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Genetic variation and genotype by environment interactions of juvenile wood chemical properties in Pinus taeda L.

机译:环境互作的遗传变异和基因型研究。

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Genetic variation and genotype by environment interaction (GxE) were studied in several juvenile wood traits of 11 year-old loblolly pine trees (Pinus taeda L.). Wafer thin (200 mu m) samples from juvenile (ring 3) and transition (ring 8) wood of 12 mm increment cores were analyzed. Transition wood had higher alpha-cellulose content (46.1%), longer fiber (1.98 mm), and higher coarseness (0.34), but lower lignin (29.7%) than juvenile wood (cellulose 40.9%, fiber length 1.4 mm, coarseness 0.28 and lignin 30.3%). General combining ability variance for the traits explained 2% to 10% of the total variance, whereas the specific combining ability variance was negligible, except for alpha-cellulose content in transition wood (2%). Specific combining abilityby site interaction variance explained from 5% (fiber length) to 37% (lignin) of the total variance. Weak individual-tree heritabilities were found for all the traits, except coarseness, which was moderately high in both juvenile (0.39) and transition wood (0.30). Full-sib and half-sib family heritabilities of traits ranged 0.29 to 0.72. Genetic correlations of wood quality traits with volume and stem straightness were weak, while favorable genetic correlations of lignin with cellulose, coarseness andfiber length were observed. Implications on forest tree improvement programs were discussed.
机译:研究了11岁火炬松(Pinus taeda L.)的几种幼年木性状的遗传变异和通过环境相互作用的基因型。对来自12毫米增量岩心的幼木(3号环)和过渡木(8号环)的薄硅片(200微米)进行了分析。过渡木材的木质纤维素含量较高(46.1%),纤维较长(1.98 mm),粗度较高(0.34),但木质素含量(29.7%)低于少年木材(纤维素40.9%,纤维长度1.4 mm,粗糙度0.28和0.28)。木质素30.3%)。性状的一般结合能力差异占总变异的2%至10%,而特定的结合能力差异可忽略不计,但过渡木中的α-纤维素含量(2%)除外。通过位点相互作用方差的特定结合能力可解释为总方差的5%(纤维长度)至37%(木质素)。除粗度外,所有性状均具有较弱的个体树遗传力,在幼木(0.39)和过渡木(0.30)中均较高。全同胞和半同胞家庭性状的遗传范围为0.29至0.72。木材品质性状与体积和茎直度的遗传相关性较弱,而木质素与纤维素,粗度和纤维长度的遗传相关性良好。讨论了对林木改良计划的影响。

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