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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1409-1416.doi: 10.13292/j.1000-4890.202605.019

• ·克隆植物的适应策略与生态功能·(专栏组织专家:钱建强、雒文涛、武 晶) • 上一篇    下一篇

凋落物对典型草原地下芽库及其与地上分株种群关系的影响

郑祥源1,田家泰1,李冬梅1,陶金1,张志铭1,王其兵2,钱建强1*   

  1. 1河南农业大学林学院, 郑州 450046; 2中国科学院植物研究所, 北京 100093)

  • 出版日期:2026-05-10 发布日期:2026-05-07

Effects of litter manipulation on belowground bud bank and its relationship with shoot population in a typical steppe of Inner Mongolia.

ZHENG Xiangyuan1, TIAN Jiatai1, LI Dongmei1, TAO Jin1, ZHANG Zhiming1, WANG Qibing2, QIAN Jianqiang1*   

  1. (1College of Forestry, Henan Agricultural University, Zhengzhou 450046, China; 2Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China).

  • Online:2026-05-10 Published:2026-05-07

摘要: 全球气候变化和人类活动深刻影响陆地生态系统结构和功能,改变凋落物积累的数量和质量。凋落物积累量的变化可能直接或间接影响草原生态系统植物种群维持与更新。然而,温带草原地下芽库、地上分株种群以及二者之间关系对凋落物变化的响应机制尚未阐明。本研究依托内蒙古典型草原长期凋落物处理实验平台,通过调查3种凋落物处理(去除和增加50%凋落物与对照)下的群落地下芽库和地上分株密度、群落净初级生产力(ANPP)以及关键土壤理化指标,旨在探究凋落物变化对温带草原植物借助地下芽库进行种群更新的影响机制。结果表明,与对照和添加凋落物处理相比,凋落物去除显著增加地下芽库与地上分株密度(P<0.05),而对单株芽数量(分生组织制约系数)无显著影响;结构方程模型(SEM)结果进一步表明,凋落物处理主要通过其直接效应影响群落地下芽密度和地上分株密度,而非通过影响ANPP和土壤环境产生的间接效应。研究表明,适当去除凋落物有助于促进典型草原借助地下芽库进行种群维持与更新,凋落物积累直接而非通过改变土壤理化性质影响草原植物种群营养更新过程。本研究揭示了凋落物积累对温带草原借助地下芽库进行种群更新的影响机制,为气候变化与人为干扰下的草原植被恢复与管理提供重要理论依据。


关键词: 芽库, 克隆性状, 凋落物积累, 全球变化, 种群更新

Abstract: Global climate change and human activities have profound influences on structure and function of terrestrial ecosystems, and alter the quantity and quality of litter. The changes in litter accumulation might directly and indirectly affect population maintenance and regeneration in grasslands. However, how belowground bud bank, shoot population, and their relationships respond to the changes in litter accumulation in temperate grassland has not been fully explored. Based on a long-term litter manipulation experimental platform in the typical steppe of Inner Mongolia, we measured belowground bud density, aboveground shoot density, annual net primary productivity (ANPP), and key soil physicochemical properties under three litter treatments (removal and addition of 50% litter, and the ambient condition as the control), aiming to clarify the effects of litter accumulation on population regeneration via belowground bud bank. Results showed that compared with the control and litter addition, litter removal significantly increased both belowground bud density and aboveground shoot density, but had little influences on bud number per shoot (i.e., meristem limitation index). Structural equation model (SEM) further confirmed that litter manipulation affected belowground bud bank and aboveground shoot population mainly by direct pathway, rather than indirectly though influencing ANPP and soil factors. Our study indicated that appropriate litter removal could facilitate population maintenance and regeneration via belowground bud bank in typical steppe, and that litter accumulation directly, rather than by altering soil environment, affect population regeneration in grasslands. Our study reveals the influencing mechanism of litter accumulation on population regeneration via belowground bud bank in temperate grasslands, and provides important theoretical basis for grassland restoration and management under climatic changes and human disturbances.


Key words: bud bank, clonal trait, litter accumulation, global change, population regeneration