Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone

AbstractThe fundamental niche of many species is shifting with climate change, especially in sub-arctic ecosystems with pronounced recent warming. Ongoing warming in sub-arctic regions should lessen environmental constraints on tree growth and reproduction, leading to increased success of trees colo...

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Main Authors: Brown, Carissa D., Dufour-Tremblay, Geneviève, Jameson, Ryan G., Mamet, Steven D., Trant, Andrew J., Walker, Xanthe J., Boudraeu, Stéphane, Harper, Karen A., Henry, Greg H.R., Hermanutz, Luise, Hofgaard, Annika, Isaeva, Ludmila, Kershaw, G. Peter, Johnstone, Jill F., Henry, Gregory H. R.
Format: Dataset
Language:unknown
Published: Borealis 2021
Subjects:
Online Access:https://search.dataone.org/view/sha256:5f5a312c2b479ab086623076553e09ac018fe885c1a95004e950158d089614e5
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author Brown, Carissa D.
Dufour-Tremblay, Geneviève
Jameson, Ryan G.
Mamet, Steven D.
Trant, Andrew J.
Walker, Xanthe J.
Boudraeu, Stéphane
Harper, Karen A.
Henry, Greg H.R.
Hermanutz, Luise
Hofgaard, Annika
Isaeva, Ludmila
Kershaw, G. Peter
Johnstone, Jill F.
Henry, Gregory H. R.
author_facet Brown, Carissa D.
Dufour-Tremblay, Geneviève
Jameson, Ryan G.
Mamet, Steven D.
Trant, Andrew J.
Walker, Xanthe J.
Boudraeu, Stéphane
Harper, Karen A.
Henry, Greg H.R.
Hermanutz, Luise
Hofgaard, Annika
Isaeva, Ludmila
Kershaw, G. Peter
Johnstone, Jill F.
Henry, Gregory H. R.
author_sort Brown, Carissa D.
collection Borealis (via DataONE)
description AbstractThe fundamental niche of many species is shifting with climate change, especially in sub-arctic ecosystems with pronounced recent warming. Ongoing warming in sub-arctic regions should lessen environmental constraints on tree growth and reproduction, leading to increased success of trees colonising tundra. Nevertheless, variable responses of treeline ecotones have been documented in association with warming temperatures. One explanation for time lags between increasingly favourable environmental conditions and treeline ecotone movement is reproductive limitations caused by low seed availability. Our objective was to assess the reproductive constraints of the dominant tree species at the treeline ecotone in the circumpolar north. We sampled reproductive structures of trees (cones and catkins) and stand attributes across circumarctic treeline ecotones. We used generalized linear mixed models to estimate the sensitivity of seed production and the availability of viable seed to regional climate, stand structure, and species-specific characteristics. Both seed production and viability of available seed were strongly driven by specific, sequential seasonal climatic conditions, but in different ways. Seed production was greatest when growing seasons with more growing degree days coincided with years with high precipitation. Two consecutive years with more growing degree days and low precipitation resulted in low seed production. Seasonal climate effects on the viability of available seed depended on the physical characteristics of the reproductive structures. Large-coned and -seeded species take more time to develop mature embryos and were therefore more sensitive to increases in growing degree days in the year of flowering and embryo development. Our findings suggest that both moisture stress and abbreviated growing seasons can have a notable negative influence on the production and viability of available seed at treeline. Our synthesis revealed that constraints on predispersal reproduction within the treeline ecotone might create a considerable time lag for range expansion of tree populations into tundra ecosystems.
format Dataset
genre Arctic
Climate change
Tundra
genre_facet Arctic
Climate change
Tundra
geographic Arctic
geographic_facet Arctic
id dataone:sha256:5f5a312c2b479ab086623076553e09ac018fe885c1a95004e950158d089614e5
institution Open Polar
language unknown
op_collection_id dataone:urn:node:BOREALIS
publishDate 2021
publisher Borealis
record_format openpolar
spelling dataone:sha256:5f5a312c2b479ab086623076553e09ac018fe885c1a95004e950158d089614e5 2025-06-03T18:49:30+00:00 Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone Brown, Carissa D. Dufour-Tremblay, Geneviève Jameson, Ryan G. Mamet, Steven D. Trant, Andrew J. Walker, Xanthe J. Boudraeu, Stéphane Harper, Karen A. Henry, Greg H.R. Hermanutz, Luise Hofgaard, Annika Isaeva, Ludmila Kershaw, G. Peter Johnstone, Jill F. Henry, Gregory H. R. 2021-05-19T00:00:00Z https://search.dataone.org/view/sha256:5f5a312c2b479ab086623076553e09ac018fe885c1a95004e950158d089614e5 unknown Borealis Picea glauca Abies balsamea Betula pubescens ssp. tortuosa Pinus sylvestris Other Abies lasiocarpa treeline ecotone Larix laricina Picea mariana tree reproduction Dataset 2021 dataone:urn:node:BOREALIS 2025-06-03T18:18:01Z AbstractThe fundamental niche of many species is shifting with climate change, especially in sub-arctic ecosystems with pronounced recent warming. Ongoing warming in sub-arctic regions should lessen environmental constraints on tree growth and reproduction, leading to increased success of trees colonising tundra. Nevertheless, variable responses of treeline ecotones have been documented in association with warming temperatures. One explanation for time lags between increasingly favourable environmental conditions and treeline ecotone movement is reproductive limitations caused by low seed availability. Our objective was to assess the reproductive constraints of the dominant tree species at the treeline ecotone in the circumpolar north. We sampled reproductive structures of trees (cones and catkins) and stand attributes across circumarctic treeline ecotones. We used generalized linear mixed models to estimate the sensitivity of seed production and the availability of viable seed to regional climate, stand structure, and species-specific characteristics. Both seed production and viability of available seed were strongly driven by specific, sequential seasonal climatic conditions, but in different ways. Seed production was greatest when growing seasons with more growing degree days coincided with years with high precipitation. Two consecutive years with more growing degree days and low precipitation resulted in low seed production. Seasonal climate effects on the viability of available seed depended on the physical characteristics of the reproductive structures. Large-coned and -seeded species take more time to develop mature embryos and were therefore more sensitive to increases in growing degree days in the year of flowering and embryo development. Our findings suggest that both moisture stress and abbreviated growing seasons can have a notable negative influence on the production and viability of available seed at treeline. Our synthesis revealed that constraints on predispersal reproduction within the treeline ecotone might create a considerable time lag for range expansion of tree populations into tundra ecosystems. Dataset Arctic Climate change Tundra Borealis (via DataONE) Arctic
spellingShingle Picea glauca
Abies balsamea
Betula pubescens ssp. tortuosa
Pinus sylvestris
Other
Abies lasiocarpa
treeline ecotone
Larix laricina
Picea mariana
tree reproduction
Brown, Carissa D.
Dufour-Tremblay, Geneviève
Jameson, Ryan G.
Mamet, Steven D.
Trant, Andrew J.
Walker, Xanthe J.
Boudraeu, Stéphane
Harper, Karen A.
Henry, Greg H.R.
Hermanutz, Luise
Hofgaard, Annika
Isaeva, Ludmila
Kershaw, G. Peter
Johnstone, Jill F.
Henry, Gregory H. R.
Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title_full Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title_fullStr Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title_full_unstemmed Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title_short Data from: Reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
title_sort data from: reproduction as a bottleneck to treeline advance across the circumarctic forest tundra ecotone
topic Picea glauca
Abies balsamea
Betula pubescens ssp. tortuosa
Pinus sylvestris
Other
Abies lasiocarpa
treeline ecotone
Larix laricina
Picea mariana
tree reproduction
topic_facet Picea glauca
Abies balsamea
Betula pubescens ssp. tortuosa
Pinus sylvestris
Other
Abies lasiocarpa
treeline ecotone
Larix laricina
Picea mariana
tree reproduction
url https://search.dataone.org/view/sha256:5f5a312c2b479ab086623076553e09ac018fe885c1a95004e950158d089614e5