食草性珊瑚礁鱼类与墨西哥热带太平洋珊瑚生态系统中的生境和物理化学变量之间的相互作用

Oceans Pub Date : 2024-01-04 DOI:10.3390/oceans5010002
Diana Morales-de-Anda, A. Cupul-Magaña, C. Aguilar-Betancourt, Gaspar González-Sansón, F. Rodríguez-Zaragoza, A. Rodríguez-Troncoso
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引用次数: 0

摘要

草食性鱼类可以调解藻类和珊瑚之间的空间竞争,这对珊瑚生态系统至关重要。然而,在像墨西哥热带太平洋(MTP)这样珊瑚覆盖范围有限的地区,人们对这种动态并不完全了解。本研究采用功能特征法和排序分析法,探讨了食草性珊瑚礁鱼群是否会影响底栖生物栖息地的组成部分,或者物理化学因素是否会决定墨西哥热带太平洋克利奥法斯和玛丽埃塔斯海岛系统的栖息地变化。我们分析了这种关系是否在不同系统间和随着时间的推移而持续存在,并确定了与生境变化相关的物种特征。克利奥法斯岛和玛丽埃塔斯岛之间的岛屿比较分析表明,食草性珊瑚礁鱼类和物理化学变量都塑造了栖息地。克利奥法斯有较大的移动性草食性鱼类,它们组成的群体主要与大型藻类覆盖有关。相反,对玛丽埃塔斯的时间分析表明,栖息地主要由物理化学变量决定,食草鱼类主要是与枝状珊瑚有关的小型养殖鱼类。值得注意的是,这些位置相近的岛屿系统呈现出不同的生态系统中介,受到鱼类特征和环境因素等不同驱动因素的影响。这项研究强调了采用生态物种特征框架与排序方法相结合的潜力,以揭示有助于多金属结核病区内珊瑚生态系统持续存在的不同地点动态。
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Herbivorous Reef Fish Interaction with the Habitat and Physicochemical Variables in Coral Ecosystems in the Mexican Tropical Pacific
Herbivorous fish can mediate spatial competition between algae and corals, which is crucial for coral ecosystems. However, in areas with limited coral coverage like the Mexican tropical Pacific (MTP), this dynamic is not fully understood. This study, using a functional trait approach and ordination analysis, explores whether herbivorous reef fish assemblage influences the benthic habitat components or if physicochemical factors define the habitat variability in the MTP’s Cleofas and Marietas insular systems. We analyzed if this relationship persisted across systems and over time, and identified species traits tied to habitat variability. Island comparison analyses between Cleofas and Marietas reveal that both herbivorous reef fish and physicochemical variables shape the habitat. Cleofas had larger mobile herbivorous fish that formed groups related mostly to macroalgae cover. In contrast, temporal analysis of Marietas shows that the habitat is primarily shaped by physicochemical variables with herbivorous fish being mainly small farmer species related to branching corals. Notably, these closely situated insular systems present varied ecosystem mediators, influenced by diverse drivers including fish traits and environmental factors. This study underscores the potential of employing a framework of ecological species traits combined with ordination methods to unravel the distinct site dynamics that contribute to the persistence of coral ecosystems within the MTP.
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