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240 peer-reviewed articles • 41,732 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Reduction of forest soil biota impacts tree performance but not greenhouse gas fluxes10.52Citations (PDF)
2Toward harnessing biodiversity–ecosystem function relationships in fungi6.341Citations (PDF)
3Unveiling root nodulation in Tribulus terrestris and Roystonea regia via metagenomics analysis1.95Citations (PDF)
4Decoupling Responses of Phyllosphere and Rhizosphere Bacterial Communities to Spatiotemporal Environmental Changes11.15Citations (PDF)
5Soil and its microbiome in translocated meadows in the context of habitats in the receptor area8.20Citations (PDF)
6Balancing biodiversity, carbon, and profit with pathogen risk: Effects of felling age and thinning in spruce forests8.25Citations (PDF)
7Shifting community assembly mechanisms in soil eukaryotes over successional time and their implications for restoration
Scientific Reports, 2025, 15,
3.42Citations (PDF)
8Fungal Assemblages in Northern Elms—Impacts of Host Identity and Health, Growth Environment, and Presence of Dutch Elm Disease
Microbial Ecology, 2025, 88,
3.37Citations (PDF)
9The UNITE database for molecular identification and taxonomic communication of fungi and other eukaryotes: sequences, taxa and classifications reconsidered
Nucleic Acids Research, 2024, 52, D791-D797
15.5711Citations (PDF)
10Fungal community composition predicts forest carbon storage at a continental scale13.782Citations (PDF)
11The influence of tree genus, phylogeny, and richness on the specificity, rarity, and diversity of ectomycorrhizal fungi3.829Citations (PDF)
12Soil mycobiomes in native European aspen forests and hybrid aspen plantations have a similar fungal richness but different compositions, mainly driven by edaphic and floristic factors3.96Citations (PDF)
13Variation of carbon, nitrogen and phosphorus content in fungi reflects their ecology and phylogeny3.921Citations (PDF)
14Increasing numbers of global change stressors reduce soil carbon worldwide
Nature Climate Change, 2024, 14, 740-745
17.640Citations (PDF)
15EUKARYOME: the rRNA gene reference database for identification of all eukaryotes2.772Citations (PDF)
16A trait-based root acquisition-defence-decomposition framework in angiosperm tree species13.730Citations (PDF)
17Global Spore Sampling Project: A global, standardized dataset of airborne fungal DNA
Scientific Data, 2024, 11,
5.717Citations (PDF)
18Airborne DNA reveals predictable spatial and seasonal dynamics of fungi
Nature, 2024, 631, 835-842
37.969Citations (PDF)
19CoRRE Trait Data: A dataset of 17 categorical and continuous traits for 4079 grassland species worldwide
Scientific Data, 2024, 11,
5.75Citations (PDF)
20Phylogenetic classification of arbuscular mycorrhizal fungi: new species and higher-ranking taxa in Glomeromycota and Mucoromycota (class Endogonomycetes)
MycoKeys, 2024, 107, 273-325
2.235Citations (PDF)
21Effects of soil biotic and abiotic characteristics on tree growth and aboveground herbivory during early afforestation
Applied Soil Ecology, 2024, 202, 105579
5.35Citations (PDF)
22Soil health is associated with higher primary productivity across Europe
Nature Ecology and Evolution, 2024, 8, 1847-1855
9.675Citations (PDF)
23Traces of Hymenoscyphus fraxineus in Northeastern Europe Extend Further Back in History than Expected
Plant Disease, 2023, 107, 344-349
2.310Citations (PDF)
24Silva Nova – Restoring soil biology and soil functions to gain multiple benefits in new forests0.61Citations (PDF)
25Increasing the number of stressors reduces soil ecosystem services worldwide
Nature Climate Change, 2023, 13, 478-483
17.6137Citations (PDF)
26Effects of nitrogen deposition on carbon and nutrient cycling along a natural soil acidity gradient as revealed by metagenomics
New Phytologist, 2023, 238, 2607-2620
8.148Citations (PDF)
27Patterns in soil microbial diversity across Europe13.7267Citations (PDF)
28Rapid shift of soil fungal community compositions after clear-cutting in hemiboreal coniferous forests3.619Citations (PDF)
29Assessing the effect of commercial arbuscular mycorrhizal fungal inoculum on potato plant disease incidence, yield and the indigenous root fungal community composition
BioControl, 2023, 68, 537-547
1.78Citations (PDF)
30Global diversity and biogeography of potential phytopathogenic fungi in a changing world13.769Citations (PDF)
31Effect of stand thinning, former land use and individual tree parameters on wood inhabiting fungal community composition in young living Norway spruce
Fungal Ecology, 2023, 65, 101281
2.19Citations (PDF)
32Fossil-fuel-dependent scenarios could lead to a significant decline of global plant-beneficial bacteria abundance in soils by 2100
Nature Food, 2023, 4, 996-1006
14.686Citations (PDF)
33Connecting the multiple dimensions of global soil fungal diversity
Science Advances, 2023, 9,
10.981Citations (PDF)
34Structure of plant–associated microeukaryotes in roots and leaves of aquatic and terrestrial plants revealed by blocking peptide-nucleic acid (PNA) amplification2.84Citations (PDF)
35Towards revealing the global diversity and community assembly of soil eukaryotes
Ecology Letters, 2022, 25, 65-76
7.5121Citations (PDF)
36The Earth BioGenome Project 2020: Starting the clock7.5297Citations (PDF)
37Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale5.338Citations (PDF)
38Community dynamics of soil‐borne fungal communities along elevation gradients in neotropical and palaeotropical forests
Molecular Ecology, 2022, 31, 2044-2060
3.727Citations (PDF)
39Global taxonomic and phylogenetic assembly of AM fungi
Mycorrhiza, 2022, 32, 135-144
3.425Citations (PDF)
40Mycorrhizal tree impacts on topsoil biogeochemical properties in tropical forests
Journal of Ecology, 2022, 110, 1271-1282
4.536Citations (PDF)
41Structure and function of the soil microbiome underlying N2O emissions from global wetlands13.7225Citations (PDF)
42Global soil microbiomes: A new frontline of biome‐ecology research
Global Ecology and Biogeography, 2022, 31, 1120-1132
5.548Citations (PDF)
43Best practices in metabarcoding of fungi: From experimental design to results
Molecular Ecology, 2022, 31, 2769-2795
3.7300Citations (PDF)
44Changes in the root microbiome of four plant species with different mycorrhizal types across a nitrogen deposition gradient in ombrotrophic bogs10.512Citations (PDF)
45Soil fungal communities in young Norway spruce-dominant stands: footprints of former land use and selective thinning2.216Citations (PDF)
46Phylotype diversity within soil fungal functional groups drives ecosystem stability9.6247Citations (PDF)
47DNA barcoding of fungal specimens using PacBio long‐read high‐throughput sequencing
Molecular Ecology Resources, 2022, 22, 2871-2879
4.730Citations (PDF)
48Symbiotic fungi as biotechnological tools: Methodological challenges and relative benefits in agriculture and forestry
Fungal Biology Reviews, 2022, 42, 34-55
4.930Citations (PDF)
49Global patterns in endemicity and vulnerability of soil fungi
Global Change Biology, 2022, 28, 6696-6710
11.1142Citations (PDF)
50FungalRoot v.2.0 – an empirical database of plant mycorrhizal traits
New Phytologist, 2022, 235, 1689-1691
8.118Citations (PDF)
51Long-term effects of forest fires on fungal community and soil properties along a hemiboreal Scots pine forest fire chronosequence8.324Citations (PDF)
52Plant and fungal species interactions differ between aboveground and belowground habitats in mountain forests of eastern China
Science China Life Sciences, 2022, 66, 1134-1150
6.717Citations (PDF)
53Diversity, community composition, and bioactivity of cultivable fungal endophytes in saline and dry soils in deserts
Fungal Ecology, 2021, 49, 101019
2.115Citations (PDF)
54Global macroecology of nitrogen‐fixing plants5.540Citations (PDF)
55Global root traits (GRooT) database5.5190Citations (PDF)
56Tree Species Richness and Neighborhood Effects on Ectomycorrhizal Fungal Richness and Community Structure in Boreal Forest3.926Citations (PDF)
57Sedimentary Ancient DNA (sedaDNA) Reveals Fungal Diversity and Environmental Drivers of Community Changes throughout the Holocene in the Present Boreal Lake Lielais Svētiņu (Eastern Latvia)
Microorganisms, 2021, 9, 719
3.831Citations (PDF)
58Temperature and pH define the realised niche space of arbuscular mycorrhizal fungi
New Phytologist, 2021, 231, 763-776
8.1226Citations (PDF)
59Saprotrophic fungal diversity predicts ectomycorrhizal fungal diversity along the timberline in the framework of island biogeography theory5.429Citations (PDF)
60Consistent patterns of fungal communities within ant-plants across a large geographic range strongly suggest a multipartite mutualism
Mycological Progress, 2021, 20, 681-699
1.96Citations (PDF)
61Fluorescent nanoparticles as tools in ecology and physiology
Biological Reviews, 2021, 96, 2392-2424
11.423Citations (PDF)
62Seasonal dynamics of mycoplankton in the Yellow Sea reflect the combined effect of riverine inputs and hydrographic conditions
Molecular Ecology, 2021, 30, 3624-3637
3.716Citations (PDF)
63Global homogenization of the structure and function in the soil microbiome of urban greenspaces
Science Advances, 2021, 7,
10.9231Citations (PDF)
64Data sharing practices and data availability upon request differ across scientific disciplines
Scientific Data, 2021, 8,
5.7323Citations (PDF)
65Impacts of wildfire on soil microbiome in Boreal environments4.446Citations (PDF)
66Highly Clonal Structure and Abundance of One Haplotype Characterise the Diplodia sapinea Populations in Europe and Western Asia3.420Citations (PDF)
67Current Insight into Culture-Dependent and Culture-Independent Methods in Discovering Ascomycetous Taxa3.447Citations (PDF)
68Seasonal Dynamics of Fungi Associated with Healthy and Diseased Pinus sylvestris Needles in Northern Europe
Microorganisms, 2021, 9, 1757
3.821Citations (PDF)
69Perspectives and Benefits of High-Throughput Long-Read Sequencing in Microbial Ecology3.6189Citations (PDF)
70The factors and scales shaping fungal assemblages in fallen spruce trunks: A DNA metabarcoding study3.614Citations (PDF)
71Phylogenomics reveals the evolution of root nodulating alpha- and beta-Proteobacteria (rhizobia)
Microbiological Research, 2021, 250, 126788
6.954Citations (PDF)
72Delimiting species in Basidiomycota: a review
Fungal Diversity, 2021, 109, 181-237
13.638Citations (PDF)
73Diversity of arbuscular mycorrhizal fungi and its chemical drivers across dryland habitats
Mycorrhiza, 2021, 31, 685-697
3.433Citations (PDF)
74Surveying for Batrachochytrium dendrobatidis and B. salamandrivorans in wild and captive amphibian populations in Estonia and Latvia
Diseases of Aquatic Organisms, 2021, 145, 101-109
0.94Citations (PDF)
75FungalTraits: a user-friendly traits database of fungi and fungus-like stramenopiles
Fungal Diversity, 2021, 105, 1-16
13.61,009Citations (PDF)
76Sheltering Role of Well-Decayed Conifer Logs for Forest Floor Fungi in Long-Term Polluted Boreal Forests3.914Citations (PDF)
77The Global Soil Mycobiome consortium dataset for boosting fungal diversity research
Fungal Diversity, 2021, 111, 573-588
13.6136Citations (PDF)
78Asymmetric patterns of global diversity among plants and mycorrhizal fungi2.132Citations (PDF)
79TRY plant trait database – enhanced coverage and open access
Global Change Biology, 2020, 26, 119-188
11.11,902Citations (PDF)
80Regional-Scale In-Depth Analysis of Soil Fungal Diversity Reveals Strong pH and Plant Species Effects in Northern Europe3.9217Citations (PDF)
81Temporal and Cultivar-Specific Effects on Potato Root and Soil Fungal Diversity
Agronomy, 2020, 10, 1535
3.012Citations (PDF)
82Large-scale genome sequencing of mycorrhizal fungi provides insights into the early evolution of symbiotic traits13.7440Citations (PDF)
83Profiling the community structure of ectomycorrhizal fungi at endemic pine (Pinus greggii) stands of northeastern Mexico
Southern Forests, 2020, 82, 292-302
1.04Citations (PDF)
84Global patterns and determinants of bacterial communities associated with ectomycorrhizal root tips of Alnus species10.510Citations (PDF)
85Characterising the effect of crop species and fertilisation treatment on root fungal communities
Scientific Reports, 2020, 10,
3.412Citations (PDF)
86Identifying the ‘unidentified’ fungi: a global-scale long-read third-generation sequencing approach
Fungal Diversity, 2020, 103, 273-293
13.676Citations (PDF)
87Fungal Planet description sheets: 1042–11115.0167Citations (PDF)
88Resolving the mycorrhizal status of important northern hemisphere trees
Plant and Soil, 2020, 454, 3-34
3.382Citations (PDF)
89Microbial macroecology: In search of mechanisms governing microbial biogeographic patterns
Global Ecology and Biogeography, 2020, 29, 1870-1886
5.594Citations (PDF)
90Orchid epiphytes do not receive organic substances from living trees through fungi
Mycorrhiza, 2020, 30, 697-704
3.47Citations (PDF)
91The Relationship between Fungal Diversity and Invasibility of a Foliar Niche—The Case of Ash Dieback3.432Citations (PDF)
92The abundance of arbuscular mycorrhiza in soils is linked to the total length of roots colonized at ecosystem level
PLoS ONE, 2020, 15, e0237256
2.349Citations (PDF)
93The Taxon Hypothesis Paradigm—On the Unambiguous Detection and Communication of Taxa
Microorganisms, 2020, 8, 1910
3.8249Citations (PDF)
94Alien ectomycorrhizal plants differ in their ability to interact with co-introduced and native ectomycorrhizal fungi in novel sites
ISME Journal, 2020, 14, 2336-2346
9.126Citations (PDF)
95Distinct fungal successional trajectories following wildfire between soil horizons in a cold‐temperate forest
New Phytologist, 2020, 227, 572-587
8.173Citations (PDF)
96FungalRoot: global online database of plant mycorrhizal associations
New Phytologist, 2020, 227, 955-966
8.1423Citations (PDF)
97Advancing biodiversity assessments with environmental DNA: Long‐read technologies help reveal the drivers of Amazonian fungal diversity
Ecology and Evolution, 2020, 10, 7509-7524
2.038Citations (PDF)
98How mycorrhizal associations drive plant population and community biology
Science, 2020, 367,
36.3905Citations (PDF)
99Plant functional groups associate with distinct arbuscular mycorrhizal fungal communities
New Phytologist, 2020, 226, 1117-1128
8.1144Citations (PDF)
100Early successional ectomycorrhizal fungi are more likely to naturalize outside their native range than other ectomycorrhizal fungi
New Phytologist, 2020, 227, 1289-1293
8.122Citations (PDF)
101Plant nutrient‐acquisition strategies drive topsoil microbiome structure and function
New Phytologist, 2020, 227, 1189-1199
8.1181Citations (PDF)
102Global biogeography of fungal and bacterial biomass carbon in topsoil10.5183Citations (PDF)
103Mycorrhizal types differ in ecophysiology and alter plant nutrition and soil processes
Biological Reviews, 2019, 94, 1857-1880
11.4339Citations (PDF)
104Global mycorrhizal plant distribution linked to terrestrial carbon stocks13.7288Citations (PDF)
105Relative Performance of MinION (Oxford Nanopore Technologies) versus Sequel (Pacific Biosciences) Third-Generation Sequencing Instruments in Identification of Agricultural and Forest Fungal Pathogens3.6104Citations (PDF)
106Misallocation of mycorrhizal traits leads to misleading results7.510Citations (PDF)
107The role of long-term mineral and organic fertilisation treatment in changing pathogen and symbiont community composition in soil
Applied Soil Ecology, 2019, 141, 45-53
5.322Citations (PDF)
108Global mismatches in aboveground and belowground biodiversity
Conservation Biology, 2019, 33, 1187-1192
4.5148Citations (PDF)
109Ectomycorrhizal fungal communities are dominated by mammalian dispersed truffle-like taxa in north-east Australian woodlands
Mycorrhiza, 2019, 29, 181-193
3.425Citations (PDF)
110Contrasting latitudinal diversity and co-occurrence patterns of soil fungi and plants in forest ecosystems
Soil Biology and Biochemistry, 2019, 131, 100-110
10.594Citations (PDF)
111The UNITE database for molecular identification of fungi: handling dark taxa and parallel taxonomic classifications
Nucleic Acids Research, 2019, 47, D259-D264
15.53,328Citations (PDF)
112High‐throughput identification and diagnostics of pathogens and pests: Overview and practical recommendations4.7119Citations (PDF)
113Carbon content and pH as important drivers of fungal community structure in three Amazon forests
Plant and Soil, 2019, 450, 111-131
3.337Citations (PDF)
114Arbuscular mycorrhizal fungi as mediators of ecosystem responses to nitrogen deposition: A trait‐based predictive framework
Journal of Ecology, 2018, 106, 480-489
4.5156Citations (PDF)
115Evolutionary history of mycorrhizal symbioses and global host plant diversity
New Phytologist, 2018, 220, 1108-1115
8.11,469Citations (PDF)
116PacBio metabarcoding of Fungi and other eukaryotes: errors, biases and perspectives
New Phytologist, 2018, 217, 1370-1385
8.1290Citations (PDF)
117Seasonal and annual variation in fungal communities associated with epigeic springtails (Collembola spp.) in boreal forests
Soil Biology and Biochemistry, 2018, 116, 245-252
10.563Citations (PDF)
118Host preference and network properties in biotrophic plant–fungal associations
New Phytologist, 2018, 217, 1230-1239
8.1149Citations (PDF)
119The endangered northern bettong,Bettongia tropica, performs a unique and potentially irreplaceable dispersal function for ectomycorrhizal truffle fungi
Molecular Ecology, 2018, 27, 4960-4971
3.720Citations (PDF)
120Identifying and naming the currently known diversity of the genusHydnum, with an emphasis on European and North American taxa
Mycologia, 2018, 110, 890-918
2.429Citations (PDF)
121High-level classification of the Fungi and a tool for evolutionary ecological analyses
Fungal Diversity, 2018, 90, 135-159
13.6641Citations (PDF)
122Structure and function of the global topsoil microbiome
Nature, 2018, 560, 233-237
37.92,333Citations (PDF)
123Litter species richness and composition effects on fungal richness and community structure in decomposing foliar and root litter
Soil Biology and Biochemistry, 2018, 125, 328-339
10.589Citations (PDF)
124Global gaps in soil biodiversity data
Nature Ecology and Evolution, 2018, 2, 1042-1043
9.6138Citations (PDF)
125Acclimation of Fine Root Systems to Soil Warming: Comparison of an Experimental Setup and a Natural Soil Temperature Gradient
Ecosystems, 2018, 22, 457-472
2.450Citations (PDF)
126Mycobiome diversity: high-throughput sequencing and identification of fungi
Nature Reviews Microbiology, 2018, 17, 95-109
83.4861Citations (PDF)
127Phylogenetic imprint of woody plants on the soil mycobiome in natural mountain forests of eastern China
ISME Journal, 2018, 13, 686-697
9.1108Citations (PDF)
128Fungal Planet description sheets: 785– 8675.0243Citations (PDF)
129<i>Cantharellus alborufescens</i>and<i>C. ferruginascens</i>(Cantharellaceae, Basidiomycota) New to Iran
Cryptogamie, Mycologie, 2018, 39, 299-310
0.87Citations (PDF)
130Effect of soil moisture on root-associated fungal communities of Erica dominans in Drakensberg mountains in South Africa
Mycorrhiza, 2017, 27, 397-406
3.414Citations (PDF)
131Specificity of fungal associations of Pyroleae and Monotropa hypopitys during germination and seedling development
Molecular Ecology, 2017, 26, 2591-2604
3.717Citations (PDF)
132Nitrogen addition alters ectomycorrhizal fungal communities and soil enzyme activities in a tropical montane forest
Fungal Ecology, 2017, 27, 14-23
2.1110Citations (PDF)
133Correspondence: Analytical flaws in a continental-scale forest soil microbial diversity study13.713Citations (PDF)
134Adaptive root foraging strategies along a boreal–temperate forest gradient
New Phytologist, 2017, 215, 977-991
8.1139Citations (PDF)
135Soil fungal diversity in natural grasslands of the Tibetan Plateau: associations with plant diversity and productivity
New Phytologist, 2017, 215, 756-765
8.1334Citations (PDF)
136PipeCraft: Flexible open‐source toolkit for bioinformatics analysis of custom high‐throughput amplicon sequencing data4.7168Citations (PDF)
137Historical biome distribution and recent human disturbance shape the diversity of arbuscular mycorrhizal fungi
New Phytologist, 2017, 216, 227-238
8.182Citations (PDF)
138Plant species richness and productivity determine the diversity of soil fungal guilds in temperate coniferous forest and bog habitats
Molecular Ecology, 2017, 26, 4846-4858
3.7107Citations (PDF)
139Elevation, space and host plant species structure Ericaceae root-associated fungal communities in Papua New Guinea
Fungal Ecology, 2017, 30, 112-121
2.16Citations (PDF)
140Greater diversity of soil fungal communities and distinguishable seasonal variation in temperate deciduous forests compared with subtropical evergreen forests of eastern China2.870Citations (PDF)
141Novel soil-inhabiting clades fill gaps in the fungal tree of life
Microbiome, 2017, 5,
11.5193Citations (PDF)
142Tree species identity and diversity drive fungal richness and community composition along an elevational gradient in a Mediterranean ecosystem
Mycorrhiza, 2017, 28, 39-47
3.458Citations (PDF)
143Ectomycorrhizal and saprotrophic fungi respond differently to long‐term experimentally increased snow depth in the High Arctic
MicrobiologyOpen, 2016, 5, 856-869
4.142Citations (PDF)
144Arbuscular mycorrhizal fungi associating with roots of Alnus and Rubus in Europe and the Middle East
Fungal Ecology, 2016, 24, 27-34
2.114Citations (PDF)
145Millions of reads, thousands of taxa: microbial community structure and associations analyzed via marker genes
FEMS Microbiology Reviews, 2016, 40, 686-700
10.6185Citations (PDF)
146Temporal changes in fungal communities associated with guts and appendages of Collembola as based on culturing and high-throughput sequencing10.551Citations (PDF)
147FUNGuild: An open annotation tool for parsing fungal community datasets by ecological guild
Fungal Ecology, 2016, 20, 241-248
2.14,352Citations (PDF)
148Local-scale spatial structure and community composition of orchid mycorrhizal fungi in semi-natural grasslands
Mycorrhiza, 2016, 27, 355-367
3.425Citations (PDF)
149Altered precipitation seasonality impacts the dominant fungal but rare bacterial taxa in subtropical forest soils5.079Citations (PDF)
150Oomycete-specific ITS primers for identification and metabarcoding
MycoKeys, 2016, 14, 17-30
2.283Citations (PDF)
151A Comprehensive, Automatically Updated Fungal ITS Sequence Dataset for Reference-Based Chimera Control in Environmental Sequencing Efforts
Microbes and Environments, 2015, 30, 145-150
1.9273Citations (PDF)
152Temporal variation of Bistorta vivipara‐associated ectomycorrhizal fungal communities in the High Arctic
Molecular Ecology, 2015, 24, 6289-6302
3.752Citations (PDF)
153Ectomycorrhizal impacts on plant nitrogen nutrition: emerging isotopic patterns, latitudinal variation and hidden mechanisms
Ecology Letters, 2015, 18, 96-107
7.553Citations (PDF)
154Temporal patterns of orchid mycorrhizal fungi in meadows and forests as revealed by 454 pyrosequencing
New Phytologist, 2015, 205, 1608-1618
8.1118Citations (PDF)
155Shotgun metagenomes and multiple primer pair-barcode combinations of amplicons reveal biases in metabarcoding analyses of fungi
MycoKeys, 2015, 10, 1-43
2.2565Citations (PDF)
156Performance of cytochrome c oxidase subunit I (COI), ribosomal DNA Large Subunit (LSU) and Internal Transcribed Spacer 2 (ITS2) in DNA barcoding of Collembola3.037Citations (PDF)
157Standardizing metadata and taxonomic identification in metabarcoding studies
GigaScience, 2015, 4,
3.240Citations (PDF)
158Niche partitioning in arbuscular mycorrhizal communities in temperate grasslands: a lesson from adjacent serpentine and nonserpentine habitats
Molecular Ecology, 2015, 24, 1831-1843
3.741Citations (PDF)
159Local‐scale biogeography and spatiotemporal variability in communities of mycorrhizal fungi
New Phytologist, 2015, 205, 1454-1463
8.1229Citations (PDF)
160Stochastic distribution of small soil eukaryotes resulting from high dispersal and drift in a local environment
ISME Journal, 2015, 10, 885-896
9.1330Citations (PDF)
161Tree diversity and species identity effects on soil fungi, protists and animals are context dependent
ISME Journal, 2015, 10, 346-362
9.1374Citations (PDF)
162Global diversity and geography of soil fungi
Science, 2014, 346,
36.33,413Citations (PDF)
163Global biogeography of Alnus‐associated Frankia actinobacteria
New Phytologist, 2014, 204, 979-988
8.149Citations (PDF)
164Improving ITS sequence data for identification of plant pathogenic fungi
Fungal Diversity, 2014, 67, 11-19
13.6133Citations (PDF)
165Global biogeography of the ectomycorrhizal /sebacina lineage (Fungi, Sebacinales) as revealed from comparative phylogenetic analyses
Molecular Ecology, 2014, 23, 4168-4183
3.770Citations (PDF)
166Stable isotope analysis, field observations and synthesis experiments suggest that Odontia is a non-mycorrhizal sister genus of Tomentella and Thelephora
Fungal Ecology, 2014, 11, 80-90
2.129Citations (PDF)
167Temporal dynamics of ectomycorrhizal fungi and persistence of Tuber melanosporum in inoculated Quercus robur seedlings in North Europe
Mycorrhiza, 2014, 25, 61-66
3.412Citations (PDF)
168The distance decay of similarity in communities of ectomycorrhizal fungi in different ecosystems and scales
Journal of Ecology, 2013, 101, 1335-1344
4.5141Citations (PDF)
169Ectomycorrhizal fungal communities associated to Nothofagus species in Northern Patagonia
Mycorrhiza, 2013, 23, 487-496
3.473Citations (PDF)
170Scuttle Flies (Diptera: Phoridae) Reared from Fungi in Benin
African Invertebrates, 2013, 54, 357-371
0.86Citations (PDF)
171Lineages of ectomycorrhizal fungi revisited: Foraging strategies and novel lineages revealed by sequences from belowground
Fungal Biology Reviews, 2013, 27, 83-99
4.9531Citations (PDF)
172Increased air humidity and understory composition shape short root traits and the colonizing ectomycorrhizal fungal community in silver birch stands
Forest Ecology and Management, 2013, 310, 720-728
3.637Citations (PDF)
173Biogeography of ectomycorrhizal fungi associated with alders (Alnus spp.) in relation to biotic and abiotic variables at the global scale
New Phytologist, 2013, 198, 1239-1249
8.1214Citations (PDF)
174Evolution of nutritional modes of Ceratobasidiaceae (Cantharellales, Basidiomycota) as revealed from publicly available ITS sequences
Fungal Ecology, 2013, 6, 256-268
2.1116Citations (PDF)
175Phylogenetic relationships among host plants explain differences in fungal species richness and community composition in ectomycorrhizal symbiosis
New Phytologist, 2013, 199, 822-831
8.1188Citations (PDF)
176Fungal community analysis by high‐throughput sequencing of amplified markers – a user's guide
New Phytologist, 2013, 199, 288-299
8.1840Citations (PDF)
177Agarics of alders 1 – the Alnicola badia complex
Mycotaxon, 2013, 121, 1-22
0.38Citations (PDF)
178Coltricia australica sp. nov. (Hymenochaetales, Basidiomycota) from Australia
Mycotaxon, 2013, 122, 123-128
0.38Citations (PDF)
179Historical Biogeography and Diversification of Truffles in the Tuberaceae and Their Newly Identified Southern Hemisphere Sister Lineage
PLoS ONE, 2013, 8, e52765
2.3207Citations (PDF)
180Diversity and community composition of ectomycorrhizal fungi in a dry deciduous dipterocarp forest in Thailand
Biodiversity and Conservation, 2012, 21, 2287-2298
2.260Citations (PDF)
181Nuclear ribosomal internal transcribed spacer (ITS) region as a universal DNA barcode marker for Fungi7.54,925Citations (PDF)
182Enzymatic activities and stable isotope patterns of ectomycorrhizal fungi in relation to phylogeny and exploration types in an afrotropical rain forest
New Phytologist, 2012, 195, 832-843
8.1140Citations (PDF)
183Regional and local patterns of ectomycorrhizal fungal diversity and community structure along an altitudinal gradient in the Hyrcanian forests of northern Iran
New Phytologist, 2012, 193, 465-473
8.1305Citations (PDF)
184Extensive gene flow over Europe and possible speciation over Eurasia in the ectomycorrhizal basidiomycete Laccaria amethystina complex
Molecular Ecology, 2012, 21, 281-299
3.768Citations (PDF)
185Ectomycorrhizal fungi of exotic pine plantations in relation to native host trees in Iran: evidence of host range expansion by local symbionts to distantly related host taxa
Mycorrhiza, 2012, 23, 11-19
3.465Citations (PDF)
186Tree age effect on fine-root and leaf morphology in a silver birch forest chronosequence2.238Citations (PDF)
187Tidying Up International Nucleotide Sequence Databases: Ecological, Geographical and Sequence Quality Annotation of ITS Sequences of Mycorrhizal Fungi
PLoS ONE, 2011, 6, e24940
2.353Citations (PDF)
188Fine root foraging strategies in Norway spruce forests across a European climate gradient
Global Change Biology, 2011, 17, 3620-3632
11.1194Citations (PDF)
189Species abundance distributions and richness estimations in fungal metagenomics - lessons learned from community ecology
Molecular Ecology, 2011, 20, 275-285
3.7166Citations (PDF)
190Spatial structure and the effects of host and soil environments on communities of ectomycorrhizal fungi in wooded savannas and rain forests of Continental Africa and Madagascar
Molecular Ecology, 2011, 20, 3071-3080
3.7124Citations (PDF)
191Towards standardization of the description and publication of next‐generation sequencing datasets of fungal communities
New Phytologist, 2011, 191, 314-318
8.189Citations (PDF)
192Invasion potential and host shifts of Australian and African ectomycorrhizal fungi in mixed eucalypt plantations
New Phytologist, 2011, 192, 179-187
8.148Citations (PDF)
193A single European aspen (Populus tremula) tree individual may potentially harbour dozens of Cenococcum geophilum ITS genotypes and hundreds of species of ectomycorrhizal fungi
FEMS Microbiology Ecology, 2011, 75, 313-320
2.8130Citations (PDF)
194The UNITE database for molecular identification of fungi – recent updates and future perspectives
New Phytologist, 2010, 186, 281-285
8.11,916Citations (PDF)
195454 Pyrosequencing and Sanger sequencing of tropical mycorrhizal fungi provide similar results but reveal substantial methodological biases
New Phytologist, 2010, 188, 291-301
8.1508Citations (PDF)
196PlutoF—a Web Based Workbench for Ecological and Taxonomic Research, with an Online Implementation for Fungal ITS Sequences1.3250Citations (PDF)
197Mycorrhizal symbionts ofPisonia grandisandP. sechellarumin Seychelles: identification of mycorrhizal fungi and description of newTomentellaspecies
Mycologia, 2010, 102, 522-533
2.447Citations (PDF)
198Description and identification of Alnus acuminata ectomycorrhizae from Argentinean alder stands
Mycologia, 2010, 102, 1263-1273
2.421Citations (PDF)
199Ericaceous dwarf shrubs affect ectomycorrhizal fungal community of the invasive Pinus strobus and native Pinus sylvestris in a pot experiment
Mycorrhiza, 2010, 21, 403-412
3.495Citations (PDF)
200Does a fungal species drive ectomycorrhizal root traits in Alnus spp.?1.824Citations (PDF)
201Establishment of ectomycorrhizal fungal community on isolated Nothofagus cunninghamii seedlings regenerating on dead wood in Australian wet temperate forests: does fruit-body type matter?
Mycorrhiza, 2009, 19, 403-416
3.443Citations (PDF)
202Ascomycetes associated with ectomycorrhizas: molecular diversity and ecology with particular reference to the Helotiales
Environmental Microbiology, 2009, 11, 3166-3178
3.7158Citations (PDF)
203Revisiting ectomycorrhizal fungi of the genus Alnus: differential host specificity, diversity and determinants of the fungal community
New Phytologist, 2009, 182, 727-735
8.1118Citations (PDF)
204Ectomycorrhizal lifestyle in fungi: global diversity, distribution, and evolution of phylogenetic lineages
Mycorrhiza, 2009, 20, 217-263
3.4928Citations (PDF)
205Low diversity and high host preference of ectomycorrhizal fungi in Western Amazonia, a neotropical biodiversity hotspot
ISME Journal, 2009, 4, 465-471
9.1181Citations (PDF)
206Fungal associates of Pyrola rotundifolia, a mixotrophic Ericaceae, from two Estonian boreal forests
Mycorrhiza, 2008, 19, 15-25
3.444Citations (PDF)
207Strong host preference of ectomycorrhizal fungi in a Tasmanian wet sclerophyll forest as revealed by DNA barcoding and taxon‐specific primers
New Phytologist, 2008, 180, 479-490
8.1418Citations (PDF)
208Forest microsite effects on community composition of ectomycorrhizal fungi on seedlings of Picea abies and Betula pendula
Environmental Microbiology, 2008, 10, 1189-1201
3.7125Citations (PDF)
209Ectomycorrhizal fungi of the Seychelles: diversity patterns and host shifts from the native Vateriopsis seychellarum (Dipterocarpaceae) and Intsia bijuga (Caesalpiniaceae) to the introduced Eucalyptus robusta (Myrtaceae), but not Pinus caribea (Pinaceae)
New Phytologist, 2007, 175, 321-333
8.1176Citations (PDF)
210Ectomycorrhizas of Coltricia and Coltriciella (Hymenochaetales, Basidiomycota) on Caesalpiniaceae, Dipterocarpaceae and Myrtaceae in Seychelles
Mycological Progress, 2007, 6, 101-107
1.952Citations (PDF)
211Molecular and morphological diversity of pezizalean ectomycorrhiza
New Phytologist, 2006, 170, 581-596
8.1225Citations (PDF)
212Diversity and community structure of ectomycorrhizal fungi in a wooded meadow
Mycological Research, 2006, 110, 734-748
2.6144Citations (PDF)
213Parallel evolutionary paths to mycoheterotrophy in understorey Ericaceae and Orchidaceae: ecological evidence for mixotrophy in Pyroleae
Oecologia, 2006, 151, 206-217
1.7169Citations (PDF)
214UNITE: a database providing web‐based methods for the molecular identification of ectomycorrhizal fungi
New Phytologist, 2005, 166, 1063-1068
8.11,094Citations (PDF)
215Fine scale distribution of ectomycorrhizal fungi and roots across substrate layers including coarse woody debris in a mixed forest
New Phytologist, 2003, 159, 153-165
8.1367Citations (PDF)
216Five simple guidelines for establishing basic authenticity and reliability of newly generated fungal ITS sequences
MycoKeys, 0, 4, 37-63
2.2178Citations (PDF)
217Great differences in performance and outcome of high-throughput sequencing data analysis platforms for fungal metabarcoding
MycoKeys, 0, 39, 29-40
2.262Citations (PDF)
218Highly comparable metabarcoding results from MGI-Tech and Illumina sequencing platforms
PeerJ, 0, 9, e12254
0.029Citations (PDF)
219Top 50 most wanted fungi
MycoKeys, 0, 12, 29-40
2.286Citations (PDF)
220Genomics and metagenomics technologies to recover ribosomal DNA and single-copy genes from old fruit-body and ectomycorrhiza specimens
MycoKeys, 0, 13, 1-20
2.224Citations (PDF)
221Detection of signal recognition particle (SRP) RNAs in the nuclear ribosomal internal transcribed spacer 1 (ITS1) of three lineages of ectomycorrhizal fungi (Agaricomycetes, Basidiomycota)
MycoKeys, 0, 13, 21-33
2.210Citations (PDF)
222 EukFunc : A Holistic Eukaryotic Functional Reference for Automated Profiling of Soil Eukaryotes4.712Citations (PDF)
223Land Use Interacts With Climate to Influence Microbial Diversity‐To‐Biomass Ratios Across Europe via Soil Organic Carbon and Nitrogen3.73Citations (PDF)
224Successional trajectories differ between soil microbial guilds after logging in mixed conifer-broadleaf forests
Plant and Soil, 0, 514, 3155-3172
3.33Citations (PDF)
225Community of ectomycorrhizae associated with Mexican pinyon pine (Pinus cembroides) in northeastern Mexico and its relationships with environmental variables3.62Citations (PDF)
226Morphological and phylogenetic analysis of the early-diverging lineage of Glomeromycota suggest two new genera and recombinations in Archaeosporales
MycoKeys, 0, 124, 249-273
2.23Citations (PDF)
227Invisible passengers: the diversity and invasion risks of fungi and bacteria transported via footwear of international airport passengers2.00Citations (PDF)
228Metabolomic responses of free-living diazotrophs inoculated on biochar6.13Citations (PDF)
229How do the nitrogen level and form and crop density influence the progression of alternaria leaf spot disease on hemp crop in Northern Baltic region?1.70Citations (PDF)
230Ecological roles of leaf-inhabiting fungi and their host-associated predictors: a review
Fungal Biology Reviews, 0, 55, 100475
4.92Citations (PDF)
231Complete mitogenomes of the endangered Galapagos fur seal (Arctocephalus galapagoensis): new insights on its evolutionary history
Genetica, 0, 154,
1.11Citations (PDF)
232Impact of plant species, mycorrhizal type, and leaf traits on foliar fungal communities (in a common garden experiment)
IMA Fungus, 0, 17,
4.71Citations (PDF)
233Sampling Design and Sample Processing Affect Soil Biodiversity Assessments4.74Citations (PDF)
234Influence of plant species identity, phylogeny, and functional traits on twig-associated fungal communities
Fungal Biology, 0, 130, 101752
2.80Citations (PDF)
235Diversity and Distribution of Soil Fungi in Neotropical Mexican Forests
Biotropica, 0, 58,
1.51Citations (PDF)
236Diversity and Dispersal of Fungi Along a Subtropical Land‐to‐Sea Continuum3.80Citations (PDF)
237Post-fire Succession and Soil Chemical Properties Shape Soil Fungal Community Structure and Diversity in Hemiboreal Scots Pine Forests in Estonia3.30Citations (PDF)
238Afforestation reshapes microbial life-history strategies and associated carbon cycling potential along a 9-m soil profile
Catena, 0, 271, 110238
5.70Citations (PDF)
239Fungi-substrate association patterns in boreal forests
Fungal Ecology, 0, 82, 101521
2.10Citations (PDF)
240Afforestation restructures deep soil nitrogen-cycling microbiomes and strengthens their linkage to microbial functions in a semiarid region6.30Citations (PDF)