关系。我们提供了物种觅食运动规模与其身体长度之间存在强烈、正对数线性关系的经验证据。这种关系在各个地点之间以及两种不同的运动指标之间都是一致的。系统发育对这些结果没有影响。不同的功能组在不同的空间尺度上觅食;例如,刮食/挖掘者在广泛的尺度上发挥作用,而食草者则由少数物种代表,并且在狭窄的尺度上运作。过度捕捞不仅可能去除在大尺度上运作的物种,而且可能去除整个食草者群体。大型鱼类通常在去除珊瑚礁上的藻类方面发挥重要作用,而食草者则是控制大型藻类和扭转向大型藻类为主的状态转变的关键。这种易受开发利用的影响,对鱼类群落在面对人为影响时发挥其功能作用的能力产生了严重后果。然而,确定草食性鱼类群落易受捕捞影响的尺度,为管理者提供了关键知识,以便通过在易受影响的物种运作的空间尺度上维持功能,来设计管理策略,以支持以珊瑚为主的珊瑚礁。

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