Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies

In Chile, interspecific hybrids between <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i> (GloNi) were developed by Arauco Forestry to capture specific traits from each parental species: growth rate and cold resistance from <i>E. nitens</i> (NIT) and wood prop...

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Main Authors: Luis Ibarra, Gary Hodge, Juan José Acosta
Format: Article
Language:English
Published: MDPI AG 2023-02-01
Series:Forests
Subjects:
Online Access:https://www.mdpi.com/1999-4907/14/2/381
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author Luis Ibarra
Gary Hodge
Juan José Acosta
author_facet Luis Ibarra
Gary Hodge
Juan José Acosta
author_sort Luis Ibarra
collection DOAJ
description In Chile, interspecific hybrids between <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i> (GloNi) were developed by Arauco Forestry to capture specific traits from each parental species: growth rate and cold resistance from <i>E. nitens</i> (NIT) and wood properties from <i>E. globulus</i> (GLO). Field tests of <i>E. nitens</i> × <i>E. globulus</i> were distributed in two geographic zones: Arauco (12 tests) and Valdivia (15 tests), where growth and wood properties measurements were recorded at different ages. The hybrid population is composed of clones from 28 full-sib families, being the result of crossing 12 <i>E. nitens</i> females and 8 <i>E. globulus</i> males. Progeny from each of these families were vegetatively propagated and tested on each growth zone, with a total of 1214 clones developed. The quantitative genetic parameter estimates reveal high genetic variation in hybrid volume gain and wood properties, which make possible large genetic gain in all traits analyzed. Additionally, <i>E. nitens</i> has a considerable impact on the volume gain of the hybrid, making it important to test more parents in future interspecific crosses in both hybrid zones. In contrast, <i>E. globulus</i> demonstrated zero impact in volume. In wood traits, <i>E. globulus</i> in Arauco zone demonstrates a large effect on the genetic variability of these traits; meanwhile, in the Valdivia zone, <i>E. nitens</i> and <i>E. globulus</i> parents contributed roughly similar amounts of genetic variation. The high General Hybridizing Ability (GHA) and General Combining Ability (GCA) relationship between hybrid progeny and pure species progeny performance indicates that parents could be selected for interspecific crosses based on pure species test results for volume and wood properties.
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spelling doaj.art-24a84fb8e9fc4403a70eec877b4a92622023-11-16T20:35:11ZengMDPI AGForests1999-49072023-02-0114238110.3390/f14020381Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding StrategiesLuis Ibarra0Gary Hodge1Juan José Acosta2Camcore, Department of Forestry and Environmental Resources, NC State University, Raleigh, NC 27695, USACamcore, Department of Forestry and Environmental Resources, NC State University, Raleigh, NC 27695, USACamcore, Department of Forestry and Environmental Resources, NC State University, Raleigh, NC 27695, USAIn Chile, interspecific hybrids between <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i> (GloNi) were developed by Arauco Forestry to capture specific traits from each parental species: growth rate and cold resistance from <i>E. nitens</i> (NIT) and wood properties from <i>E. globulus</i> (GLO). Field tests of <i>E. nitens</i> × <i>E. globulus</i> were distributed in two geographic zones: Arauco (12 tests) and Valdivia (15 tests), where growth and wood properties measurements were recorded at different ages. The hybrid population is composed of clones from 28 full-sib families, being the result of crossing 12 <i>E. nitens</i> females and 8 <i>E. globulus</i> males. Progeny from each of these families were vegetatively propagated and tested on each growth zone, with a total of 1214 clones developed. The quantitative genetic parameter estimates reveal high genetic variation in hybrid volume gain and wood properties, which make possible large genetic gain in all traits analyzed. Additionally, <i>E. nitens</i> has a considerable impact on the volume gain of the hybrid, making it important to test more parents in future interspecific crosses in both hybrid zones. In contrast, <i>E. globulus</i> demonstrated zero impact in volume. In wood traits, <i>E. globulus</i> in Arauco zone demonstrates a large effect on the genetic variability of these traits; meanwhile, in the Valdivia zone, <i>E. nitens</i> and <i>E. globulus</i> parents contributed roughly similar amounts of genetic variation. The high General Hybridizing Ability (GHA) and General Combining Ability (GCA) relationship between hybrid progeny and pure species progeny performance indicates that parents could be selected for interspecific crosses based on pure species test results for volume and wood properties.https://www.mdpi.com/1999-4907/14/2/381genetics parametersF<sub>1</sub> hybridsEucalyptusGeneral Hybridizing Ability (GHA)tree breedingwood traits
spellingShingle Luis Ibarra
Gary Hodge
Juan José Acosta
Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
Forests
genetics parameters
F<sub>1</sub> hybrids
Eucalyptus
General Hybridizing Ability (GHA)
tree breeding
wood traits
title Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
title_full Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
title_fullStr Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
title_full_unstemmed Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
title_short Quantitative Genetics of a Hybrid Population of <i>Eucalyptus nitens</i> × <i>Eucalyptus globulus</i>: Estimation of Genetic Parameters and Implications for Breeding Strategies
title_sort quantitative genetics of a hybrid population of i eucalyptus nitens i i eucalyptus globulus i estimation of genetic parameters and implications for breeding strategies
topic genetics parameters
F<sub>1</sub> hybrids
Eucalyptus
General Hybridizing Ability (GHA)
tree breeding
wood traits
url https://www.mdpi.com/1999-4907/14/2/381
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