寄主物种和温度驱动山毛榉和苏格兰松在欧洲森林的层际微生物群

IF 8.1 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES Communications Earth & Environment Pub Date : 2024-11-29 DOI:10.1038/s43247-024-01895-6
Daniela Sangiorgio, Joan Cáliz, Stefania Mattana, Anna Barceló, Bruno De Cinti, David Elustondo, Sofie Hellsten, Federico Magnani, Giorgio Matteucci, Päivi Merilä, Manuel Nicolas, Dario Ravaioli, Anne Thimonier, Elena Vanguelova, Arne Verstraeten, Peter Waldner, Emilio O. Casamayor, Josep Peñuelas, Maurizio Mencuccini, Rossella Guerrieri
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引用次数: 0

摘要

树木与微生物的相互作用对森林生态系统的功能至关重要。大多数植物微生物的研究都集中在根际,而层际微生物群落的组成仍未得到充分的探索。本研究利用16S rRNA基因测序技术,探讨了欧洲大陆尺度上山毛榉和苏格兰松叶层微生物群的差异,绘制了它们的功能图谱,并阐明了寄主树木、森林特征以及气候和大气沉积等环境因素在叶层微生物群组合中的作用。我们发现树种和相关的叶面性状(特别是碳氮比)是细菌群落的主要驱动因素。研究了从芬诺斯坎迪亚到地中海地区不同环境梯度下山毛榉和苏格兰松叶层中附生细菌的分类和功能组成,并对温度和氮沉降的主要变化进行了研究。我们还发现温度和氮沉降在影响两种树种的它们的组装中起着至关重要的作用。本研究有助于加深我们对欧洲大陆尺度山毛榉和苏特松叶层微生物群落形成因素的理解,强调需要进行大范围的比较研究(涵盖广泛的叶面性状和环境条件)来阐明叶层微生物群如何介导生态系统对全球变化的响应。根据对欧洲大陆尺度山毛榉和苏格兰松叶片附生微生物的16S rRNA基因测序分析,叶根圈微生物群受寄主物种及其相关叶面性状、温度和氮沉降的影响。
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Host species and temperature drive beech and Scots pine phyllosphere microbiota across European forests
Tree-microbe interactions are essential for forest ecosystem functioning. Most plant–microbe research has focused on the rhizosphere, while composition of microbial communities in the phyllosphere remains underexplored. Here, we use 16S rRNA gene sequencing to explore differences between beech and Scots pine phyllospheric microbiomes at the European continental scale, map their functional profiles, and elucidate the role of host trees, forest features, and environmental factors such as climate and atmospheric deposition in phyllosphere microbiota assembly. We identified tree species and the associated foliar trait (specifically carbon:nitrogen ratio) as primary drivers of the bacterial communities. We characterized taxonomical and functional composition of epiphytic bacteria in the phyllosphere of beech and Scots pine across an environmental gradient from Fennoscandia to the Mediterranean area, with major changes in temperature and nitrogen deposition. We also showed that temperature and nitrogen deposition played a crucial role in affecting their assembly for both tree species. This study contributes to advancing our understanding on factors shaping phyllosphere microbial communities in beech and Scots pine at the European continental scale, highlighting the need of broad-scale comparative studies (covering a wide range of foliar traits and environmental conditions) to elucidate how phyllosphere microbiota mediates ecosystem responses to global change. Phyllosphere microbiota of beech and Scots pine at European continental scale is influenced by the host species and associated foliar traits, as well as by temperature and nitrogen deposition, according to 16S rRNA gene sequencing analyses on leaf epiphytic microbes.
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来源期刊
Communications Earth & Environment
Communications Earth & Environment Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
8.60
自引率
2.50%
发文量
269
审稿时长
26 weeks
期刊介绍: Communications Earth & Environment is an open access journal from Nature Portfolio publishing high-quality research, reviews and commentary in all areas of the Earth, environmental and planetary sciences. Research papers published by the journal represent significant advances that bring new insight to a specialized area in Earth science, planetary science or environmental science. Communications Earth & Environment has a 2-year impact factor of 7.9 (2022 Journal Citation Reports®). Articles published in the journal in 2022 were downloaded 1,412,858 times. Median time from submission to the first editorial decision is 8 days.
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