植物生态学报 ›› 2025, Vol. 49 ›› Issue (5): 1-.DOI: 10.17521/cjpe.2024.0438

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珍稀濒危植物天山梣林龄结构及种群动态

贾妍妍, 柳华清, 解欣然, 王博, 张维, 杨允菲   

  1. 伊犁师范大学, 835000 中国
  • 收稿日期:2024-12-05 修回日期:2025-04-08 出版日期:2025-05-20 发布日期:2025-05-16

Age structure and population dynamics of rare and endangered Fraxinus sogdiana, China

jia yanyan, liu Hua-Qing, XIE xinran, Wang Bo, zhang wei, YANG Yun-Fei   

  1. , Yili Normal University 835000, China
  • Received:2024-12-05 Revised:2025-04-08 Online:2025-05-20 Published:2025-05-16

摘要: 在新疆伊犁小叶白蜡国家级自然保护区对国家二级濒危植物天山梣(Fraxinus sogdiana)进行大样本调查, 以了解该种群现存状态, 预测种群发展趋势。以径级结构代替年龄结构, 编制种群静态生命表, 分析种群结构, 绘制种群存活曲线、死亡率曲线和生存分析函数曲线, 计算种群动态指数, 采用谱分析探讨种群波动周期。结果表明: 1)喀什河东、喀什河西天山梣种群和种群总体均为增长型年龄结构, 且存活曲线均趋于Deevey-II型; 2)喀什河东种群和种群总体死亡高峰在IV、VII、X龄级, 喀什河西种群死亡高峰仅Ⅴ龄级; 3)喀什河东、喀什河西种群和种群总体在忽略外部干扰时的动态变化指数(Vpi) 和受外部干扰时的动态变化指数 均大于0, 显示均为增长型种群, 喀什河东种群 更趋近0, 即更能抵御外部随机环境 干扰; 4)生存分析显示, 不同生境种群的生存率和累计死亡率均在II–III龄级达到平衡, 喀什河东种群危险率曲线波动幅度较 小, 喀什河东相对更适合种群生存; 5)谱分析表明, 天山梣种群的波动主要受其自身生物学特征控制, 喀什河东种群和种群总体还存在大周期内多谐波迭加的小周期波动特征。建议保护和改善天山梣生存环境, 精准抚育第Ⅰ、Ⅱ龄级个体, 促进种群的天然更新和发展。

关键词: 天山梣, 濒危植物, 种群结构, 静态生命表, 生存分析, 谱分析

Abstract: Aims To understand the current state of the population of Fraxinus sogdiana, a second-grade endangered species in China, and predict its development trend, a large sample survey was conducted in the Xinjiang Ili Fraxinus sogdiana National Nature Reserve. Methods By replacing the age structure with the diameter at breast height structure, a population static life table was compiled and related population structure was analyzed. The survival curve, mortality curve and survival analysis function curve were drawn, and population dynamic index was calculated, and the population fluctuation cycle was explored via using spectral analysis. Important findings 1) The populations of F. sogdiana on the east and west of the Kashi River and total population exhibited growing age structure, with the survival curves towards Deevey-II type. 2) The mortality peaks for the population on the east of the Kashi River and total population were in the age classes of Ⅳ, Ⅶ, and Ⅹ, while those on the west of Kashi River population class had a mortality peak in age class V. 3) The dynamic change index ignoring the external interference (Vpi) and dynamic change index under external interference of the populations on the east and west of the Kashi River and total population were greater than 0, indicating that they were growing-type populations. But the of population on the east of the Kashi River was close to 0, suggesting that it was more resistant to external random environmental interference. 4) Survival analysis revealed that the survival rate and cumulative mortality rate of populations in different habitats reached equilibrium in age classes II–III. The hazard rate curve of the population on the east of the Kashi River exhibited relatively smaller fluctuations, indicating that this area is more suitable for the growth of F. sogdiana. 5) Spectral analysis showed that the fluctuations of F. sogdiana populations are primarily controlled by their own biological characteristics. The population on the east of the Kashi River and total population exhibited small cycle fluctuation characteristics with multiple harmonics superimposed during the large cycle. It is recommended protecting and improving habitat of F. sogdiana, accurately nurturing individuals in age classes I and II, and promoting the natural regeneration and development of the population.

Key words: Fraxinus sogdiana, endangered species, population structure, static life table, survival analysis, spectral analysis