Estimation of genetic parameters for growth in a population of Eucalyptus grandis × Eucalyptus nitens hybrids in KwaZulu-Natal and Mpumalanga

W. Brink, G. van den Berg, A. Nel, B. du Toit
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Abstract

Hybridising Eucalyptus grandis with Eucalyptus nitens produces progeny intended to combine the favourable traits of both parents. E. grandis exhibits good growth, stem form, wood properties and rooting ability for vegetative propagation. E. nitens displays superior cold tolerance, including superior frost and snow tolerance, and high wood density. Eucalypt hybrids developed specifically for improved cold tolerance tend to produce fewer viable hybrid progeny and are more recalcitrant rooters than their sub-tropical counterparts. To overcome these challenges, a novel testing strategy was developed and used to identify promising varieties for commercial deployment. As a result, a large population of E. grandis × E. nitens hybrids was developed through controlled pollinations, propagated via mini-cuttings and established in a total of 21 field trials, across the KwaZulu-Natal and Mpumalanga provinces of South Africa, to investigate growth and adaptability. Data of three growth traits, namely diameter at breast height (DBH), total tree height and volume were analysed to determine the genetic parameters of these traits. Combined-site broad sense heritability for DBH, height and volume were 0.39, 0.46 and 0.35 respectively, indicating a moderate level of genetic control. This, in conjunction with large genetic coefficients of variation (CVg = 20%, 16% and 41% for DBH, height and volume respectively) shows that substantial gains can be made through selection. Combined-site Type B genetic correlations for DBH, height and volume were 0.71, 0.68 and 0.65 respectively, indicating that there was notable genotype by environment interaction. Pairwise comparisons of rBg for volume showed large variation in the correlations of clonal rankings between trials, with rBg ranging from 0.0 to 0.90.
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夸祖鲁-纳塔尔省和普马兰加省大桉×黑桉杂交群体生长遗传参数的估计
大桉与黑桉杂交产生的后代旨在结合双亲的有利性状。巨叶菊具有良好的生长、茎型、木材特性和无性繁殖生根能力。耐寒性好,耐霜雪性好,木材密度高。专为提高耐寒性而培育的桉树杂交种往往比亚热带的桉树杂交种产生更少的可存活的杂交后代和更顽强的根系。为了克服这些挑战,开发了一种新的测试策略,并用于确定有希望进行商业部署的品种。结果,通过控制授粉,培育出了大量的大e × E. nitens杂交品种,并通过微型扦插繁殖,在南非夸祖鲁-纳塔尔省和姆普马兰加省共进行了21次田间试验,以调查其生长和适应性。通过分析胸径、树高和体积3个生长性状的遗传参数,确定了3个性状的遗传参数。胸径、高度和体积的组合广义遗传力分别为0.39、0.46和0.35,表明遗传控制处于中等水平。这与大的遗传变异系数(胸径、高度和体积的CVg分别为20%、16%和41%)相结合,表明通过选择可以获得可观的收益。组合位点B型遗传相关系数分别为0.71、0.68和0.65,表明存在显著的环境互作基因型。rBg对体积的两两比较显示,试验之间克隆排名的相关性差异很大,rBg在0.0到0.90之间。
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