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Data from: Epiphyll specialization for leaf and forest successional stages in a tropical lowland rainforest
- 负责人:
- DOI:
- doi:10.5061/dryad.q83bk3jdh
- 摘要:
- ty patterns?by characterizing community change with leaf age in gaps and closed-forest habitats.?We asked:?1. Do?epiphylls show specialization for leaf and forest successional stages
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Data from: Using large-scale tropical dry forest restoration to test successional theory
- 负责人:
- DOI:
- doi:10.5061/dryad.jm63xsj6p
- 摘要:
- Microclimatic conditions change dramatically as forests age and impose strong filters on community assembly during succession. Light availability
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Data from: Substrate stoichiometry determines nitrogen fixation throughout succession in southern Chinese forests
- 负责人:
- 关键词:
- DOI:
- doi:10.5061/dryad.5dv41ns2r
- 摘要:
- e, we found unexpected increases in N fixation rates in the soil, forest floor, and moss throughout three successional forests and along six age-gradient fores
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Data from: Estimation of aboveground net primary productivity in secondary tropical dry forests using the Carnegie–Ames–Stanford approach (CASA
- 负责人:
- 关键词:
- DOI:
- doi:10.5061/dryad.3cf36
- 摘要:
- ), Costa Rica. We calculated ANPP using the CASA model (ANPPCASA) in three successional stages (early, intermediate, and late). Each stage has a stand age of 21
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Data from: Soil nutrients and dispersal limitation shape compositional variation in secondary tropical forests across multiple scales
- 负责人:
- Breugel, Michiel van
- 关键词:
- Determinants of plant community diversity and structure dispersal limitation niche process resource partitioning secondary forest succession soil nutrients human-modified landscape Community assembly landscape connectivity Forest fragments
- DOI:
- doi:10.5061/dryad.4t46jj6
- 摘要:
- interspecific variation in species’ responses to successional age and soil nutrients with a joint species distribution model. 3.Dispersal limitation and soil n
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Data from: Changing drivers of species dominance during tropical forest succession
- 负责人:
- DOI:
- doi:10.5061/dryad.v2v83
- 摘要:
- on. No trend was found for traits that indicate defense against herbivory, suggesting no successional changes in herbivore pressure. 5. Synthesis. This is one
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Data from: Trophic level, successional age and trait matching determine specialization of deadwood-based interaction networks of saproxylic beetles
- 负责人:
- Wende, Beate
- 关键词:
- decomposition ecosystem functions extinction risk resource quality chemical compound trophic groups
- DOI:
- doi:10.5061/dryad.4p169
- 摘要:
- . However, mostly mutualistic and antagonistic interactions of living organisms have been studied, whereas detritivore networks and their successional changes
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Data from: Primary ecological succession in vascular epiphytes: the species accumulation model
- 负责人:
- 关键词:
- niche differentiation;Community composition;nestedness;Virola koschnyi;microhabitat heterogeneity
- DOI:
- doi:10.5061/dryad.428q1
- 摘要:
- - and late-successional species in the oldest parts of the tree crown but dispersed toward the younger branches as trees increased in size. Thus, epiphyte
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Data from: Linkage of plant trait space to successional age and species richness in boreal forest understory vegetation
- 负责人:
- DOI:
- doi:10.5061/dryad.373mg
- 摘要:
- ng successional age, species richness, understorey vegetation density and spatial heterogeneity of soil resources. For each island we measured
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Data from: Demographic costs and benefits of natural regeneration during tropical forest restoration
- 负责人:
- de la Pe?a-Domene, Marinés
- 关键词:
- Full life-cycle analysis tropical forest restoration natural regeneration individual-based model demographic model reforestation population-level successional age early succession life-history categories
- DOI:
- doi:10.5061/dryad.1c1g42k
- 摘要:
- , relative to planted plots. The demographic advantage of natural regeneration was highest for mid‐successional species, with relatively minor differences bet