Community composition of phytopathogenic fungi significantly influences ectomycorrhizal fungal communities during subtropical forest succession.

IF 3.9 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Applied Microbiology and Biotechnology Pub Date : 2024-12-01 Epub Date: 2024-01-10 DOI:10.1007/s00253-023-12992-5
Meirong Chen, Jiazhi Yang, Chunquan Xue, Tieyao Tu, Zhiyao Su, Hanhua Feng, Miaomiao Shi, Gui Zeng, Dianxiang Zhang, Xin Qian
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Abstract

Ectomycorrhizal fungi (EMF) can form symbiotic relationships with plants, aiding in plant growth by providing access to nutrients and defense against phytopathogenic fungi. In this context, factors such as plant assemblages and soil properties can impact the interaction between EMF and phytopathogenic fungi in forest soil. However, there is little understanding of how these fungal interactions evolve as forests move through succession stages. In this study, we used high-throughput sequencing to investigate fungal communities in young, intermediate, and old subtropical forests. At the genus level, EMF communities were dominated by Sebacina, Russula, and Lactarius, while Mycena was the most abundant genus in pathogenic fungal communities. The relative abundances of EMF and phytopathogenic fungi in different stages showed no significant difference with the regulation of different factors. We discovered that interactions between phytopathogenic fungi and EMF maintained a dynamic balance under the influence of the differences in soil quality attributed to each forest successional stage. The community composition of phytopathogenic fungi is one of the strong drivers in shaping EMF communities over successions. In addition, the EMF diversity was significantly related to plant diversity, and these relationships varied among successional stages. Despite the regulation of various factors, the positive relationship between the diversity of phytopathogenic fungi and EMF remained unchanged. However, there is no significant difference in the ratio of the abundance of EMF and phytopathogenic fungi over the course of successions. These results will advance our understanding of the biodiversity-ecosystem functioning during forest succession. KEY POINTS: •Community composition of both EMF and phytopathogenic fungi changed significantly over forest succession. •Phytopathogenic fungi is a key driver in shaping EMF community. •The effect of plant Shannon's diversity on EMF communities changed during the forest aging process.

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植物病原真菌群落组成对亚热带森林演替过程中的外生菌根真菌群落有显著影响。
外生菌根真菌(EMF)可与植物形成共生关系,通过提供养分和抵御植物病原真菌来帮助植物生长。在这种情况下,植物群落和土壤特性等因素会影响森林土壤中 EMF 与植物病原真菌之间的相互作用。然而,人们对这些真菌之间的相互作用如何随着森林演替阶段的变化而演变知之甚少。在这项研究中,我们利用高通量测序技术调查了亚热带幼林、中林和老林中的真菌群落。在属的层面上,EMF群落以Sebacina、Russula和Lactarius为主,而Mycena是病原真菌群落中最丰富的属。在不同因素的调控下,不同阶段的电磁真菌和植物病原真菌的相对丰度没有明显差异。我们发现,在各森林演替阶段土壤质量差异的影响下,植物病原真菌和 EMF 之间的相互作用保持着动态平衡。植物病原真菌的群落组成是形成不同演替阶段 EMF 群落的主要驱动力之一。此外,EMF 多样性与植物多样性显著相关,而且这些关系在不同演替阶段有所不同。尽管有各种因素的调节,但植物病原真菌多样性与 EMF 之间的正相关关系保持不变。然而,在演替过程中,EMF 和植物病原真菌的丰度比例并无明显差异。这些结果将加深我们对森林演替过程中生物多样性-生态系统功能的理解。关键要点-EMF和植物病原真菌的群落组成在森林演替过程中发生了显著变化。-植物病原真菌是形成 EMF 群落的关键驱动力。-植物香农多样性对 EMF 群落的影响在森林衰老过程中发生了变化。
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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