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东太平洋热带海域中的中层珊瑚生态系统:当前的知识状况及其深度边界的空间变异性。

Mesophotic Coral Ecosystems in the Eastern Tropical Pacific: The current state of knowledge and the spatial variability of their depth boundaries.

机构信息

Centro Interdisciplinario de Investigación para el Desarrollo Integral Regional (CIIDIR), Unidad Oaxaca, Instituto Politécnico Nacional, Calle de Hornos 1003, Sta. Cruz Xoxocotlán, Oaxaca, Mexico.

CCMAR - Center of Marine Sciences, University of Algarve, Campus Gambelas, 8005-139 Faro, Portugal.

出版信息

Sci Total Environ. 2022 Feb 1;806(Pt 2):150576. doi: 10.1016/j.scitotenv.2021.150576. Epub 2021 Sep 25.

Abstract

In the Eastern Tropical Pacific (ETP), Mesophotic Coral Ecosystems (MCEs) are limited by oceanographic conditions and are thought to be mostly absent. However, considering the currently discussed more flexible approach to define mesophotic boundaries, based on light availability, we performed a systematic search to assess their current state of knowledge. Using MODIS-Aqua satellite data (Kd), we calculated the mesophotic boundaries in the ETP, based on optical depths, and performed a bibliographic search of studies carried out at those depths, including those present in turbid waters with Kd values up to 0.2 m. Seventy-seven papers on MCEs research were compiled in this review, recording a total of 138 species. The studies focus almost exclusively on taxonomy, ecosystem function, and reviews, indicating the need for future research regarding aspects, such as structuring environmental variables, molecular ecology, and natural resource management. Furthermore, remote sensing data show that there exists a high spatial variability of water transparency in the ETP, resulting in significant differences in Kd between oceanic and continental locations, mostly related to the occurrence of seasonal upwelling in the latter. Based on Kd, we estimated the mesophotic depth boundaries (z, z, z) for specific locations within the ETP and found that MCEs can potentially occur as shallow as 13-15 m in coastal regions. Also, we compared the calculated boundaries with the respective deepest records of light-dependent corals. With one exception, the presence of the corals was restricted to the upper mesophotic subzone (z-z), which agrees with reports for other regions, showing that light availability is one of the main drivers for the bathymetric distribution of MCEs and can be used as a first approach to identify their potential presence, though other local factors (e.g., geomorphology, temperature, internal waves) should also be considered, as they can cause shifts in depth limits.

摘要

在东热带太平洋(ETP),中光层珊瑚生态系统(MCE)受到海洋条件的限制,据认为主要不存在。然而,考虑到目前正在讨论的基于光可用性来更灵活地定义中光界限的方法,我们进行了系统搜索,以评估其当前的知识状态。我们使用 MODIS-Aqua 卫星数据(Kd),根据光学深度计算了 ETP 中的中光界限,并对在这些深度进行的研究进行了文献搜索,包括在 Kd 值高达 0.2 m 的混浊水域中进行的研究。在本次综述中,共汇编了 77 篇关于 MCE 研究的论文,记录了总共 138 个物种。这些研究几乎完全集中在分类学、生态系统功能和综述上,表明需要在结构环境变量、分子生态学和自然资源管理等方面开展未来的研究。此外,遥感数据表明 ETP 中存在很高的水透明度空间变异性,导致海洋和大陆位置之间的 Kd 值存在显著差异,这主要与后者季节性上升流的发生有关。根据 Kd,我们估算了 ETP 内特定地点的中光深度界限(z、z、z),发现 MCE 可能在沿海地区浅至 13-15 m 处出现。我们还将计算出的界限与光依赖珊瑚的相应最深记录进行了比较。除了一个例外,珊瑚的存在都局限在上中光亚区(z-z),这与其他地区的报告一致,表明光可用性是 MCE 水深分布的主要驱动因素之一,可用于初步确定其潜在存在,但还应考虑其他当地因素(例如,地形、温度、内波),因为它们可能导致深度限制发生变化。

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