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首页> 外文期刊>Forest Ecology and Management >Effects of elevation-dependent climate warming on intra- and inter-specific growth synchrony in mixed mountain forests
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Effects of elevation-dependent climate warming on intra- and inter-specific growth synchrony in mixed mountain forests

机译:依赖依赖性气候变化对混合山林近外生长同步的影响

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摘要

Spruce-fir-beech mixed forests cover a large area in European mountain regions, with high ecological and socioeconomic importance. As elevation-zone systems they are highly affected by climate change, which is modifying species growth patterns and productivity shifts among species. The extent to which associated tree species can access resources and grow asynchronously may affect their resistance and persistence under climate change. Intra-specific synchrony in annual tree growth is a good indicator of species specific dependence on environmental conditions variability. However, little attention has been paid to explore the role of the inter-specific growth asynchrony in the adaptation of mixed forests to climate change. Here we used a database of 1790 treering series collected from 28 experimental plots in spruce-fir-beech mixed forests across Europe to explore how spatio-temporal patterns of the intra- and inter-specific growth synchrony relate to climate variation during the past century. We further examined whether synchrony in growth response to inter-annual environmental fluctuations depended on site conditions. We found that the inter-specific growth synchrony was always lower than the intra-specific synchrony, for both high (inter-annual fluctuations) and low frequency (mid- to long-term) growth variation, suggesting between species niche complementarity at both temporal levels. Intra- and inter -specific synchronies in inter-annual growth fluctuations significantly changed along elevation, being greater at higher elevations. Moreover, the climate warming likely induced temporal changes in synchrony, but the effect varied along the elevation gradient. The synchrony strongly intensified at lower elevations likely due to climate warming and drying conditions. Our results suggest that intra- and inter-specific growth synchrony can be used as an indicator of temporal niche complementarity among species. We conclude that spruce-fir-beech mixtures should be preferred against mono-specific forests to buffer climate change impacts in mountain regions.
机译:云杉-冷杉-山毛榉混交林在欧洲山区覆盖面积大,具有很高的生态和社会经济重要性。作为海拔带系统,它们受到气候变化的高度影响,气候变化正在改变物种的生长模式和物种间的生产力变化。相关树种获取资源和异步生长的程度可能会影响它们在气候变化下的抵抗力和持久性。年度树木生长的种内同步性是物种对环境条件变异依赖性的良好指标。然而,关于种间生长不同步性在混交林适应气候变化中的作用的研究却很少。在这里,我们使用了从欧洲各地的28个云杉-冷杉-山毛榉混交林试验地收集的1790个树木系列的数据库,以探索过去一个世纪内种内和种间生长同步的时空模式与气候变化的关系。我们进一步研究了生长对年际环境波动响应的同步性是否取决于场地条件。我们发现,对于高(年际波动)和低频率(中长期)的生长变化,种间生长同步性总是低于种内同步性,这表明在两个时间水平上物种间生态位互补。种内和种间生长波动的同步性随海拔高度显著变化,在海拔较高时更大。此外,气候变暖可能导致同步性的时间变化,但其影响随海拔梯度而变化。由于气候变暖和干燥条件,低海拔地区的同步性强烈增强。我们的结果表明,种内和种间生长同步性可以作为物种间时间生态位互补性的指标。我们得出结论,云杉-冷杉-山毛榉混交林应优先于单一特定森林,以缓冲山区气候变化的影响。

著录项

  • 来源
    《Forest Ecology and Management 》 |2021年第1期| 共10页
  • 作者单位

    INIA Forest Res Ctr Crta La Coruna Km 7 5 Madrid 28040 Spain;

    INIA Forest Res Ctr Crta La Coruna Km 7 5 Madrid 28040 Spain;

    Tech Univ Munich Sch Life Sci Weihenstephan Chair Forest Growth &

    Yield Sci Hans Carl Von Carlowitz Pl 2 D-85354 Freising Weihenstephan Germany;

    Joint Res Unit CTFC AGROTECNIO Av Alcalde Rovira Roure 191 E-25198 Lleida Spain;

    Univ Sarajevo Fac Forestry Chair Forest Management &

    Urban Greenery Zagrebacka 20 Sarajevo 71000 Bosnia &

    Herceg;

    Bavarian State Inst Forestry LWF Hans Carl von Carlowitz Pl 1 D-85354 Freising Weihenstephan Germany;

    Tech Univ Zvolen Fac Forestry Zvolen Slovakia;

    Czech Univ Life Sci Prague Fac Forestry &

    Wood Sci Kamycka 129 Prague 16521 6 Czech Republic;

    Snow &

    Landscape Res WSL Swiss Fed Inst Forest Zurcherstr 111 CH-8903 Birmensdorf Switzerland;

    Univ Sarajevo Chair Forest Utilizat Fac Forestry Project Design &

    Construct Forestry &

    Urban Green Zagrebaka 20 Sarajevo 71000 Bosnia &

    Herceg;

    Univ Sarajevo Fac Forestry Chair Forest Management &

    Urban Greenery Zagrebacka 20 Sarajevo 71000 Bosnia &

    Herceg;

    Swiss Fed Inst Technol Dept Environm Syst Sci Forest Ecol Zurich Switzerland;

    Swiss Fed Inst Technol Dept Environm Syst Sci Forest Ecol Zurich Switzerland;

    Univ Ljubljana Biotech Fac Dept Forestry &

    Renewable Forest Resources Vecna Pot 83 Ljubljana 1000 Slovenia;

    Forest Res Inst Zvolen Natl Forest Ctr TG Masaryka 22 Zvolen 96001 Slovakia;

    Tech Univ Munich Sch Life Sci Weihenstephan Chair Forest Growth &

    Yield Sci Hans Carl Von Carlowitz Pl 2 D-85354 Freising Weihenstephan Germany;

    Univ Belgrade Fac Forestry Kneza Viseslava 1 Belgrade 11030 Serbia;

    Univ Novi Sad Inst Lowland Forestry &

    Environm Antona Cehova 13 Novi Sad 21000 Serbia;

    Tech Univ Munich Sch Life Sci Weihenstephan Chair Forest Growth &

    Yield Sci Hans Carl Von Carlowitz Pl 2 D-85354 Freising Weihenstephan Germany;

    Bulgarian Acad Sci Inst Biodivers &

    Ecosyst Res 2 Gagarin St Sofia 1113 Bulgaria;

    Univ Molise Dipartimento Agr Ambiente &

    Alimenti Via Francesco De Sanctis I-86100 Campobasso Italy;

    Tech Univ Munich Sch Life Sci Weihenstephan Chair Forest Growth &

    Yield Sci Hans Carl Von Carlowitz Pl 2 D-85354 Freising Weihenstephan Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业 ;
  • 关键词

    Species asynchrony; Tree ring; Growth variation; Climate change;

    机译:物种异步性;树木年轮;生长变异;气候变化;

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