Population dynamics and its relationship with functional traits in different succession stages of temperate mixed coniferous broad-leaved forest in Northeast China.

Q3 Environmental Science
Wei-Qiang Shan, Shuai Fang, Jin Yin, Jing Ren, Fei Lin, Zi-Kun Mao, Zhan-Qing Hao, Xu-Gao Wang
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Abstract

Functional traits regulate plant response to environmental changes, with consequences on population dynamics. However, how plant functional traits impact population dynamics, including growth, mortality, and recruitment, remains elusive in temperate forests across different successional stages. In this study, we compiled data on population dynamics and eight functional traits, encompassing hydraulic, wood, and leaf traits, from 35 species commonly found in a secondary poplar-birch forest and a broad-leaved Korean pine forest in Northeast China. We quantified the intrinsic relationships between plant population dynamics and assessed how plant functional traits influenced these dynamics. The results demonstrated a gradual increase in the correlation among population dynamics as forest succession progressed. In the secondary forest, tree growth rate and mortality rate were negatively correlated, while growth-death rate and growth-recruitment rate were not related. Conversely, in the broad-leaved Korean pine forest, there was a significant negative correlation between tree growth rate and mortality rate, as well as between growth rate and recruitment rate, while tree mortality rate positively correlated with recruitment rate. Additionally, functional traits effectively predicted population dynamics, but the predictive ability varied across successional stages. Functional traits, particularly xylem hydraulic traits (e.g., Huber value) and anatomical traits (e.g., mean xylem conduit diameter), were stronger predictors of tree growth, mortality, and recruitment rates at the late successional stage compared with the early stage. These findings indicated that population dynamics and functional traits exhibited strong regularity in the late successional stage of broad-leaved Korean pine forests.

中国东北温带针阔混交林不同演替阶段的种群动态及其与功能特征的关系
功能特征调节植物对环境变化的反应,并对种群动态产生影响。然而,在不同演替阶段的温带森林中,植物功能性状如何影响种群动态,包括生长、死亡率和新陈代谢,仍然是一个未知数。在本研究中,我们汇编了中国东北地区杨桦次生林和朝鲜松阔叶林中常见的 35 个物种的种群动态和 8 个功能性状的数据,包括水力、木质和叶片性状。我们量化了植物种群动态之间的内在关系,并评估了植物功能特性对这些动态的影响。结果表明,随着森林演替的进行,种群动态之间的相关性逐渐增强。在次生林中,树木的生长率和死亡率呈负相关,而生长-死亡率和生长-更新率则不相关。相反,在韩国松阔叶林中,树木生长率和死亡率之间以及生长率和招募率之间呈显著负相关,而树木死亡率与招募率呈正相关。此外,功能特征能有效预测种群动态,但预测能力在不同演替阶段存在差异。与早期阶段相比,功能特征,尤其是木质部水力特征(如 Huber 值)和解剖特征(如木质部导管平均直径),在演替晚期阶段对树木生长、死亡率和新梢率的预测能力更强。这些研究结果表明,韩国松阔叶林在演替晚期的种群动态和功能特征表现出很强的规律性。
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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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