墨西哥金塔纳罗奥州沙质海滩马尾藻(马尾藻科,Phaeophyceae)搁浅的时间特征:对沿海生态系统和管理的生态学影响

Erika Vázquez-Delfín, Daniel Robledo, Yolanda Freile-Pelegrín
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摘要

在墨西哥加勒比海地区,马尾藻事件的规模和不协调的努力使其难以实现成功管理。本研究通过 18 个月(2018-2019 年)的监测,有助于了解金塔纳罗奥州莫雷洛斯港沙滩上马尾藻堆积的动态。在整个研究期间,记录了马尾藻搁浅数量和物种组成(包括全水层和底栖海洋大型植物)的时间变化,其中 2019 年 5 月的生物量最高(干重为 12.6 ± 3.7 kg m-2)。研究地点发现了 9 个马尾藻类群、3 个海草类群和 6 个其他底栖大型藻类群,其相对丰度随时间变化。这里首次报告了墨西哥加勒比海的马尾藻物种 S. pteropleuron;讨论了与其分布范围有关的影响。报告中还包括对全层马尾藻和底栖马尾藻分类群的详细分类说明。在研究期间的大部分时间(18 个月中的 15 个月),全层马尾藻大量繁殖(占总新鲜生物量的 53.2-99.4%),除此之外,海草也是搁浅鱼类的重要组成部分,尤其是在寒冷季节(占总新鲜生物量的 76-100%)。讨论了搁浅物中物种组成及其丰度变化对沿岸生态系统的生态影响。在制定可持续管理和促进沿海生态系统保护时,必须考虑这一基线信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temporal Characterization of Sargassum (Sargassaceae, Phaeophyceae) Strandings in a Sandy Beach of Quintana Roo, Mexico: Ecological Implications for Coastal Ecosystems and Management

Temporal Characterization of Sargassum (Sargassaceae, Phaeophyceae) Strandings in a Sandy Beach of Quintana Roo, Mexico: Ecological Implications for Coastal Ecosystems and Management

In the Mexican Caribbean, the magnitude of the Sargassum events and the uncoordinated efforts have made it difficult to achieve successful management. This study contributes to understanding the dynamics of the Sargassum accumulations on a sandy beach in Puerto Morelos, Quintana Roo, through monitoring for 18 months (2018–2019). Temporal changes in the abundance of strandings and species composition (including holopelagic and benthic marine macrophytes) were recorded throughout the study period, with the highest biomass in May 2019 (12.6 ± 3.7 kg m− 2 of dry weight). Nine taxa of Sargassum, three seagrasses, and six taxa of other benthic macroalgae were found at the study site, whose relative abundances changed throughout time. The species S. pteropleuron is reported here for the first time in the Mexican Caribbean; the implications related to its distribution range are discussed. Detailed taxonomic descriptions of holopelagic and benthic Sargassum taxa are included. In addition to massive accumulations of holopelagic Sargassum (53.2–99.4% of the total fresh biomass) for most of the study period (15 of the 18 months), seagrasses were an important component in the strandings, especially during the cold season (reaching up to 76–100% of the total fresh biomass). The ecological implications of changes in species composition and their abundance in the strandings are discussed for coastal ecosystems. This baseline information must be considered to develop sustainable management and promote the conservation of coastal ecosystems.

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