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冷杉根际真菌群落的比较分析

Comparative Analysis of Rhizosphere Fungal Communities in Korean Fir Trees.

作者信息

Ko Young Min, Gang Geun-Hye, Jung Dae Ho, Kwak Youn-Sig

机构信息

Department of Plant Medicine, Gyeongsang National University, Jinju, Republic of Korea.

National Park Institute for Wildlife Conservation, Muju, Republic of Korea.

出版信息

Mycobiology. 2024 Oct 10;52(5):287-297. doi: 10.1080/12298093.2024.2397857. eCollection 2024.

Abstract

The Korean fir (), a native coniferous species of Korea, predominantly inhabits the subalpine zone. Recently, this species has experienced a significant population decline, primarily attributed to environmental changes in the subalpine zone driven by global warming. Efforts to prevent the extinction of the Korean fir are underway, with a predominant focus on abiotic factors contributing to its decline. However, there is a notable lack of research on the complex interactions between microbial communities and Korean fir, particularly concerning how these interactions vary with the health status of the trees and their impact on population sustainability. Therefore, this study aimed to elucidate the rhizosphere fungal community structure associated with Korean fir trees in Jirisan National Park. We examined different habitat types, including the rhizospheres of native, cultivated, and dead Korean fir and bulk soil. Our findings revealed that the rhizosphere fungal community in the natural habitat of Korean fir predominantly comprises Agaricomycetes. Furthermore, the fungal community structure was more responsive to habitat type variations than seasonal changes. These findings provide basic information for conserving this endangered species and developing alternative habitats for the Korean fir.

摘要

冷杉是韩国本土的针叶树种,主要生长在亚高山带。近年来,该物种的种群数量大幅下降,主要原因是全球变暖导致亚高山带环境变化。目前正在努力防止冷杉灭绝,主要关注导致其数量下降的非生物因素。然而,关于微生物群落与冷杉之间的复杂相互作用,特别是这些相互作用如何随树木健康状况变化以及它们对种群可持续性的影响,研究明显不足。因此,本研究旨在阐明智异山国家公园内与冷杉相关的根际真菌群落结构。我们研究了不同的栖息地类型,包括原生、栽培和死亡冷杉的根际以及大量土壤。我们的研究结果表明,冷杉自然栖息地的根际真菌群落主要由伞菌纲组成。此外,真菌群落结构对栖息地类型变化的反应比对季节变化的反应更敏感。这些发现为保护这种濒危物种和为冷杉开发替代栖息地提供了基础信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2158/11619022/a2c5a461ce96/TMYB_A_2397857_F0001_C.jpg

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