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Height and Diameter Relationships and Distributions in Loblolly Pine Stands of Enhanced Genetic Material

机译:增强遗传物质火炬松林分的高度和直径的关系与分布

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摘要

The effect of genetic improvement on loblolly pine height-dbh relationships and height and dbh distributions was investigated using four loblolly pine genetic varieties, a half-sibling family, a full-sibling family, and two rooted-cutting clones, growing at two different levels of stand density. Height-dbh relationships were modeled using the Korf function and height and dbh distributions were described using sample moments of the distributions. The fixed effect of genetic variety on the height-dbh relationship was tested using likelihood ratio test and root mean square error statistics. Moments of height and dbh distributions were compared using analysis of variance techniques. The effect of genetic variety on the height-dbh relationship depended on stand density with differential effects being observed at higher stand density. Variance of the height-dbh regression line decreased with increased genetic uniformity among the trees in a stand; hence, vertical crown differentiation in a stand may decrease with genetic selection. Higher levels of genetic improvement resulted in an increase in the mean of the height distribution but had no effect on the mean of the dbh distribution, suggesting that genetic selection for faster height growth in loblollypine may affect diameter and height development disproportionally. The effect of genetic improvement and planting of monoclonal stands on variance of height and dbh distributions depended on stand density with there being no effect at the lower density.However, variance of the distributions for nonclonal stands was greater at the higher density. There was no change in skewness of the distribution with genetic improvement or between clonal and nonclonal stands. Modeling effects of genetic improvement on loblolly pine height-dbh relationships and diameter and height distributions may require knowledge of the genetic mechanisms behind the differential responses of genetic varieties to stand density.
机译:研究了遗传改良对火炬松高度-dbh关系以及高度和dbh分布的影响,使用了四个火炬松遗传品种,一个半兄弟姐妹家族,一个全兄弟姐妹家族和两个生根切割克隆,它们在两个不同的水平上生长林分密度。使用Korf函数对Height-dbh关系进行建模,并使用分布的样本矩描述高度和dbh分布。使用似然比检验和均方根误差统计检验了遗传多样性对身高与dbh关系的固定影响。使用方差分析比较高度和dbh分布的矩。遗传多样性对株高-dbh关系的影响取决于林分密度,在较高林分密度下观察到差异效应。林分之间的高度-dbh回归线的变异随着遗传均匀性的增加而降低;因此,林分的垂直冠冠分化可能会因基因选择而降低。较高水平的遗传改良导致身高分布的平均值增加,但对dbh分布的平均值没有影响,这表明在氟别平中更快地生长高度的遗传选择可能会不成比例地影响直径和身高发育。遗传改良和种植单株林对高度和dbh分布变化的影响取决于林分密度,在较低密度下没有影响,但是在高密度下非克隆林分分布的变化更大。随着遗传改良或克隆和非克隆林之间的分布偏度没有变化。遗传改良对火炬松高度-dbh关系以及直径和高度分布的影响可能需要了解遗传变异对林分密度的不同反应背后的遗传机制。

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