Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change

Forest tree hybrid zones provide a wealth of novel genetic variation that can be harnessed to safeguard populations in changing climates. In the past 30 years, natural and artificial forest hybrid zones have facilitated significant contributions to selective breeding programs, conservation, and our...

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Main Authors: Jasmine K. Janes, Jill A. Hamilton
Format: Article
Language:English
Published: MDPI AG 2017-07-01
Series:Forests
Subjects:
Online Access:https://www.mdpi.com/1999-4907/8/7/237
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spelling doaj-4e1fd442fc464ef190b622ca85f05e8a2020-11-24T23:42:45ZengMDPI AGForests1999-49072017-07-018723710.3390/f8070237f8070237Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate ChangeJasmine K. Janes0Jill A. Hamilton1School of Environmental and Rural Science, University of New England, Armidale 2351, NSW, AustraliaBiological Sciences, North Dakota State University, Fargo, ND 58102, USAForest tree hybrid zones provide a wealth of novel genetic variation that can be harnessed to safeguard populations in changing climates. In the past 30 years, natural and artificial forest hybrid zones have facilitated significant contributions to selective breeding programs, conservation, and our understanding of the evolutionary processes and mechanisms that influence the maintenance of species and community interactions. This review highlights advances in these areas using forest hybrid zones. Taking examples from well-known genera, including eucalypt, poplar, oak and spruce, this review details the important role hybrid zones play in managing conservation of genetic variation, the environmental and non-environmental factors that influence barriers to reproduction, and the impact that genetic ancestry may have on community biodiversity. Given increasing concern surrounding species adaptability under rapidly changing conditions, we describe how the study of forest hybrid zones, using quantitative and genomic approaches, can facilitate conservation of genetic diversity and long-term species management.https://www.mdpi.com/1999-4907/8/7/237hybridizationintrogressionclimate changeeucalyptsprucepoplargenomics
collection DOAJ
language English
format Article
sources DOAJ
author Jasmine K. Janes
Jill A. Hamilton
spellingShingle Jasmine K. Janes
Jill A. Hamilton
Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
Forests
hybridization
introgression
climate change
eucalypt
spruce
poplar
genomics
author_facet Jasmine K. Janes
Jill A. Hamilton
author_sort Jasmine K. Janes
title Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
title_short Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
title_full Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
title_fullStr Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
title_full_unstemmed Mixing It Up: The Role of Hybridization in Forest Management and Conservation under Climate Change
title_sort mixing it up: the role of hybridization in forest management and conservation under climate change
publisher MDPI AG
series Forests
issn 1999-4907
publishDate 2017-07-01
description Forest tree hybrid zones provide a wealth of novel genetic variation that can be harnessed to safeguard populations in changing climates. In the past 30 years, natural and artificial forest hybrid zones have facilitated significant contributions to selective breeding programs, conservation, and our understanding of the evolutionary processes and mechanisms that influence the maintenance of species and community interactions. This review highlights advances in these areas using forest hybrid zones. Taking examples from well-known genera, including eucalypt, poplar, oak and spruce, this review details the important role hybrid zones play in managing conservation of genetic variation, the environmental and non-environmental factors that influence barriers to reproduction, and the impact that genetic ancestry may have on community biodiversity. Given increasing concern surrounding species adaptability under rapidly changing conditions, we describe how the study of forest hybrid zones, using quantitative and genomic approaches, can facilitate conservation of genetic diversity and long-term species management.
topic hybridization
introgression
climate change
eucalypt
spruce
poplar
genomics
url https://www.mdpi.com/1999-4907/8/7/237
work_keys_str_mv AT jasminekjanes mixingituptheroleofhybridizationinforestmanagementandconservationunderclimatechange
AT jillahamilton mixingituptheroleofhybridizationinforestmanagementandconservationunderclimatechange
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