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应用生态学报 ›› 2026, Vol. 37 ›› Issue (5): 1439-1448.doi: 10.13287/j.1001-9332.202605.018

• 研究论文 • 上一篇    下一篇

气候因子对东北地区水曲柳木质部解剖特征的影响

仁青草1,2, 刘烨1,2, 沃熹雅1,2, 杨丽英1,2, 曾凡锁1,3, 辛颖1,2*   

  1. 1东北林业大学林木遗传育种全国重点实验室, 哈尔滨 150040;
    2东北林业大学林学院, 哈尔滨 150040;
    3东北林业大学生命科学学院, 哈尔滨 150040
  • 收稿日期:2025-12-01 接受日期:2026-04-10 出版日期:2026-05-18 发布日期:2026-11-18
  • 通讯作者: * E-mail: xinying2004@126.com
  • 作者简介:仁青草, 女, 1997年生, 硕士研究生。主要从事林业生态工程研究。E-mail: renqingcao2025@126.com
  • 基金资助:
    国家重点研发计划项目(2021YFD2200303)

Influence of meteorological factors on xylem anatomical characteristics of Fraxinus mandshurica in Northeast China

REN Qingcao1,2, LIU Ye1,2, WO Xiya1,2, YANG Liying1,2, ZENG Fansuo1,3, XIN Ying1,2*   

  1. 1State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin 150040, China;
    2College of Forestry, Northeast Forestry University, Harbin 150040, China;
    3College of Life Sciences, Northeast Forestry University, Harbin 150040, China
  • Received:2025-12-01 Accepted:2026-04-10 Online:2026-05-18 Published:2026-11-18

摘要: 水曲柳是我国东北地区珍贵用材树种,具有较高的生态价值和经济价值。本研究所用的水曲柳家系材料于2002年采种育苗,2004年造林,基于树木年轮与木质部解剖学方法,分析了张广才岭(2007—2023年)和小兴安岭(2010—2022年)水曲柳木质部解剖特征与主要气候因子的关系,并探讨了共同低温年(2010与2012年)事件对其木质部解剖特征的影响。结果表明:张广才岭和小兴安岭地区水曲柳木质部解剖特征随树龄增长表现出相似的变化趋势。水曲柳的年轮宽度与总导管面积均随着树龄增长呈现“先升后降”的单峰模式,表明水曲柳幼龄林存在一个约10年的快速生长期。张广才岭水曲柳特异性导水率、理论导水率、导管占比、总导管面积显著高于小兴安岭,增幅分别为143.7%、124.1%、48.4%、43.3%。张广才岭和小兴安岭水曲柳的年轮宽度与导管数量、总导管面积、理论导水率均呈显著正相关,而与导管密度、导管占比、特异性导水率则呈现较强的负相关性。温度和降水共同影响水曲柳的木质部解剖特征,但两地的主导气候因子存在差异。张广才岭水曲柳的生长主要受温度影响,而小兴安岭水曲柳在生长季则受温度和降水的共同影响,且对夏季高温更敏感。低温事件导致两地水曲柳多项解剖指标显著下降。张广才岭地区水曲柳的年轮宽度、平均导管面积、总导管面积、理论导水率和特异性导水率分别显著下降10.8%、24.3%、10.7%、37.7%和41.1%,在小兴安岭地区,这些指标的下降幅度更为显著,分别下降了27.8%、43.4%、28.9%、62.6%和55.8%。7和12号家系在两地对低温事件均具有较强的抵抗力,可作为优良耐寒水曲柳品种在东北地区进行定向培育。

关键词: 水曲柳, 年轮宽度, 木质部解剖特征, 低温事件, 生态弹性

Abstract: Fraxinus mandshurica is a valuable timber species in Northeast China, with high ecological and economic value. We collected the F. mandshurica family materials for sowing and seedling cultivation in 2002 and afforested in 2004. Based on dendrochronology and wood anatomy methods, we analyzed the relationship between xylem anatomical characteristics and major climatic factors for Zhangguangcai Mountains (2007-2023) and Xiao Xing’an Mountains (2010-2022), and examined the effects of common low temperature years (2010 and 2012) on anatomical characteristics of xylem. The results showed that the xylem anatomical characteristics of F. mandshurica in the Zhangguangcai Mountains and Xiao Xing’an Mountains showed similar trends with the age of trees. Ring width and total vessel area exhibited a unimodal pattern of “first increasing and then decreasing” with tree age, with a rapid growth period of approximately 10 years in the young forest stage. The specific hydraulic conductivity, theoretical hydraulic conductivity, percentage of conductive area within xylem, and total vessel area of F. mandshurica in Zhangguangcai Mountains were significantly higher than those of Xiao Xing’an Mountains by 143.7%, 124.1%, 48.4%, and 43.3%, respectively. The annual ring width of F. mandshurica from both sites showed signifi-cant positive correlations with vessel number, total vessel area, and theoretical hydraulic conductivity. Conversely, it exhibited strong negative correlations with vessel density, percentage of conductive area within xylem, and specific hydraulic conductivity. Temperature and precipitation jointly influence the xylem anatomical characteristics, but the dominant climatic factors differed between the two sites. The growth of F. mandshurica in Zhangguangcai Mountains was primarily influenced by temperature. Growth during the growing season in the Xiao Xing’an Mountains was subject to the joint influence of temperature and precipitation, exhibiting sensitivity to high-temperature stress during summer. Low-temperature events led to a significant decrease in multiple anatomical indicators of F. mandshurica in both sites. In low-temperature years, ring width, mean vessel area, total vessel area, theoretical hydraulic conductivity and specific hydraulic conductivity of F. mandshurica in Zhangguangcai Mountains decreased significantly by 10.8%, 24.3%, 10.7%, 37.7% and 41.1%, respectively. In Xiao Xing’an Mountains, the decreases in these indicators were greater, with declines of 27.8%, 43.4%, 28.9%, 62.6%, and 55.8%, respectively. No.7 and No.12 F. mandshurica families exhibited strong resistance in both sites, which could be served as excellent cold-resistant F. mandshurica varieties for directional cultivation in Northeast China.

Key words: Fraxinus mandshurica, tree ring width, xylem anatomical characteristics, low-temperature event, ecological resilience