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Global warming assessment suggests the endemic Brazilian kelp beds to be an endangered ecosystem

机译:全球变暖评估表明,人群巴西海带床是濒危生态系统

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摘要

Kelps are canopy-forming brown seaweed sustaining critical ecosystem services in coastal habitats, including shelter, nursery grounds, and providing food resources to a myriad of associated species. This study modeled the fundamental niche of Laminaria abyssalis along the Brazilian continental margin, an endemic species of the South Atlantic, to anticipate potential distributional range shifts under two contrasting scenarios of future environmental changes (RCP2.6 and RCP8.5). The model for fundamental niche predictions considering the "present scenario" has shown a wider potential area than the realized niche (i.e., the area where the species actually occurs) along the Brazilian coast. In both future scenarios, the models have shown niche erosion on the northern portion of the Brazilian coast and niche gains towards the south. In both scenarios, L. abyssalis populations tend to shift to deeper regions of the reef. The restricted range of occurrence (33,000 km2), intense anthropic activities along these beds (e.g., trawling fisheries, oil/gas mining, or removal for agricultural purposes) acting synergically with global warming, may drive this ecosystem to collapse faster than kelp species' ability to adapt. We propose to classify L. abyssalis as Endangered - (EN) under IUCN criteria, and highlight that long-term monitoring of kelp beds is an urgent need to develop effective conservation initiatives to protect such rare and invaluable ecosystem.
机译:Kelps是沿海栖息地的形成棕色海藻维持关键生态系统服务,包括庇护,苗圃,并为无数相关物种提供食物资源。本研究模拟了Laminaria Abyssalis的基础利基,沿着巴西大陆,南大西洋的特点,预期在未来环境变化的两个对比情况下的潜在分布范围(RCP2.6和RCP8.5)。考虑到“当前场景”的基本利基预测模型显示出比在巴西海岸沿着巴西海岸的实现的利基(即,物种实际发生的区域)更广泛的潜在区域。在两个未来的情景中,模型在巴西海岸的北部和利基朝向南方的利基侵蚀。在这两种情况下,L. Abyssalis群体往往会转向珊瑚礁的更深层次。横幅发生(33,000平方公里),沿着这些床的强烈的人类活动(例如,拖网渔业,石油/煤气开采或用于农业目的的删除)和全球变暖协同作用,可能会使这种生态系统崩溃比海藻物种更快适应能力。我们建议将L. Abyssalis分类为IUCN标准下的濒危 - (en),并强调海带床的长期监测是一种迫切需要制定有效的保护措施,以保护此类珍稀和宝贵的生态系统。

著录项

  • 来源
    《Marine Environmental Research》 |2021年第6期|105307.1-105307.9|共9页
  • 作者单位

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

    Univ Algarve Ctr Marine Sci CCMAR Campus Gambelas P-8005139 Faro Portugal;

    Univ Fed Santa Catarina Dept Bot Lab Ficol BR-88040970 Florianopolis SC Brazil;

    Univ Algarve Ctr Marine Sci CCMAR Campus Gambelas P-8005139 Faro Portugal;

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

    Calif Acad Sci Ichthyol Sect San Francisco CA 94118 USA;

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog Benth Ecol Grp BR-29075910 Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog Benth Ecol Grp BR-29075910 Vitoria ES Brazil;

    Univ Fed Santa Catarina Dept Bot Lab Ficol BR-88040970 Florianopolis SC Brazil;

    Univ Fed Espirito Santo Dept Oceanog Lab Oceanog BR-29075910 Vitoria ES Brazil;

    Univ Fed Espirito Santo Dept Oceanog Lab Ichthyol BR-29075910 Vitoria ES Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anthropocene; Global warming; Conservation; Endemic species; Endangered species; Laminariales; Niche modeling;

    机译:人类;全球变暖;保护;流动性物种;濒危物种;层间;利基造型;

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