Pinus sylvestris L. 地理起源对普通花园实验中真菌和细菌内生菌群落和共生的影响。

IF 3.7 2区 生物学 Q2 MICROBIOLOGY
Microbiology spectrum Pub Date : 2024-10-03 Epub Date: 2024-09-09 DOI:10.1128/spectrum.00807-24
Pulak Maitra, Katarzyna Hrynkiewicz, Agnieszka Szuba, Adrianna Niestrawska, Joanna Mucha
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引用次数: 0

摘要

地下微生物,特别是内生菌,通过获取养分和增强对非生物性和生物性胁迫的抵抗力,对植物的生长和功能起着至关重要的作用。与植物系统发育和生物距离相比,人们对物种内寄主植物的起源对根部内生真菌和细菌的组成和相互作用网络的影响探讨较少。本研究调查了地理起源对欧洲赤松(Pinus sylvestris L.)根内生真菌和细菌微生物组的影响。研究人员在两个不同的季节收获了生长在一个普通花园中的植物根系,这些根系来自六个不同的地方。利用 Illumina MiSeq 测序技术分析了真菌和细菌微生物组。内生真菌和细菌的操作分类单元(OTU)丰富度没有因树木产地或季节而出现显著差异。不过,内生真菌的香农多样性指数受季节影响。内生真菌和细菌群落的组成受树木产地和季节的影响,与寄主根系的生化参数(如淀粉、非结构性碳水化合物总量、碳、氮)以及气候因素(如年平均降水量和温度)相关。此外,特定内生真菌和细菌的丰度在不同产地和季节也有所不同。真菌和细菌内生菌在马尾松体内共生网络的复杂性也因地理起源和季节而异。这项研究强调了与树木原产地相关的生化和气候因素在形成与内生菌群落的相互作用方面的重要作用,可能会影响植物的健康和对不同环境的适应性:这项研究加深了我们对植物生态型和季节变化如何影响苏格兰松树(Pinus sylvestris)根部内生菌群落的理解。通过研究生长在一个普通花园中的不同产地的树木,该研究强调了树木产地和季节在塑造真菌和细菌群落及共生网络中的作用。重要的是,这项研究表明,树木的起源会影响根部内生菌的组成和相互作用网络,并且取决于季节。研究结果表明,与树木起源相关的根部生化特征和气候条件(如温度、降水)对决定内生菌群落的组合至关重要。这种认识可以为提高植物健康和对不同环境的适应能力带来创新战略,从而促进林业和自然保护工作。这项研究强调了植物与微生物相互作用的复杂性,以及采用综合方法研究它们的必要性,突出了森林生态系统中树木起源与微生物生态之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effects of Pinus sylvestris L. geographical origin on the community and co-occurrence of fungal and bacterial endophytes in a common garden experiment.

Below-ground microorganisms, particularly endophytes, are pivotal for plant establishment and functioning through nutrient acquisition and enhancing resistance to abiotic and biotic stresses. The impact of host plant origin within a species on the composition and interaction networks of root endophytic fungi and bacteria has been less explored compared with plant phylogeny and biological distance. This study investigates the effect of geographic origin on the fungal and bacterial microbiomes of Pinus sylvestris L. root endophytes. Roots from plants grown in a common garden, originating from six locations, were harvested in two distinct seasons. Fungal and bacterial microbiomes were analyzed using Illumina MiSeq sequencing. The operational taxonomic unit (OTU) richness of endophytic fungi and bacteria showed no significant variation due to tree origin or season. However, the Shannon diversity index for endophytic fungi was seasonally influenced. The composition of endophytic fungal and bacterial communities was affected by both tree origin and season, correlating with host root biochemical parameters, such as starch, total non-structural carbohydrates, carbon, nitrogen, and climatic factors, such as mean annual precipitation and temperature. Moreover, the abundance of specific endophytic fungi and bacteria varied across different P. sylvestris origins, depending on the season. The complexity of the co-occurrence networks of fungal and bacterial endophytes within P. sylvestris also differed by geographical origin and season. This study highlights the significant role of biochemical and climatic factors associated with tree origin in shaping interactions with endophytic communities, potentially affecting plant health and adaptability across diverse environments.

Importance: This study advances our understanding of how plant ecotype and seasonal changes influence root endophytic communities in Scots pine (Pinus sylvestris). By examining trees from various origins grown in a common garden, it highlights the role of tree origin and season in shaping fungal and bacterial community and co-occurrence networks. Importantly, this research demonstrates that tree origin impacts the composition and interaction networks of root endophytes and depends on the season. The study's findings suggest that root biochemical traits and climatic conditions (e.g., temperature, precipitation) associated with tree origin are crucial in determining the assembly of endophytic communities. This understanding could lead to innovative strategies for enhancing plant health and adaptability across different environments, contributing to forestry and conservation efforts. The research underscores the complexity of plant-microbe interactions and the need for a comprehensive approach to studying them, highlighting the interplay between tree origin and microbial ecology in forest ecosystems.

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来源期刊
Microbiology spectrum
Microbiology spectrum Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.20
自引率
5.40%
发文量
1800
期刊介绍: Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.
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