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Citation:

Genetic Var ia tion ofWood Properties of Japanese Larch Clones

  • Received Date: 2006-07-05
    Accepted Date: 2007-05-29
  • The genetic variations of basic density and tracheid features of 10 Japanese larch clones at 10 yearswereinvestigated. The result revealed that the basic density, tracheid width of earlywood and latewood and tracheidlength2width ratio of earlywood had significant differences among clones. The basic density, tracheid length of earlywood and latewood, tracheid width of earlywood had latewood and tracheid length-width ratio of earlywood and latewood followed the same pattern. The radial variation curveswere increased from p ith to bark , which showed wavessometimes. The tracheid wall thickness of earlywood and latewood and tracheid dull wall thickness-diameter ratiofollowed the same pattern. The latewood was constantly bigger than the earlywood. The radial variation curves of earlywood were slowly increased close to line from p ith to bark. The latewood was increased by curve from p ith to bark.The variation range was large at the initial stages and then became lever variety and slimly waves in a certain age.The variation pattern of wood p ropertity was well fitted by logarithm, power and exponential equations. The repeatabilities of wood p roperty were over 0. 5 excep t tracheid dull wall thickness-diameter ratio of latewood and tracheid wall thickness of earlywood, indicating thatwood p roperty traitswere moderately of strongly genetic control. The genetic gains of tracheid length-width ratio of latewood and tracheid length were higher if 20% of the best cloneswasselected.
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    Pashin A J, de Carl Z. Textbook of Wood Technology [M]. NewYork: McGraw2Hill Book Company, 1980
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    [4] 鲍甫成,江泽慧. 中国主要人工林树种木材性质[M]. 北京:中国林业出版社, 1998: 30 - 36

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    [6] 茹广欣,冯 胜,袁金玲,等. 泡桐无性系木材基本密度遗传变异研究[J]. 河南农业大学学报, 2001, 35 (4) : 335 - 338

    [7] 王克胜,卞学瑜,佟永昌,等. 杨树无性系生长和材性的遗传变异及多性状选择[J]. 林业科学, 1996, 32 (2) : 111 - 117

    [8] 冯 弦,陈宏伟,刘永刚,等. 山桂花人工林木材基本密度和纤维长度变异规律的研究[J]. 广西林业科学, 2003, 32 (1) : 20 - 23

    [9] 周崟. 中国落叶松属木材[M]. 北京:中国林业出版社, 2001

    [10] 查朝生,方 宇,刘盛全,等. 杨树无性系木材纤维形态特征及其径向变异的研究[J]. 安徽农业大学学报, 2005, 32 ( 2 ) : 192- 197

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Genetic Var ia tion ofWood Properties of Japanese Larch Clones

  • 1. Research Institute of Forestry, CAF, Key Laboratory of Tree Breeding and Cultivation, State Forestry Administration,Beijing 100091, China
  • 2. Forestry and Horticulture College of He’nan Agricultureal University, Zhengzhou 450002, He’nan, China

Abstract: The genetic variations of basic density and tracheid features of 10 Japanese larch clones at 10 yearswereinvestigated. The result revealed that the basic density, tracheid width of earlywood and latewood and tracheidlength2width ratio of earlywood had significant differences among clones. The basic density, tracheid length of earlywood and latewood, tracheid width of earlywood had latewood and tracheid length-width ratio of earlywood and latewood followed the same pattern. The radial variation curveswere increased from p ith to bark , which showed wavessometimes. The tracheid wall thickness of earlywood and latewood and tracheid dull wall thickness-diameter ratiofollowed the same pattern. The latewood was constantly bigger than the earlywood. The radial variation curves of earlywood were slowly increased close to line from p ith to bark. The latewood was increased by curve from p ith to bark.The variation range was large at the initial stages and then became lever variety and slimly waves in a certain age.The variation pattern of wood p ropertity was well fitted by logarithm, power and exponential equations. The repeatabilities of wood p roperty were over 0. 5 excep t tracheid dull wall thickness-diameter ratio of latewood and tracheid wall thickness of earlywood, indicating thatwood p roperty traitswere moderately of strongly genetic control. The genetic gains of tracheid length-width ratio of latewood and tracheid length were higher if 20% of the best cloneswasselected.

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