Tang Xiaopeng, He Haoyun, Qin Qiang, Xu Fei, Liu Fei, Zhang Fubin
College of Environmental Science and Engineering China West Normal University Nanchong China.
Institute of Hydrobiology Chinese Academy of Sciences Wuhan Hubei China.
Ecol Evol. 2025 Feb 6;15(2):e70976. doi: 10.1002/ece3.70976. eCollection 2025 Feb.
Understanding biodiversity is essential for preserving the stability of river ecosystems. However, the impact of landscape configurations and seasonal variations on biodiversity within undammed river ecosystems remains unexplored. Therefore, we selected the Chishui River-a naturally flowing tributary of the upper Yangtze River-for a survey of periphytic algae. The present study focuses on the seasonal fluctuations in the -diversity of periphytic algae within the Chishui River and its correlation with the surrounding landscape patterns. Our findings indicate that there is a substantial influence of seasonal variations on the community structure and -diversity of these algae within the Chishui River ecosystem. Concurrently, we observed that the turnover component predominantly contributes to -diversity. In light of these findings, we recommend that conservation measures be implemented across the entire Chishui River basin to safeguard the regional biodiversity. Redundancy analysis elucidated that water temperature, conductivity, and pH were the primary environmental drivers shaping the structure of periphytic algal communities. Furthermore, additional analyses using a random forest model indicated that landscape fragmentation and complexity were key determinants of -diversity in algal communities. Notably, the number of landscape patches was strongly correlated with the -diversity of periphytic algae. It is important to highlight that maintaining an optimal balance between the number of patches and their size is crucial for enhancing the ecosystem's capacity to preserve biodiversity. In summary, our findings provide insights into the interplay between biodiversity and land-use practices within complex riverine environments, thereby offering a scientific foundation for the conservation and management of these ecosystems.
了解生物多样性对于维护河流生态系统的稳定性至关重要。然而,景观格局和季节变化对未筑坝河流生态系统内生物多样性的影响仍未得到探索。因此,我们选择了长江上游的天然支流赤水河进行周丛藻类调查。本研究聚焦于赤水河周丛藻类α多样性的季节波动及其与周边景观格局的相关性。我们的研究结果表明,季节变化对赤水河生态系统内这些藻类的群落结构和α多样性有重大影响。同时,我们观察到周转率成分对α多样性的贡献主要。鉴于这些发现,我们建议在整个赤水河盆地实施保护措施,以保护区域生物多样性。冗余分析表明,水温、电导率和pH值是塑造周丛藻类群落结构的主要环境驱动因素。此外,使用随机森林模型的进一步分析表明,景观破碎化和复杂性是藻类群落α多样性的关键决定因素。值得注意的是,景观斑块数量与周丛藻类的α多样性密切相关。需要强调的是,在斑块数量及其大小之间保持最佳平衡对于提高生态系统保护生物多样性的能力至关重要。总之,我们的研究结果揭示了复杂河流环境中生物多样性与土地利用实践之间的相互作用,从而为这些生态系统的保护和管理提供了科学依据。