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荒漠绿洲过渡带土壤驱动的植物群落功能性状与多样性耦合关系

Soil-Driven Coupling of Plant Community Functional Traits and Diversity in Desert-Oasis Transition Zone.

作者信息

Fan Zhuopeng, Xie Tingting, Shan Lishan, Wang Hongyong, Ma Jing, Yue Yuanzhi, Yuan Meng, Li Quangang, He Cai, Zhao Yonghua

机构信息

College of Forestry, Gansu Agricultural University, Lanzhou 730070, China.

Wuwei Academy of Forestry, Wuwei, 733000, China.

出版信息

Plants (Basel). 2025 Jun 30;14(13):1997. doi: 10.3390/plants14131997.

Abstract

Understanding the relationships between diversity and functional traits in plant communities is essential for elucidating ecosystem functions, forecasting community succession, and informing ecological restoration efforts in arid regions. Although the current research on plant functional traits and diversity has improved our ability to predict ecological functions, there are still many problems, such as how environmental changes affect the relationship between species diversity and plant functional traits, and how these interactions affect plant community functions. We examined the relationships among leaf and fine root functional traits, species diversity, and functional diversity at the community level, along with their environmental interpretations, in a plant community within the desert-oasis transition zone of the Hexi Corridor, where habitats are undergoing significant small-scale changes. During dune succession, plant community composition and diversity exhibited significant variation. Plants are adapted to environmental changes through synergistic combinations of above-ground and below-ground traits. Specifically, plants in fixed dunes adopted a "slow investment" strategy, while those in semi-fixed and mobile dunes employed a "fast investment" approach to resource acquisition. A strong coupling was observed between plant community functional traits and species diversity. Soil phosphorus content and compactness emerged as primary factors influencing differences in plant community functional traits and composition. These soil factors indirectly regulated fine root functional traits and diversity by affecting species diversity, thereby driving community succession. Our study elucidates the "soil-diversity-community functional trait" linkage mechanisms in the successional process of desert plants. This research provides scientific support for the restoring and reconstruction of degraded ecosystems in arid zones.

摘要

了解植物群落中多样性与功能性状之间的关系对于阐明生态系统功能、预测群落演替以及指导干旱地区的生态恢复工作至关重要。尽管目前关于植物功能性状和多样性的研究提高了我们预测生态功能的能力,但仍存在许多问题,例如环境变化如何影响物种多样性与植物功能性状之间的关系,以及这些相互作用如何影响植物群落功能。我们研究了河西走廊沙漠 - 绿洲过渡带一个植物群落中叶片和细根功能性状、物种多样性和功能多样性之间的关系,以及它们的环境解读,该地区的栖息地正在经历显著的小尺度变化。在沙丘演替过程中,植物群落组成和多样性表现出显著变化。植物通过地上和地下性状的协同组合来适应环境变化。具体而言,固定沙丘中的植物采用“缓慢投资”策略,而半固定和流动沙丘中的植物则采用“快速投资”方式获取资源。观察到植物群落功能性状与物种多样性之间存在强耦合关系。土壤磷含量和紧实度是影响植物群落功能性状和组成差异的主要因素。这些土壤因素通过影响物种多样性间接调节细根功能性状和多样性,从而推动群落演替。我们的研究阐明了沙漠植物演替过程中的“土壤 - 多样性 - 群落功能性状”联系机制。这项研究为干旱地区退化生态系统的恢复和重建提供了科学支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e817/12251815/47eacac1938f/plants-14-01997-g001.jpg

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