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Growing at the limit: Reef growth sensitivity to climate and oceanographic changes in the South Western Atlantic

机译:在极限中生长:珊瑚礁增长敏感性南西大西洋地区的气候和海洋变化

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摘要

Whilst the impacts of climatic and oceanographic change on lower latitude reefs are increasingly well documented, our understanding of how reef-building has fluctuated in higher latitude settings remains limited. Here, we explore the timing and longevity of reef-building through the mid- to late Holocene in the most southerly known reef (24 degrees S) in the Western Atlantic. Reef core data show that reef growth was driven by a single coral species, Madracis decactis, and occurred over two phases since similar to 6000 calibrated (cal.) yr B.P.. These records further indicate that there was a clear growth hiatus from similar to 5500 to 2500 cal. yr B.P., and that there is no evidence of reef accretion on the Queimada Grande Reef (QGR) over the past 2000 yrs. It thus presently exists as a submerged senescent structure colonized largely by non-reef building organisms. Integration of these growth data with those from sites further north (18 degrees S and 21 degrees S) suggests that Intertropical Convergence Zone (ITCZ), South Westerlies Winds (SWW) and El Nino-Southern Oscillation (ENSO) variability and shifts during the Holocene drove changes in the position of the Brazil-Falklands/Malvinas Confluence (BFMC), and that this has had a strong regional influence on the timing and longevity of reef growth. Our results add new evidence to the idea that reef growth in marginal settings can rapidly turn-on or -off according to regional environmental changes, and thus are of relevance for predicting high latitude reef growth potential under climate change.
机译:虽然气候和海洋摄影变化对下纬度珊瑚礁的影响越来越好,但我们对Reef-Building如何在更高纬度环境中波动的理解仍然有限。在这里,我们探讨了珊瑚礁建设的时序和长寿在西部大西洋最令人着名的珊瑚礁(24摄氏度)中期的中期全新世。 Reef核心数据显示,珊瑚礁的生长是由单个珊瑚物种,Madracis Defactis的驱动,并且在两个阶段发生,因为类似于6000次校准(Cal.)YR BP。这些记录进一步表明,与5500类似,中断增长率较明显到2500 cal。在过去的2000年的YRS中,B.P.,并没有证据表明Queimada Grande Reef(QGR)上的珊瑚礁射流。因此,目前存在于基于非珊瑚礁建筑物的浸没衰老结构。将这些增长数据与网站进一步纳入北方(18摄氏度和21摄氏度)的整合表明,闭路会聚区(ITCZ),南风风雨(SWW)和EL Nino-Southern振荡(ENSO)在全新世期间的变化和变化推动巴西 - 福克兰斯/马尔维纳斯汇合(BFMC)的地位的变化,这对珊瑚礁增长的时间和长寿具有强烈的区域影响。我们的成果为边际环境中的珊瑚礁增长增加了新的证据,可以根据区域环境变化快速打开或-off,从而有关预测气候变化下的高纬度珊瑚礁增长潜力有关。

著录项

  • 来源
    《Global and planetary change》 |2021年第6期|103479.1-103479.11|共11页
  • 作者单位

    Univ Fed Sao Paulo Inst Mar Lab Ecol & Conservacao Marinha Rua Dr Carvalho Mendonca 144 BR-110070 Santos SP Brazil;

    Univ Fed Sao Paulo Inst Mar Lab Ecol & Conservacao Marinha Rua Dr Carvalho Mendonca 144 BR-110070 Santos SP Brazil;

    Univ Exeter Coll Life & Environm Sci Geog Exeter Devon England;

    Univ Fed Sao Paulo Inst Mar Lab Ecol & Conservacao Marinha Rua Dr Carvalho Mendonca 144 BR-110070 Santos SP Brazil;

    Univ Fed Sao Paulo Inst Mar Lab Ecol & Conservacao Marinha Rua Dr Carvalho Mendonca 144 BR-110070 Santos SP Brazil;

    Univ Sao Paulo Inst Geociencias Rua Lago 562 BR-05508080 Sao Paulo Brazil;

    Univ Fed Espirito Santo UFES Dept Oceanog & Ecol BR-29075910 Vitoria ES Brazil;

    Univ Sao Paulo Inst Geociencias Rua Lago 562 BR-05508080 Sao Paulo Brazil;

    Univ Fed Sao Paulo Inst Mar Lab Ecol & Conservacao Marinha Rua Dr Carvalho Mendonca 144 BR-110070 Santos SP Brazil;

    Univ Sao Paulo Inst Oceanog Praca Oceanog 191 BR-05508120 Sao Paulo Brazil;

    Univ Bremen Fac Geosci Leobener Str 8 D-28359 Bremen Germany|Univ Bremen MARUM Ctr Marine Environm Sci Leobener Str 8 D-28359 Bremen Germany;

    Univ Fed Rio de Janeiro Inst Biol Rio De Janeiro Brazil|Univ Fed Rio de Janeiro SAGE COPPE Rio De Janeiro Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marginal reefs; Climate change; Subtropical reef; Reef accretion; South Atlantic;

    机译:边缘珊瑚礁;气候变化;亚热带礁;礁石射流;南大西洋;

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