南京林业大学学报(自然科学版) ›› 2006, Vol. 30 ›› Issue (04): 55-58.doi: 10.3969/j.jssn.1000-2006.2006.04.013

• 研究论文 • 上一篇    下一篇

南方山地立地条件对杨树人工林生长的影响

谢宝东1,方升佐1,綦山丁2,黄河3,李华勇1   

  1. 1. 南京林业大学森林资源与环境学院, 江苏 南京 210037; 2. 贵州省林业厅, 贵州 贵阳 550001; 3. 贵州铜仁地区林业科学研究所, 贵州 铜仁 554300
  • 出版日期:2016-08-18 发布日期:2016-08-18

Effects of Site Condition on the Growth of Poplar Plantation in Southern Upland Area

XIE Bao-dong1, FANG Sheng-zuo1, QI Shan-ding2, HUANG He3, LI Hua-yong1   

  1. 1. College of Forest Resources and Environment Nanjing Forestry University, Nanjing 210037, China; 2. Guizhou Forestry Department, Guiyang 550001, China; 3. Forestry Research Institute of Tongren District Guizhou Provinee, Tongren 554300, China
  • Online:2016-08-18 Published:2016-08-18

摘要: <正>对10个10年生的日本落叶松无性系木材组织比量进行了测定,结果表明,无性系间木射线比量、树脂道比量和管胞比量差异极显著。日本落叶松组织比量的径向变异规律为:管胞比量由髓心向外,前期变化曲线呈“梯形”。后期变化曲线呈“V”型;木射线比量由髓心向外。开始迅速下降,到第2年轮后缓慢波动下降或上升;树脂道比量由髓心向外,开始缓慢下降。然后迅速上升达最大值后又迅速下降。木射线比量与树木年轮间的变异模式(径向变异)以双曲线和乘幂式方程拟合效果较好,R2均在0.7以上;树脂道比量与树木年轮间的变异模式(径向变异)以指数式方程拟合效果较好,R2为0.609;管胞比量与树木年轮问的变异模式(径向变异)以三次多项式方程拟合效果较好。R2为0.845,日本落叶松的木射线比量、树脂道比量、管胞比量与树高、形率、冠幅、皮厚、主枝粗、枝干比、主枝夹角的相关关系不显著;木射线比量与主枝长显著负相关;木射线比量、树脂道比量与管胞比量之间的相关显著。木射线比量、树脂道比量和管胞比量都受到中等水平的遗传控制。无性系重复力分别是:0.571、0.453和0.607,按照20%的选择率,日本落叶松木射线比量、树脂道比量的遗传增益为16.70%和207.72%。

Abstract: Based on the data investigation from sixty-three sample plots in Tongren district of Guizhou province, the effects of site conditions on the growth of poplar plantation clone (I-69) were analyzed. The main results are as follows:The poplar growth varies in different gradients, directions of slope and slope locations. With increase of gradients, DBH, tree height and stand volume decrease gradually. From sunny slope to shady one, it also does, there is a significant difference between sunny slope and shady one, but on the bottom of slope, DBH, tree height and stand volume are higher than those on top of slope. Compared to waste land, the increasement of DBH, tree height and stand volume in the cropland for green was the highest. With increase of soil depth, DBH, tree height and stand volume were all improved. But with increase of soil bulk density, DBH, tree height and stand volume were reduced.

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