Encroachment drives facilitation at alpine shrublines

IF 3.8 1区 农林科学 Q1 FORESTRY Forest Ecosystems Pub Date : 2024-01-01 DOI:10.1016/j.fecs.2024.100168
Yafeng Wang , Eryuan Liang , J. Julio Camarero
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Abstract

Ongoing encroachment is driving recent alpine shrubline dynamics globally, but the role of shrub-shrub interactions in shaping shrublines and their relationships with stem density changes remain poorly understood. Here, the size and age of shrubs from 26 Salix shrubline populations along a 900-km latitudinal gradient (30°–38° N) were measured and mapped across the eastern Tibetan Plateau. Point pattern analyses were used to quantify the spatial distribution patterns of juveniles and adults, and to assess spatial associations between them. Mean intensity of univariate and bivariate spatial patterns was related to biotic and abiotic variables. Bivariate mark correlation functions with a quantitative mark (shrub height, basal stem diameter, crown width) were also employed to investigate the spatial relationships between shrub traits of juveniles and adults. Structural equation models were used to explore the relationships among conspecific interactions, patterns, shrub traits and recruitment dynamics under climate change. Most shrublines showed clustered patterns, suggesting the existence of conspecific facilitation. Clustered patterns of juveniles and conspecific interactions (potentially facilitation) tended to intensify with increasing soil moisture stress. Summer warming before 2010 triggered positive effects on population interactions and spatial patterns via increased shrub recruitment. However, summer warming after 2010 triggered negative effects on interactions through reduced shrub recruitment. Therefore, shrub recruitment shifts under rapid climate change could impact spatial patterns, alter conspecific interactions and modify the direction and degree of shrublines responses to climate. These changes would have profound implications for the stability of alpine woody ecosystems.

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蚕食推动了高山灌木线的促进作用
灌木的不断蚕食推动了全球高山灌木线的近期动态变化,但灌木与灌木之间的相互作用在灌木线形成过程中的作用及其与茎干密度变化之间的关系仍然鲜为人知。在此,我们对青藏高原东部沿900公里纬度梯度(30-38°N)的26个沙柳灌木线种群的灌木大小和年龄进行了测量和绘图。采用点模式分析来量化幼体和成体的空间分布模式,并评估它们之间的空间关联。单变量和双变量空间模式的平均强度与生物和非生物变量相关。还采用了带有定量标记(灌木高度、茎基直径、冠幅)的二元标记相关函数来研究灌木幼体和成体特征之间的空间关系。利用结构方程模型探讨了气候变化下同种间相互作用、模式、灌木特征和招募动态之间的关系。大多数灌木线呈现聚类模式,表明存在同种促进作用。随着土壤水分胁迫的增加,幼体和同种相互作用(潜在的促进作用)的集群模式趋于加强。2010年之前的夏季变暖通过增加灌木招募对种群相互作用和空间模式产生了积极影响。然而,2010 年后的夏季气候变暖则通过减少灌木招募对种群互动产生了负面影响。因此,灌木在快速气候变化下的迁移可能会影响空间模式,改变同种间的相互作用,并改变灌木线对气候反应的方向和程度。这些变化将对高山木本生态系统的稳定性产生深远影响。
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来源期刊
Forest Ecosystems
Forest Ecosystems Environmental Science-Nature and Landscape Conservation
CiteScore
7.10
自引率
4.90%
发文量
1115
审稿时长
22 days
期刊介绍: Forest Ecosystems is an open access, peer-reviewed journal publishing scientific communications from any discipline that can provide interesting contributions about the structure and dynamics of "natural" and "domesticated" forest ecosystems, and their services to people. The journal welcomes innovative science as well as application oriented work that will enhance understanding of woody plant communities. Very specific studies are welcome if they are part of a thematic series that provides some holistic perspective that is of general interest.
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