Characterization of ectomycorrhizal fungal community of Abies Pindrow using sporocarp sampling, morphotyping, and metabarcoding through next-generation sequencing.

IF 2.3 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY International Microbiology Pub Date : 2025-01-01 Epub Date: 2024-05-08 DOI:10.1007/s10123-024-00522-w
Ashwani Tapwal, Neha Sharma
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Abstract

Abies pindrow, commonly known as the West-Himalayan Fir, holds great ecological importance as a native tree species in the Himalayas. Beyond its value as a fuel and timber source, it serves as a keystone species within the ecosystem. However, over recent years, extensive degradation and deforestation have afflicted A. pindrow forests. Utilizing ectomycorrhizal fungal symbionts of A. pindrow could prove pivotal in restoring these deteriorated forests. This study aimed to evaluate the diversity and composition of the ectomycorrhizal fungal community associated with A. pindrow. We employed ectomycorrhizal root tip morphotyping, sporocarp sampling, and Illumina MiSeq metabarcoding of the ITS region of fungal nrDNA. The ectomycorrhizal root tips were categorized into 10 morphotypes based on their morphological characteristics, exhibiting an average colonization rate of 74%. Sporocarp sampling revealed 22 species across 10 genera, with Russula being the most prevalent. The metabarcoding yielded 285,148 raw sequences, identifying 326 operational taxonomic units (OTUs) belonging to 193 genera, 114 families, 45 orders, 22 classes, and 6 divisions. Of these, 36 OTUs across 20 genera were ectomycorrhizal, constituting 63.1% of the fungal community. Notably, Tuber was the most abundant, representing 37.42% of the fungal population, followed by Russula at 21.06%. This study provides a comprehensive understanding of mycorrhizal symbionts of A. pindrow. The findings hold significant implications for utilizing dominant ectomycorrhizal fungi in reforestation endeavors aimed at restoring this important Himalayan conifer.

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利用孢子囊取样、形态分型和新一代测序技术确定松柏外生菌根真菌群落的特征。
西喜马拉雅冷杉(Abies pindrow)是喜马拉雅山脉的本土树种,具有重要的生态意义。除了作为燃料和木材来源的价值外,它还是生态系统中的关键物种。然而,近年来,大面积的森林退化和滥砍滥伐给松柏林造成了影响。利用松柏林树的外生菌根真菌共生体对恢复这些退化的森林至关重要。本研究的目的是评估与松鸦相关的外生菌根真菌群落的多样性和组成。我们采用了外生菌根顶端形态分型、孢子囊取样和 Illumina MiSeq 真菌 nrDNA 的 ITS 区域代谢编码。根据外生菌根尖的形态特征,将其分为 10 种形态类型,平均定植率为 74%。孢子囊取样发现了 10 个属的 22 个物种,其中 Russula 属最为普遍。代谢编码产生了 285,148 条原始序列,确定了 326 个操作分类单元(OTU),分别属于 193 属、114 科、45 目、22 类和 6 分区。其中,20 个属的 36 个 OTU 属于外生菌根真菌,占真菌群落的 63.1%。值得注意的是,块菌的数量最多,占真菌群落的 37.42%,其次是 Russula,占 21.06%。这项研究提供了对松鸦菌根共生体的全面了解。研究结果对于在植树造林工作中利用优势外生菌根真菌恢复这种重要的喜马拉雅针叶树具有重要意义。
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来源期刊
International Microbiology
International Microbiology 生物-生物工程与应用微生物
CiteScore
5.50
自引率
3.20%
发文量
67
审稿时长
3 months
期刊介绍: International Microbiology publishes information on basic and applied microbiology for a worldwide readership. The journal publishes articles and short reviews based on original research, articles about microbiologists and their work and questions related to the history and sociology of this science. Also offered are perspectives, opinion, book reviews and editorials. A distinguishing feature of International Microbiology is its broadening of the term microbiology to include eukaryotic microorganisms.
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