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油松4个产地共40个半同胞家系苗期及试验林调查分析
引用本文:沈熙环,李华峰,赵社教,马建伟,李书靖,王珺. 油松4个产地共40个半同胞家系苗期及试验林调查分析[J]. 北京林业大学学报, 2022, 44(4): 47-53. DOI: 10.12171/j.1000-1522.20210243
作者姓名:沈熙环  李华峰  赵社教  马建伟  李书靖  王珺
作者单位:1.北京林业大学,北京 100083
基金项目:林业部油松种子园示范推广项目
摘    要:[目的]研究油松不同产地半同胞家系苗期和造林后表现,探索制定油松育种策略的依据.[方法]试验种子采自内蒙古宁城、河北遵化、山西上庄和河南卢氏等能代表上述产地的4个种子园,共含40个半同胞家系.在甘肃华池山庄林场育苗和造林.[结果](1)育苗和试验林期间苗木保存状况在产地和家系间没有观察到异常,提供了需要深入研究的信息....

关 键 词:油松  种子园  产地  半同胞家系  育苗和试验林
收稿时间:2021-06-28

Investigation and analysis of seedling and experiment plantation of 40 half-sib-families from 4 seed provenances of Pinus tabuliformis
Shen Xihuan,Li Huafeng,Zhao Shejiao,Ma Jianwei,Li Shujing,Wang Jun. Investigation and analysis of seedling and experiment plantation of 40 half-sib-families from 4 seed provenances of Pinus tabuliformis[J]. Journal of Beijing Forestry University, 2022, 44(4): 47-53. DOI: 10.12171/j.1000-1522.20210243
Authors:Shen Xihuan  Li Huafeng  Zhao Shejiao  Ma Jianwei  Li Shujing  Wang Jun
Affiliation:1.Beijing Forestry University, Beijing 100083, China2.Huachi Branch of Ziwuling Forestry Administration, Gansu Province, Qingyang 745200, Gansu, China3.Xiaolongshan Forestry Experiment Bureau Research Institute, Gansu Province, Tianshui 741020, Gansu, China4.Gansu Forestry Research Institute, Lanzhou 730030, Gansu, China
Abstract:  Objective  This paper aims to study the performance of half-sib-families of Pinus tabuliformis from four provenances at seedling stage and after afforestation, and to explore the basis for formulating breeding strategies of the species.   Method  The seeds were collected from four seed orchards, including Ningcheng of Inner Mongolia, Zunhua of Hebei, Shangzhuang of Shanxi of northern China, and Lushi of Henan, central China, which were representative of the above provenances, with a total of 40 half-sib families. Seedling and afforestation were carried out at Shanzhuang Forest Farm of Huachi, Gansu Province of northwestern China.   Result  (1) No difference was observed in the preservation status of seedlings among tested provenances and families during seedling and experimental stand, which provided important information for further study. (2) The average seedling height of 4-year-old seedlings in the four provenance was 68.8?76.7 cm, and the ground diameter was 5.3?5.6 mm. Seedling height and ground diameter of 40 families varied in 53.4?105.4 cm and 4.2?6.6 mm. The maximum and minimum values of seedling height in a family ranged from 17.2 to 21.2 cm, which was equivalent to 17% to 34% of seedling height in that year. The variation coefficient of 4-year-old seedling height was 12.1%?18.2%, and the ground diameter was 10.4%?12.8%. The variation coefficient of seedling height and ground diameter were 3.1%?6.2% and 3.9%?6.9%, respectively. The tree height and DBH of 22-year-old trees from 40 families varied from 5.38 to 6.74 m and 8.13 to 14.25 cm, respectively. There were differences in origin, family and growth within family, and there was a large choice space. (3) The height order of 1?2-year-old seedlings in each provenance changed and then tended to be stable. The height order of 3-year-old and 4-year-old seedlings in families was basically the same. The height of 8, 12, 17, 21 and 22-year-old trees was correlated, and the DBH was correlated after 12-year-old. The sequence correlation coefficient between seedling height of 3?4-year-old and tree height of 22-year-old reached a significant level.  Conclusion  No abnormality is found in the preservation condition of the tested seeds after long-distance seedling raising and afforestation; among the three levels of origin, family and within family, the height and diameter of seedlings and experimental forests vary greatly. Multi-level selection can improve the yield potential; the age of early selection may be significantly earlier. 
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