首页> 外文期刊>Science of the total environment >Drought, axe and goats. More variable and synchronized growth forecasts worsening dieback in Moroccan Atlas cedar forests
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Drought, axe and goats. More variable and synchronized growth forecasts worsening dieback in Moroccan Atlas cedar forests

机译:干旱,斧头和山羊。更具变量和同步的增长预测在摩洛哥地图集雪松森林中恶化了死刑

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摘要

Understanding how climate warming and land-use changes determine the vulnerability of forests to drought is critical. However, we still lack: (ⅰ) robust quantifications of long-term growth changes during aridification processes, (ⅱ) links between growth decline, changes in forest cover, stand structure and soil conditions, and (ⅲ) forecasts of growth variability to projected climate warming. We investigated tree-ring records over the past 400-700 years, quantified changes in grazing area and forest cover during the 20th century, sampled current stand structure, and analyzed soil organic carbon δ~(13)C and total nitrogen δ~(15)N of Atlas cedar (Cedrus atlantica (Endl.) Manetti ex Carriere) Moroccan forests to characterize their dieback. Atlas cedar forests experienced massive dieback after the 1970s, particularly in the xeric High Atlas region. Forest cover increased in the less xeric regions (Middle Atlas and Rif) by almost 20%, while it decreased about 18% in the High Atlas, where soil δ~(13)C and δ~(15)N showed evidences of grazing. Growth declined and became more variable in response to recent droughts. The relative growth reduction (54%) was higher in the Middle Atlas than elsewhere (Rif, 32%; High Atlas, 36%). Growth synchrony between forests located within the Middle and High Atlas regions increased after the 1970s. Simulations based on a worst-case emission scenario and rapid wanning forecast a stronger limitation of growth by low soil moisture in all regions, but particularly in the Middle Atlas and after the mid-21st century. Climate warming is expected to strengthen growth synchronization preceding dieback of conifer forests in xeric regions. The likelihood of similar dieback episodes is further exacerbated by historical degradation of these forests.
机译:了解气候变暖和土地利用变化如何确定森林对干旱的脆弱性至关重要。但是,我们仍然缺乏:(Ⅰ)在加剧过程中长期生长变化的鲁棒量化,(Ⅱ)生长下降,森林覆盖,实体结构和土壤条件的变化,以及(Ⅲ)预测的增长变化预测气候变暖。我们在过去400-700年中调查了树木记录,在20世纪,采样电流站结构中的放牧区和森林覆盖量的量化变化,分析了土壤有机碳δ〜(13)C和总氮δ〜(15 )N的阿特拉斯·雪松(Cedrus atlantica(Endl。)Manetti excariere)摩洛哥森林来表征他们的重婚。在20世纪70年代之后,阿特拉斯雪松森林经历了大规模的罪怀,特别是在Xeric High Atlas地区。森林覆盖在较少的Xeric地区(中,地图集和RIF)增加了近20%,而在高地图集下降约18%,其中土壤δ〜(13)C和δ〜(15)n表示放牧的证据。增长下降并对最近的干旱反应变得更加变化。中间地图集的相对生长(54%)比其他地方(RIF,32%;高阿特拉斯,36%)更高。 20世纪70年代之后,位于中高地图集地区内的森林之间的增长同步增加。基于最坏情况的排放场景和快速运营的模拟预测所有地区的低土壤水分增长的更强限制,但特别是在21世纪中期和21世纪中期之后。预计气候变暖将加强XERICER森林的死刑前面的生长同步。通过这些森林的历史降解进一步加剧了类似的黑反返剧集的可能性。

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  • 来源
    《Science of the total environment》 |2021年第15期|142752.1-142752.12|共12页
  • 作者单位

    Instituto Pirenaico de Ecologia (IPE-CSIC) Avenida Montanana 1005 50059 Zaragoza Spain;

    Instituto Pirenaico de Ecologia (IPE-CSIC) Avenida Montanana 1005 50059 Zaragoza Spain Departamento de Sistemas Fisicos Quimicos y Naturales Universidad Pablo de Olavide Carretera de Utrera km 1 41013 Sevilla Spain;

    EiFAB-iuFOR Universidad de Valladolid Campus Duques de Soria s/n 42004 Sana Spain;

    Departamento de Biologia Animal Vegetal y Ecologia Universidad de Jaen 23071 Jaen Spain;

    Departamento de Biologia Animal Vegetal y Ecologia Universidad de Jaen 23071 Jaen Spain;

    Departamento de Sistemas Fisicos Quimicos y Naturales Universidad Pablo de Olavide Carretera de Utrera km 1 41013 Sevilla Spain;

    Faculte des Sciences Universite Abdelmalek Essaadi Mhannech Ⅱ. 93002 B.P 212111 Tetouan Morocco;

    Departamento de Biologia Animal Vegetal y Ecologia Universidad de Jaen 23071 Jaen Spain;

    Departamento de Sistemas Fisicos Quimicos y Naturales Universidad Pablo de Olavide Carretera de Utrera km 1 41013 Sevilla Spain;

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

    Cedrus atlantica; Dendroecology; Early-warning signals; Forest dieback; Growth synchrony; Process-based model;

    机译:Cedrus atlantica;dendroecology;预警信号;森林死刑;生长同步;基于过程的模型;

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