植物生态学报 ›› 2026, Vol. 50 ›› Issue (预发表): 0-.DOI: 10.17521/cjpe.2026.0004

• •    下一篇

神农架海拔梯度与人为干扰下土壤遗留效应对一年生菊科植物的影响

陈静, 励洲旸, 卢文雄, 孙艺函, 任芝坤, 孙燕   

  1. 华中农业大学, 430000
    爱尔兰都柏林三一学院, D02 PN40
  • 收稿日期:2026-01-06 修回日期:2026-03-05 出版日期:2026-06-20
  • 基金资助:
    国家自然科学基金(32522062); 国家自然科学基金(32201438)

Soil legacy effects mediate the performance of annual Asteraceae across elevational gradients and human disturbance in Shennongjia

Chen Jing, Li Yang Zhou, Lu Xiong Wen, Sun Han Yi, Ren Kun Zhi, Sun Yan   

  1. , Huazhong Agricultural University 430000,
    , D02 PN40,
  • Received:2026-01-06 Revised:2026-03-05 Online:2026-06-20
  • Supported by:
    the National Natural Science Foundation of China(32522062); the National Natural Science Foundation of China(32201438)

摘要: 环境梯度和人为干扰是影响土壤微生物群落以及生物多样性的关键因素,但二者对土壤遗留过程及植物生长的综合影响尚不明确。本研究以湖北省神农架为研究区域,沿500–3000 m的海拔梯度设置低(Low disturbance)、中(Medium disturbance)和高(High disturbance)三种干扰强度样地,结合野外采样与温室同质园实验,系统评估了海拔梯度和人为干扰对土壤微生物群落结构及其遗留效应对植物生长的影响。海拔显著降低了土壤细菌和真菌的 α 多样性,并显著改变了微生物群落组成,而人为干扰对群落结构的影响相对较弱。土壤遗留效应在不同干扰水平下表现出显著差异,其中中度干扰显著放大了遗留效应对植物总生物量的正向调控作用,而低、高干扰下遗留效应减弱或转为中性。遗留效应对于根冠比的影响表现出显著的海拔与干扰交互作用,表明植物资源分配策略对土壤历史条件的响应具有强烈环境依赖性。结构方程模型进一步表明,海拔主要通过调控真菌群落对植物性状产生间接影响,而真菌与细菌群落间的相互作用调节了土壤遗留效应的方向与强度。总体而言,土壤遗留效应是连接海拔梯度、人为干扰与植物生长响应的关键机制,其生态重要性在中度干扰条件下尤为突出。本研究强调了在预测全球变化背景下亚热带山地植被动态时,纳入土壤遗留效应的重要性。

关键词: 神农架, 海拔, 干扰, 土壤遗留效应, 一年生菊科植物

Abstract: Aims Environmental gradients and human disturbance are key drivers affecting soil microbial communities and biodiversity, yet their combined effects on soil legacy processes and subsequent plant growth remain poorly understood. Methods We conducted a study in the Shennongjia region of Hubei Province, China. Plots characterized by three disturbance levels—Low, Medium, and High disturbance—were established along an elevational gradient ranging from 500 to 3000 m. By combining field sampling with a greenhouse common garden experiment, we systematically evaluated the impacts of elevational gradients and human disturbance on soil microbial communities and the resulting soil legacy effects on plant growth. Important findings Elevation significantly reduced the α-diversity of soil bacteria and fungi and markedly altered microbial community composition, whereas the direct effects of human disturbance on microbial community structure were relatively weak. Soil legacy effects varied significantly across human disturbance levels, with medium disturbance markedly amplifying the positive effects of soil legacies on plant total biomass, while these effects weakened or became neutral under low and high disturbance conditions. The legacy effects on the root-to-shoot ratio showed a significant interaction between elevation and disturbance, indicating that the response of plant resource allocation strategies to soil historical conditions is strongly environmentally dependent. Structural Equation Modeling (SEM) further revealed that elevation indirectly influenced plant traits primarily through its effects on fungal communities, while interactions between fungal and bacterial communities regulated the direction and magnitude of soil legacy effects. Overall, soil legacy effects serve as a key mechanism linking elevational gradients, human disturbance, and plant growth responses, with their ecological importance being particularly pronounced under medium disturbance conditions. This study highlights the necessity of incorporating soil legacy effects when predicting subtropical mountain vegetation dynamics in the context of global change.

Key words: Shennongjia, elevation, disturbance, soil legacy effect, annual Asteraceae species