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Genetic correlations among juvenile wood quality and growth traits and implications for selection strategy in Pinus radiata D. Don

机译:辐射松幼林木材品质与生长性状的遗传相关性及其对选择策略的影响

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Juvenile wood quality in Pinus radiata is affected by factors such as low density, stiffness, and high microfibril angle, spiral grain, and shrinkage. Adverse genetic correlations between growth and wood quality traits remain as one of the main constraints in radiata pine advanced generation selection breeding program.Juvenile wood property data for this study were available from two progeny tests aged 7 and 6 y. We estimated the genetic correlations between stiffness, density, microfibril angle, spiral grain, shrinkage in the juvenile core and DBH growth in radiata pine, and) to evaluated various selection scenarios to deal with multiple objective traits.Negative genetic correlations were found for modulus of elasticity (MoE) and density with microfibril angle, spiral grain, shrinkage, and DBH. We observed low to moderate unfavourable genetic correlations between all wood quality traits and DBH growth.These low to moderate genetic correlations suggest that there may be some genotypes which have high DBH growth performance while also having high wood stiffness and density, and that the adverse correlation between DBH and MoE may not entirely prohibit the improvement of both traits. Results indicate that, in the short term, the optimal strategy is index selection using economic weights for breeding objective traits (MAI and stiffness) in radiata pine.In the long-term, simultaneously purging of the adverse genetic correlation and optimizing index selection may be the best selection strategy in multiple-trait selection breeding programs with adverse genetic correlations.
机译:辐射松的幼木质量受诸如低密度,刚度和高微纤丝角,螺旋纹和收缩等因素的影响。生长和木材品质性状之间的不利遗传相关仍然是辐射松高级一代选择育种计划的主要限制之一。本研究的幼稚木材特性数据可从两个7岁和6岁的子代试验获得。我们估算了刚度,密度,微纤丝角,螺旋晶粒,少年岩心收缩和辐射松的DBH生长之间的遗传相关性,并评估了应对多种客观性状的各种选择方案。弹性(MoE)和密度,以及微纤丝角度,螺旋晶粒,收缩率和DBH。我们观察到所有木材品质性状与DBH生长之间的低至中度不利遗传相关性。这些低至中度遗传相关性表明可能存在一些基因型具有较高的DBH生长性能,同时具有较高的木材刚度和密度,并且存在负相关性DBH和MoE之间的关系可能并不完全禁止这两个特性的改善。结果表明,短期内,最佳策略是利用经济权重选择辐射松的客观性状(MAI和刚度)进行指标选择,从长远来看,同时消除不良遗传相关性和优化指标选择可能是可行的。具有不利遗传相关性的多性状选择育种计划中的最佳选择策略。

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