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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2556-2564.doi: 10.13287/j.1001-9332.202608.045

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红松引种至大兴安岭后根系适应策略及其环境驱动因子

张文志1, 陈俊彤1, 杨立学1*, 邢宏运1, 于均屹1, 黄波1, 董慧2   

  1. 1东北林业大学林学院红松国家林业和草原局重点实验室/森林生态系统可持续经营教育部重点实验室, 哈尔滨 150040;
    2辽宁省林业发展服务中心, 沈阳 110031
  • 收稿日期:2026-04-27 修回日期:2026-07-07 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: yanglixue@nefu.edu.cn
  • 作者简介:张文志, 男, 2001年生, 硕士研究生。主要从事森林培育研究。E-mail: 2559436163@qq.com
  • 基金资助:
    “十四五”国家重点研发计划课题(2024YFD2200402)

Root adaptive strategies of Pinus koraiensis after introducing to the Daxing’an Mountains and the environmental driving factors

ZHANG Wenzhi1, CHEN Juntong1, YANG Lixue1*, XING Hongyun1, YU Junyi1, HUANG Bo1, DONG Hui2   

  1. 1Key Laboratory of Korean Pine of State Forestry and Grassland Administration/Ministry of Education Key Laboratory of Sustainable Forest Ecosystem Management, School of Forestry, Northeast Forestry University, Harbin 150040, China;
    2Liaoning Forestry Development Service Center, Shenyang 110031, China
  • Received:2026-04-27 Revised:2026-07-07 Online:2026-08-18 Published:2027-02-18

摘要: 为揭示红松引种至大兴安岭后的根系适应机制,本研究以大兴安岭引种区(南木、加格达奇)的50年生红松人工林为对象,以小兴安岭红松天然分布区(带岭)为对照,分析其1~3级细根功能性状的区域变异特征、资源权衡策略及关键环境驱动因子。结果表明:相较于带岭天然分布区,南木引种区3级根组织密度显著降低7.2%,比根面积显著增加15.0%,1~3级根氮含量分别显著降低28.6%、21.3%、26.4%,2、3级根碳含量分别显著降低4.2%和4.0%,3级根中柱直径显著降低20.8%,1、3级根皮层厚度显著增加36.2%和45.7%;加格达奇引种区3级根直径和组织密度分别显著下降14.8%和9.0%,比根面积显著增加29.4%,1~3级根氮含量分别显著降低32.0%、27.1%、28.1%,3级根碳含量显著降低3.9%,1~3级根中柱直径分别显著降低30.8%、33.5%、22.0%,1、3级根皮层厚度分别显著增加39.3%和27.3%。在某些功能性状上,两引种区之间也存在显著差异。红松1~3级根存在二维生态策略空间:其中,资源获取-保守权衡轴处于主导地位,天然分布区根系偏向资源保守策略,引种区偏向资源获取策略;觅食-协作轴处于次要地位,两分布区间无显著差异。这种在资源获取-保守权衡上的分化主要源于引种区土壤养分与水分的双重限制,资源供给的不足促使根系转向获取型策略,但这种资源供给不足主要表现于特定级别根系功能性状而非根系整体策略。综上,红松在引种过程中可通过根系功能性状协同调整,实现从资源保守型向资源获取型策略的偏移,从而适应大兴安岭地区养分和水分相对受限的生态环境。

关键词: 引种, 红松, 功能性状, 根系生态策略, 生境变异

Abstract: To reveal root adaptive mechanisms of Pinus koraiensis after being introduced to the Daxing’an Mountains, we used 50-year-old P. koraiensis plantations in the introduction areas (Nanmu and Jiagedaqi) as study objects, with the natural distribution area (Dailing) as the control. We analyzed the regional variation characteristics, resource trade-off strategies, and key environmental driving factors of functional traits of first- to third-order fine roots. The results showed that, compared with the natural distribution area, the third-order root tissue density in the Nanmu decreased significantly by 7.2%, and the specific root area increased significantly by 15.0%. The nitrogen content of first- to third-order roots decreased significantly by 28.6%, 21.3% and 26.4%, respectively. The carbon content of second and third order roots decreased significantly by 4.2% and 4.0%, respectively. The third order root stele diameter decreased significantly by 20.8%; and the cortex thickness of first and third order roots increased significantly by 36.2% and 45.7%, respectively. In the Jiagedaqi, the third-order root diameter and tissue density decreased significantly by 14.8% and 9.0%, respectively; the specific root area increased significantly by 29.4%; the nitrogen content of first- to third-order roots decreased significantly by 32.0%, 27.1% and 28.1%, respectively. The third-order root carbon content decreased significantly by 3.9%. The stele diameter of first- to third-order roots decreased significantly by 30.8%, 33.5% and 22.0%, respectively. The cortex thickness of first and third order roots increased significantly by 39.3% and 27.3%, respectively. There were significant differences between the two introduction areas in certain functional traits. The first- to third-order roots of P. koraiensis exhibited a two-dimensional ecological strategy space, with the resource acquisition-conservation trade-off axis being domi-nant. Roots in the natural distribution area tended toward a resource-conservative strategy, while those in the introduction areas tended toward a resource-acquisitive strategy. The foraging-collaboration axis was secondary, with no difference between the two distribution areas. This differentiation in resource acquisition-conservation trade-off was mainly driven by the dual limitation of soil nutrients and water in the introduction areas, where insufficient resource supply promoted a resource-acquisitive strategy. However, this resource deficiency was mainly manifested in the functional traits of specific root orders rather than the overall root strategy. In conclusion, P. koraiensis could synergistically adjust root functional traits during the introduction process, shifting from a resource-conservative to a resource-acquisitive strategy, thereby adapting to the relatively nutrient- and water-limited environment of the Daxing’an Mountains.

Key words: introduction, Pinus koraiensis, functional trait, root ecological strategy, habitat variation