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通过微生物群落动态评估亚高山生态系统中对气候敏感树木的健康状况。

Assessing the health of climate-sensitive trees in a subalpine ecosystem through microbial community dynamics.

作者信息

Kang Bo Ram, Kim Soo Bin, Hong Jin-Kyung, Ahn Seok Hyun, Kim Jinwon, Lee Nayeon, Lee Tae Kwon

机构信息

Department of Environmental and Energy Engineering, Yonsei University, Wonju 26493, Republic of Korea.

Climate Change Research Center, Korea National Park Research Institute, Wonju 26441, Republic of Korea.

出版信息

Sci Total Environ. 2024 Dec 20;957:177724. doi: 10.1016/j.scitotenv.2024.177724. Epub 2024 Nov 29.

Abstract

Climate change has significantly affected the subalpine ecosystems, leading to mass die-offs of the Korean fir tree, a key climate-sensitive species in these environments. Proactive analysis of the phenotypic responses of these trees to climate change or the establishment of preemptive strategies for trees to adapt to these environmental changes remains a challenge. The current study aimed to investigate the impact of climate change on the health of Korean fir (Abies koreana) in the subalpine ecosystem of Jirisan Mountain, South Korea. We integrated soil physicochemical analyses, microbial community dynamics, neutral community model, and network analyses to examine the relationships between tree health and microbial communities. Our findings revealed significant changes in soil chemical properties, including pH and nutrient concentrations, across the various health statuses of trees. Microbial community analysis demonstrated shifts in bacterial and fungal communities corresponding to the health continuum of the trees, with decreased diversity and altered composition in the declining trees. A remarkable increase in modularity of the microbial network and a clear transition from stochastic to deterministic microbial community assembly processes were observed as the trees progressed from a healthy to a dead stage. Two bacterial genera, Bradyrhizobium and Burkholderia, along with an unclassified fungal group from Basidiomycota, were identified as key microbial indicators of good tree health. This study highlighted the importance of microbial communities as bioindicators for assessing the health of subalpine ecosystem and its resilience to climate change, offering valuable insights into the conservation and management strategies for subalpine ecosystems.

摘要

气候变化已对亚高山生态系统产生了重大影响,导致冷杉大量死亡,冷杉是这些环境中对气候敏感的关键物种。对这些树木对气候变化的表型反应进行前瞻性分析,或为树木建立适应这些环境变化的先发制人策略,仍然是一项挑战。当前的研究旨在调查气候变化对韩国智异山亚高山生态系统中冷杉(朝鲜冷杉)健康状况的影响。我们综合了土壤理化分析、微生物群落动态、中性群落模型和网络分析,以研究树木健康与微生物群落之间的关系。我们的研究结果表明,在树木的不同健康状态下,土壤化学性质(包括pH值和养分浓度)发生了显著变化。微生物群落分析表明,细菌和真菌群落随着树木健康状况的连续变化而发生转变,在衰退树木中多样性降低且组成改变。随着树木从健康状态发展到死亡状态,观察到微生物网络的模块性显著增加,以及微生物群落组装过程从随机向确定性的明显转变。两个细菌属,即慢生根瘤菌属和伯克霍尔德菌属,以及一个来自担子菌门的未分类真菌类群,被确定为树木健康状况良好的关键微生物指标。这项研究强调了微生物群落作为评估亚高山生态系统健康及其对气候变化恢复力的生物指标的重要性,为亚高山生态系统的保护和管理策略提供了有价值的见解。

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