生物多样性

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东亚第三纪孑遗植物三桠乌药表型和生理性状的演化格局与成因

叶俊伟1, 戴梦婧2, 田祥宇2, 施文婷2, 鲍蕾2, 葛剑平2, 王红芳2,*   

  1. 1. 西南山地森林资源保育与利用教育部重点实验室/云南省高校极小种群野生动物保育重点实验室/西南林业大学林学院, 昆明, 650224; 2. 生物多样性与生态工程教育部重点实验室/东北虎豹国家公园保护生态学国家林草局重点实验室/北京师范大学生命科学学院, 北京, 100875
  • 收稿日期:2026-04-20 修回日期:2026-06-09
  • 通讯作者: 王红芳

The evolutionary pattern and causes of phenotypic and physiological traits of the Tertiary relict plant Lindera obtusiloba in East Asia

Junwei Ye1, Mengjing Dai2, Xiangyu Tian2, Wenting Shi2, Lei Bao2, Jianping Ge2, Hongfang Wang2,*   

  1. 1 Key Laboratory of Forest Resources Conservation and Utilization in the Southwest Mountains of China, Ministry of Education/Key Laboratory for Conserving Wildlife with Small Populations in Yunnan/College of Forestry, Southwest Forestry University, Kunming 650224, China 

    2 National Forestry and Grassland Administration Key Laboratory for Conservation Ecology of Northeast Tiger and Leopard, Ministry of Education Key Laboratory for Biodiversity Science and Engineering & College of Life Sciences, Beijing Normal University, Beijing 100875, China

  • Received:2026-04-20 Revised:2026-06-09
  • Contact: Hongfang Wang

摘要: 东亚是第三纪孑遗植物的重要避难所, 分子地理研究已揭示其南北亚区间的分化历史, 然而性状演化的格局与其成因仍缺乏系统研究。本研究以三桠乌药(Lindera obtusiloba)为对象, 结合野外调查和同质园实验, 探究其表型和生理性状的地理分异格局与成因。通过主成分分析(PCA)探究北部、西南部和东南部种群叶性状的分布模式, 通过单因素方差分析(ANOVA)比较种子重量及幼苗物候、生长速率和光合能力的差异, 通过冗余分析(RDA)和多元线性回归分析(MLR)检验环境与性状间的相关性。结果显示: 三桠乌药叶大小和叶形存在一定变异, 西南部与其他区域的差异最明显, 同质园中东南部和其他区域间差异最明显, 温度、光照和土壤与叶性状显著相关(r > 0.5)。在种子中, 北部和南部种群间的颜色、重量和成熟时间差异最大, 东南部和西南部种群间次之, 环境因子与种子重量间无显著相关性。在同质园中, 萌芽和展叶物候在不同区域差异显著, 在其他物候中, 北部与东南部间的差异更明显。西南部幼苗存活率最低, 东南部幼苗生长速率最高且变异最大。三个区域幼苗的光饱和点无显著差异; 北部的光补偿点最低, 东南部的最大净光合速率最高。因此, 三桠乌药性状存在明显地理格局, 叶性状主要由环境因子控制, 种子和生理性状主要由遗传因素影响。该研究讨论了性状演化及其与环境和遗传因素的相关性, 为第三纪孑遗植物的进化演化历史研究提供了有价值的依据。

关键词: 野外调查, 同质园实验, 叶形, 种子, 物候, 光合作用

Abstract

Background & Aims: East Asia represents a crucial refugium for Tertiary relict flora. Molecular phylogeographic studies have elucidated the divergence history between its northern and southern subregions. Nevertheless, current understanding regarding the evolutionary patterns and underlying drivers of traits remains relatively limited. 

Methods: We investigated Lindera obtusiloba by integrating field surveys and common-garden experiments to examine the geographic distribution patterns and drivers of its phenotypic and physiological trait variation. We applied principal component analysis (PCA) to characterize leaf-trait distribution patterns, and used ANOVA, redundancy analysis and multiple linear regression analysis to quantify population differences and environment-trait correlations. 

Results: Leaf size and shape exhibited certain variations, with the most pronounced differences observed in the southwest region relative to other regions. In the common garden, the southeast region showed the most significant differences in leaf traits compared with other regions, and temperature, light, and soil significantly correlated with leaf traits. For seeds, the greatest differences in color, weight, and maturity time were detected between northern and southern populations, followed by differences between the southeast and southwest regions. We found no significant correlation between environmental factors and seed weight. In the common garden, germination and phenological development differed significantly among plants from different regions. Regarding other phenological characteristics, we observed more obvious differences between the northern and southeast regions. The seedling survival rate was lowest in the southwest region, while the seedling growth rate and magnitude of variation were highest in the southeast region. We detected no significant differences in the light saturation point of seedlings from the three regions; the light compensation point was the lowest in seedlings from the northern region, and the maximum net photosynthetic efficiency was the highest in seedlings from the southeast region. 

Conclusions: Accordingly, the phenotypic traits of L. obtusiloba exhibit a clear geographical distribution pattern. Environmental factors predominantly regulate leaf-related traits, whereas genetic factors primarily shape seed-related and physiological traits. This research analyzes the associations among trait evolution, genetic differentiation, and environmental variables, offering substantive empirical evidence for investigating the evolutionary trajectories of Tertiary relict plants.

Key words: field investigation, common garden experiment, leaf shape, seeds, phenology, photosynthesis