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自然保护区内红树林环境中土地利用对微量元素浓度和鸟类生物多样性的影响。

Land use effects in trace element concentrations and bird biodiversity in mangrove environments within a Natural Protected Area.

作者信息

Celis-Hernandez Omar, Canales-Delgadillo Julio César, Girón-García María Patricia, Ontiveros-Cuadras Jorge Feliciano, Ward Raymond D, Pérez-Ceballos Rosela Yazmin, Gómez-Ponce Mario A, Capparelli Mariana V, Merino-Ibarra Martín

机构信息

Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Estación el Carmen, Campeche, 24157, Ciudad del Carmen, Mexico; Dirección de Catedras CONAHCYT (SECIHTI), Av. Insurgentes Sur 1582, Alcaldía Benito Juárez, 03940, Ciudad de México, Mexico.

Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Estación el Carmen, Campeche, 24157, Ciudad del Carmen, Mexico; Dirección de Catedras CONAHCYT (SECIHTI), Av. Insurgentes Sur 1582, Alcaldía Benito Juárez, 03940, Ciudad de México, Mexico.

出版信息

Chemosphere. 2025 Jun;378:144396. doi: 10.1016/j.chemosphere.2025.144396. Epub 2025 Apr 10.

DOI:10.1016/j.chemosphere.2025.144396
PMID:40215874
Abstract

Land use change is widely recognized worldwide as the main cause of mangrove forest loss. These artificial changes can modify mangrove cover, species diversity and pollutant levels, thus leading to habitat destruction. The Natural Protected Area known as The Wildlife Protection Area Laguna de Terminos, Campeche, Mexico is an area where mangrove ecosystems have faced land use changes for urban development, oil industry and agriculture. To observe the negative effects caused by these changes a study was carried out between October 2021 and January 2022. In this study we combined geochemical tools (e.g. enrichment factor (EF), adverse effect index (AEI), pollution load index), proxies such as the Integral Connectivity Index (ICI) and the relative integrated anthropization Index (RIAI) with biological data and multivariate statistical analysis to provide novel integrative knowledge to quantify environmental quality in mangrove ecosystems which can be extrapolated to other coastal ecosystems. We evaluate the potential impacts caused in mangroves by urban development, oil and agricultural activities. The geochemical data showed the highest concentrations of Zn (820 mg kg), Cu (324 mg kg), Ni (431 mg kg), Pb (98 mg kg) and Cd (0.80 mg kg) in mangroves located in urban areas. The biological data highlighted that 44.5 % of bird species observed in this study could be indirectly exposed to trace elements due to their feeding habits. Mangroves influenced by oil industry activities exhibited the highest biodiversity with 24 species. Finally, the results revealed that urban development causes greater changes in mangrove cover, biodiversity, and trace element pollution in mangrove ecosystems than oil and agricultural activities, which is important information for land managers when thinking about zonation within protected urban mangrove ecosystems.

摘要

土地利用变化在全球范围内被广泛认为是红树林丧失的主要原因。这些人为变化会改变红树林覆盖面积、物种多样性和污染物水平,进而导致栖息地破坏。位于墨西哥坎佩切的拉古纳德特尔米诺斯野生动物保护区这一自然保护区,是红树林生态系统面临城市发展、石油工业和农业等土地利用变化的地区。为了观察这些变化所造成的负面影响,于2021年10月至2022年1月开展了一项研究。在本研究中,我们将地球化学工具(如富集因子(EF)、不利影响指数(AEI)、污染负荷指数)、诸如整体连通性指数(ICI)和相对综合人类活动指数(RIAI)等代理指标与生物数据及多元统计分析相结合,以提供新的综合知识来量化红树林生态系统中的环境质量,这些知识可外推至其他沿海生态系统。我们评估了城市发展、石油和农业活动对红树林造成的潜在影响。地球化学数据显示,城市地区的红树林中锌(820毫克/千克)、铜(324毫克/千克)、镍(431毫克/千克)、铅(98毫克/千克)和镉(0.80毫克/千克)的浓度最高。生物数据突出表明,在本研究中观察到的44.5%的鸟类物种可能因其觅食习性而间接接触到微量元素。受石油工业活动影响的红树林表现出最高的生物多样性,有24个物种。最后,结果表明,与石油和农业活动相比,城市发展对红树林生态系统中的红树林覆盖面积、生物多样性和微量元素污染造成的变化更大,这对于土地管理者在考虑受保护的城市红树林生态系统内的分区时是重要信息。

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