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Genetic analysis of fibre size in a full-sib Pinus sylvestris L. progeny test

机译:全同胞樟子松子代测试中纤维大小的遗传分析

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摘要

Fibre length, fibre width, tree height and stem diameter in 25-yr-old Scots pine ( Pinus sylvestris L.) were investigated by genetic analysis. The analysis was carried out on nearly 400 trees for all traits simultaneously using multiple-trait, individual tree equations with simultaneous variance estimation. Narrow-sense heritabilities were estimated at about 0.3 for all traits except for stem diameter, which was lower (0.17). Low genetic coefficients of variation for fibre length may be partially explained by the sampling method, which was 5 mm increment boring resulting in fibre fragmentation, but the method served well for heritability and correlation analysis. The additive genetic correlation was strongly negative between fibre length and stem diameter, and strongly positive between fibre width and growth traits. The pair of fibre traits showed mutually strong negative additive-genetic but weak positive environmental correlation. The pair of growth traits showed no genetic but strong positive environmental correlation. Other correlation estimates were minor and uncertain, with the exception of a weak negative environmental correlation between fibre length and stem diameter. An additional approach, where stem diameter was regarded as a covariate, revealed positive environmental correlation between fibre length and tree height and negative environmental correlation between fibre width and tree height.
机译:通过遗传分析研究了25岁的苏格兰松(Pinus sylvestris L.)的纤维长度,纤维宽度,树高和茎直径。使用多特征,单个树方程式同时进行方差估计,同时对近400棵树进行了所有特征分析。估计所有性状的狭义遗传力均约为0.3,但茎直径较低(0.17)。纤维长度的低遗传变异系数可以通过采样方法得到部分解释,该采样方法是无聊的5毫米增量钻孔,导致纤维断裂,但该方法非常适合于遗传性和相关性分析。纤维长度和茎直径之间的加性遗传相关性极强,而纤维宽度和生长性状之间的正相关性极强。这对纤维性状表现出相互强的负加性遗传但弱的正环境相关性。这对生长性状没有遗传关系,但与环境呈强正相关。除纤维长度与茎直径之间的弱负环境相关性外,其他相关性估计数均较小且不确定。另一种方法是将茎直径视为协变量,该方法揭示了纤维长度和树木高度之间的正环境相关性以及纤维宽度和树木高度之间的负环境相关性。

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