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Data from: Climate impacts on trans-ocean dispersal and habitat in gray whales from the Pleistocene to 2100
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关键词:
Climate Change Conservation Genetics Phylogeography Ancient DNA Marine Mammals Last Glacial Maximum
DOI:
doi:10.5061/dryad.4fj54
摘要:
Arctic animals face dramatic habitat alteration due to ongoing climate change. Understanding how such species have responded to past glacial cycles
Data from: Fire catalyzed rapid ecological change in lowland coniferous forests of the Pacific Northwest over the past 14,000 years
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关键词:
fire history;Tsuga heterophylla Zone;Tsuga;state change;Alnus;Thuja;fire regime;Pinus;Paleoecology;Pseudostuga;rapid ecological change;Charcoal;pollen analysis;Holocene;Picea;Pleistocene
DOI:
doi:10.5061/dryad.8h5d8
摘要:
of climate change, disturbance may contribute to ecosystem state changes by initiating a new successional pathway. In the Pacific Northwest of North America (PNW
omorphology and climate change in Africa’s Zambezi region
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关键词:
Niche Modelling;climate change;phylogeography;Mammals;Holocene;speciation;Pleistocene
DOI:
doi:10.5061/dryad.83kd9
摘要:
rns for how mammalian lineages respond to both climate change and geologic events such as river formation, especially during the Pleistocene. However, these studies wer
Data from: Phenotypic plasticity and adaptive evolution contribute to advancing flowering phenology in response to climate change
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关键词:
Boechera stricta;natural selection;Phenotypic Plasticity;flowering phenology;price equation;adaptive evolution;Brassicaceae;Holocene;breeder\u2019s equation;climate change;Response to selection
DOI:
doi:10.5061/dryad.68mj4
摘要:
h phenotypic plasticity and adaptive evolution can underlie rapid phenological shifts in response to climate change but their relative contributions are poorly understood
Data from: Long-term data suggest jarrah-forest establishment at restored mine sites is resistant to climate variability
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关键词:
plant-climate interactions;Eucalyptus marginata;structural equation modelling;Ecological restoration;rainfall reliability;Seedling establishment;Climate variability;long term ecological research;Holocene;climate change
DOI:
doi:10.5061/dryad.3m0rf
摘要:
(i.e. no change in the coefficient of variation, seasonality or evenness, between recent and historical climates) despite a threefold difference in the absolute
Data from: Influence of late Quaternary climate change on present patterns of genetic variation in valley oak, Quercus lobata Née
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关键词:
Quercus lobata;Niche Modelling;Late Pleistocene;Quercus alba;climate change;phylogeography;Holocene;Angiosperms;Population Genetics - Empirical
DOI:
doi:10.5061/dryad.g645d
摘要:
s. We integrate multilocus phylogeography, climate-based ENMs and multivariate statistical approaches to infer the effects of late Quaternary climate change
Data from: Fire-regime complacency and sensitivity to centennial- through millennial-scale climate change in Rocky Mountain subalpine
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关键词:
fire history;pollen;Disturbance ecology;Pinus contorta;fuels;fire severity;Picea engelmannii;land-use history;Paleoecology;Abies lasiocarpa;biomass burning;Charcoal;Holocene
DOI:
doi:10.5061/dryad.q2b8t
摘要:
1. Key uncertainties in anticipating future fire regimes are their sensitivity to climate change, and the degree to which climate will impact
Data from: Fire-regime complacency and sensitivity to centennial- through millennial-scale climate change in Rocky Mountain subalpine
负责人:
关键词:
fire history;pollen;Disturbance ecology;Pinus contorta;fuels;fire severity;Picea engelmannii;land-use history;Paleoecology;Abies lasiocarpa;biomass burning;Charcoal;Holocene
DOI:
doi:10.5061/dryad.q2b8t.1
摘要:
1. Key uncertainties in anticipating future fire regimes are their sensitivity to climate change, and the degree to which climate will impact
Data from: Arctic and boreal paleofire records reveal drivers of fire activity and departures from Holocene variability
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关键词:
boreal ecosystem;climate change;Fire frequency;forest dynamics
DOI:
doi:10.5061/dryad.0gb5mkkxv
摘要:
ks and changes in energy balance could act as positive feedbacks to ongoing climate change. In Alaska, wildfire is a primary driver of ecosyste

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