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239 peer-reviewed articles • 47,125 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Plant community composition and traits modulate the impacts of drought intensity on soil microbial community composition and function7.931Citations (PDF)
2Contrasting effects of nitrogen addition and soil warming on soil respiration in an old-growth subtropical forest
Ecological Frontiers, 2025, 45, 248-256
2.84Citations (PDF)
3Nitrogen availability in soil controls uptake of different nitrogen forms by plants
New Phytologist, 2025, 245, 1450-1467
5.381Citations (PDF)
4Plant phylogeny, traits and fungal community composition as drivers of plant–soil feedbacks
Journal of Ecology, 2025, 113, 608-620
3.07Citations (PDF)
5Multiple targeted grassland restoration interventions enhance ecosystem service multifunctionality11.039Citations (PDF)
6Linkages between plant tannins and the organic nitrogen cycle
Trends in Plant Science, 2025, 30, 1392-1404
8.91Citations (PDF)
7The influence of mycorrhizal hyphal connections and neighbouring plants on Plantago lanceolata physiology and nutrient uptake
Mycorrhiza, 2025, 35,
2.32Citations (PDF)
8Land management shapes drought responses of dominant soil microbial taxa across grasslands11.069Citations (PDF)
9Defoliation modifies the response of arbuscular mycorrhizal fungi to drought in temperate grassland7.914Citations (PDF)
10Deforestation impacts soil biodiversity and ecosystem services worldwide5.3112Citations (PDF)
11Defoliation modifies the impact of drought on the transfer of recent plant-assimilated carbon to soil and arbuscular mycorrhizal fungi
Plant and Soil, 2024, 507, 693-711
2.37Citations (PDF)
12Contrasting responses of plant, soil fungal and above‐ground arthropod communities to plant invasion across latitudes
Journal of Ecology, 2024, 112, 2333-2343
3.01Citations (PDF)
13Drought intensity alters productivity, carbon allocation and plant nitrogen uptake in fast versus slow grassland communities
Journal of Ecology, 2023, 111, 1681-1699
3.042Citations (PDF)
14Leaf metabolic traits reveal hidden dimensions of plant form and function
Science Advances, 2023, 9,
8.251Citations (PDF)
15High intensity perturbations induce an abrupt shift in soil microbial state
ISME Journal, 2023, 17, 2190-2199
5.995Citations (PDF)
16Defoliation and fertilisation differentially moderate root trait effects on soil abiotic and biotic properties
Journal of Ecology, 2023, 111, 2733-2749
3.016Citations (PDF)
17Cessation of grazing causes biodiversity loss and homogenization of soil food webs1.628Citations (PDF)
18Shrub expansion modulates belowground impacts of changing snow conditions in alpine grasslands
Ecology Letters, 2022, 25, 52-64
4.350Citations (PDF)
19Historical context modifies plant diversity–community productivity relationships in alpine grassland
Journal of Ecology, 2022, 110, 2205-2218
3.09Citations (PDF)
20Ecosystem productivity has a stronger influence than soil age on surface soil carbon storage across global biomes4.918Citations (PDF)
21Intensive grassland management disrupts below-ground multi-trophic resource transfer in response to drought11.046Citations (PDF)
22Soil Abiotic Properties Shape Plant Functional Diversity Across Temperate Grassland Plant Communities
Ecosystems, 2022, 26, 1000-1017
1.78Citations (PDF)
23Trade-off between microbial carbon use efficiency and specific nutrient-acquiring extracellular enzyme activities under reduced oxygen2.227Citations (PDF)
24Root traits explain rhizosphere fungal community composition among temperate grassland plant species
New Phytologist, 2021, 229, 1492-1507
5.3233Citations (PDF)
25Nitrogen addition alters composition, diversity, and functioning of microbial communities in mangrove soils: An incubation experiment7.992Citations (PDF)
26Forest fire induces short‐term shifts in soil food webs with consequences for carbon cycling
Ecology Letters, 2021, 24, 438-450
4.353Citations (PDF)
27Soil microbial diversity–biomass relationships are driven by soil carbon content across global biomes
ISME Journal, 2021, 15, 2081-2091
5.9586Citations (PDF)
28Climate change alters temporal dynamics of alpine soil microbial functioning and biogeochemical cycling via earlier snowmelt
ISME Journal, 2021, 15, 2264-2275
5.9119Citations (PDF)
29Are researchers following best storage practices for measuring soil biochemical properties?
Soil, 2021, 7, 95-106
2.817Citations (PDF)
30Reduced microbial stability in the active layer is associated with carbon loss under alpine permafrost degradation5.3402Citations (PDF)
31Contrasting responses of above- and belowground diversity to multiple components of land-use intensity11.0163Citations (PDF)
32Do soil depth and plant community composition interact to modify the resistance and resilience of grassland ecosystem functioning to drought?
Ecology and Evolution, 2021, 11, 11960-11973
1.411Citations (PDF)
33Glacier forelands reveal fundamental plant and microbial controls on short‐term ecosystem nitrogen retention
Journal of Ecology, 2021, 109, 3710-3723
3.014Citations (PDF)
34Variance, locality and structure: Three experimental challenges in the study of the response of soil microbial communities to multiple perturbations
Pedobiologia, 2021, 87-88, 150741
1.48Citations (PDF)
35Combatting global grassland degradation40.21,351Citations (PDF)
36Aridity-driven shift in biodiversity–soil multifunctionality relationships11.0573Citations (PDF)
37Blind spots in global soil biodiversity and ecosystem function research11.0358Citations (PDF)
38Contrasting environmental preferences of photosynthetic and non‐photosynthetic soil cyanobacteria across the globe
Global Ecology and Biogeography, 2020, 29, 2025-2038
3.837Citations (PDF)
39The influence of soil age on ecosystem structure and function across biomes11.089Citations (PDF)
40High ecosystem multifunctionality under moderate grazing is associated with high plant but low bacterial diversity in a semi-arid steppe grassland
Plant and Soil, 2020, 448, 265-276
2.396Citations (PDF)
41Soil microbial community responses to climate extremes: resistance, resilience and transitions to alternative states2.6321Citations (PDF)
42Management versus site effects on the abundance of nitrifiers and denitrifiers in European mountain grasslands5.622Citations (PDF)
43Drought decreases incorporation of recent plant photosynthate into soil food webs regardless of their trophic complexity
Global Change Biology, 2019, 25, 3549-3561
7.662Citations (PDF)
44Soil nematode abundance and functional group composition at a global scale
Nature, 2019, 572, 194-198
31.31,144Citations (PDF)
45Towards more predictive and interdisciplinary climate change ecosystem experiments
Nature Climate Change, 2019, 9, 809-816
12.142Citations (PDF)
46A few Ascomycota taxa dominate soil fungal communities worldwide11.0686Citations (PDF)
47Soil biota, carbon cycling and crop plant biomass responses to biochar in a temperate mesocosm experiment
Plant and Soil, 2019, 440, 341-356
2.322Citations (PDF)
48Grassland biodiversity restoration increases resistance of carbon fluxes to drought
Journal of Applied Ecology, 2019, 56, 1806-1816
2.847Citations (PDF)
49Relationships between plant traits, soil properties and carbon fluxes differ between monocultures and mixed communities in temperate grassland
Journal of Ecology, 2019, 107, 1704-1719
3.087Citations (PDF)
50High throughput method for measuring urease activity in soil7.9141Citations (PDF)
51Changes in belowground biodiversity during ecosystem development5.3238Citations (PDF)
52Drought soil legacy overrides maternal effects on plant growth
Functional Ecology, 2019, 33, 1400-1410
2.937Citations (PDF)
53A plant perspective on nitrogen cycling in the rhizosphere
Functional Ecology, 2019, 33, 540-552
2.9529Citations (PDF)
54Guiding carbon farming using interdisciplinary mixed methods mapping
People and Nature, 2019, 1, 191-203
3.311Citations (PDF)
55Climate change effects on plant-soil feedbacks and consequences for biodiversity and functioning of terrestrial ecosystems
Science Advances, 2019, 5,
8.2474Citations (PDF)
56Plastic and genetic responses of a common sedge to warming have contrasting effects on carbon cycle processes
Ecology Letters, 2019, 22, 159-169
4.330Citations (PDF)
57Food Web Uncertainties Influence Predictions of Climate Change Effects on Soil Carbon Sequestration in Heathlands
Microbial Ecology, 2019, 79, 686-693
2.57Citations (PDF)
58Evolutionary history resolves global organization of root functional traits
Nature, 2018, 555, 94-97
31.3766Citations (PDF)
59Predicting the structure of soil communities from plant community taxonomy, phylogeny, and traits
ISME Journal, 2018, 12, 1794-1805
5.9304Citations (PDF)
60Drought neutralises plant–soil feedback of two mesic grassland forbs
Oecologia, 2018, 186, 1113-1125
1.392Citations (PDF)
61The added value of including key microbial traits to determine nitrogen‐related ecosystem services in managed grasslands2.856Citations (PDF)
62Fungal diversity regulates plant-soil feedbacks in temperate grassland
Science Advances, 2018, 4,
8.2266Citations (PDF)
63Root architecture governs plasticity in response to drought
Plant and Soil, 2018, 433, 189-200
2.3104Citations (PDF)
64Soil bacterial networks are less stable under drought than fungal networks11.01,970Citations (PDF)
65Soil multifunctionality and drought resistance are determined by plant structural traits in restoring grassland
Ecology, 2018, 99, 2260-2271
2.493Citations (PDF)
66Plant trait-based approaches for interrogating belowground function0.43Citations (PDF)
67Plant trait-based approaches for interrogating belowground function0.40Citations (PDF)
68Legacy effects of drought on plant–soil feedbacks and plant–plant interactions
New Phytologist, 2017, 215, 1413-1424
5.3322Citations (PDF)
69Plant trait-based approaches for interrogating belowground function0.453Citations (PDF)
70Plant trait-based approaches for interrogating belowground function
Biology and Environment, 2017, 117B, 1-13
0.446Citations (PDF)
71Assessing the Importance of Intraspecific Variability in Dung Beetle Functional Traits
PLoS ONE, 2016, 11, e0145598
1.552Citations (PDF)
72Vascular plants promote ancient peatland carbon loss with climate warming
Global Change Biology, 2016, 22, 1880-1889
7.6117Citations (PDF)
73The value of trophic interactions for ecosystem function: dung beetle communities influence seed burial and seedling recruitment in tropical forests1.657Citations (PDF)
74Influence of plant traits, soil microbial properties, and abiotic parameters on nitrogen turnover of grassland ecosystems
Ecosphere, 2016, 7,
1.740Citations (PDF)
75Plant nitrogen-use strategy as a driver of rhizosphere archaeal and bacterial ammonia oxidiser abundance
FEMS Microbiology Ecology, 2016, 92, fiw091
2.2111Citations (PDF)
76Temperature sensitivity of soil enzymes along an elevation gradient in the Peruvian Andes
Biogeochemistry, 2016, 127, 217-230
2.490Citations (PDF)
77Grassland invasibility varies with drought effects on soil functioning
Journal of Ecology, 2016, 104, 1250-1258
3.053Citations (PDF)
78Plant diversity and root traits benefit physical properties key to soil function in grasslands
Ecology Letters, 2016, 19, 1140-1149
4.3320Citations (PDF)
79Legacy effects of grassland management on soil carbon to depth
Global Change Biology, 2016, 22, 2929-2938
7.6152Citations (PDF)
80Plant community controls on short‐term ecosystem nitrogen retention
New Phytologist, 2016, 210, 861-874
5.3138Citations (PDF)
81Warming alters competition for organic and inorganic nitrogen between co-existing grassland plant species
Plant and Soil, 2016, 406, 117-129
2.329Citations (PDF)
82Influence of soil microbiota in nurse plant systems
Functional Ecology, 2016, 30, 30-40
2.978Citations (PDF)
83Simple measures of climate, soil properties and plant traits predict national‐scale grassland soil carbon stocks
Journal of Applied Ecology, 2015, 52, 1188-1196
2.8101Citations (PDF)
84Warming reduces the cover and diversity of biocrust-forming mosses and lichens, and increases the physiological stress of soil microbial communities in a semi-arid Pinus halepensis plantation2.970Citations (PDF)
85Soil Methane Sink Capacity Response to a Long-Term Wildfire Chronosequence in Northern Sweden
PLoS ONE, 2015, 10, e0129892
1.516Citations (PDF)
86Isolating the effects of precipitation, soil conditions, and litter quality on leaf litter decomposition in lowland tropical forests
Plant and Soil, 2015, 394, 225-238
2.324Citations (PDF)
87Relationships between functional traits and inorganic nitrogen acquisition among eight contrasting European grass species
Annals of Botany, 2015, 115, 107-115
2.199Citations (PDF)
88Challenging the paradigm of nitrogen cycling: no evidence of in situ resource partitioning by coexisting plant species in grasslands of contrasting fertility
Ecology and Evolution, 2015, 5, 275-287
1.430Citations (PDF)
89Linking soil microbial communities to vascular plant abundance along a climate gradient
New Phytologist, 2015, 205, 1175-1182
5.3150Citations (PDF)
90Disentangling plant and soil microbial controls on carbon and nitrogen loss in grassland mesocosms
Journal of Ecology, 2015, 103, 629-640
3.041Citations (PDF)
91Biodiversity and environmental context predict dung beetle‐mediated seed dispersal in a tropical forest field experiment
Ecology, 2015, 96, 1607-1619
2.476Citations (PDF)
92Vegetation exerts a greater control on litter decomposition than climate warming in peatlands
Ecology, 2015, 96, 113-123
2.4140Citations (PDF)
93Intensive agriculture reduces soil biodiversity across Europe
Global Change Biology, 2015, 21, 973-985
7.6986Citations (PDF)
94Microbial carbon mineralization in tropical lowland and montane forest soils of Peru2.940Citations (PDF)
95Ecologically sustainable fertility management for the maintenance of species‐rich hay meadows: a 12‐year fertilizer and lime experiment
Journal of Applied Ecology, 2014, 51, 152-161
2.820Citations (PDF)
96Going underground: root traits as drivers of ecosystem processes5.21,286Citations (PDF)
97Belowground biodiversity and ecosystem functioning
Nature, 2014, 515, 505-511
31.33,830Citations (PDF)
98Reply to Byrnes et al.: Aggregation can obscure understanding of ecosystem multifunctionality5.317Citations (PDF)
99Rapid microbial uptake and mineralization of amino acids and peptides along a grassland productivity gradient7.973Citations (PDF)
100Discontinuity in the responses of ecosystem processes and multifunctionality to altered soil community composition5.3220Citations (PDF)
101Global‐scale patterns of assemblage structure of soil nematodes in relation to climate and ecosystem properties3.8240Citations (PDF)
102Microbial community composition explains soil respiration responses to changing carbon inputs along anAndes‐to‐Amazon elevation gradient
Journal of Ecology, 2014, 102, 1058-1071
3.0206Citations (PDF)
103Amino acid dynamics across a grassland altitudinal gradient7.939Citations (PDF)
104Biochar in bioenergy cropping systems: impacts on soil faunal communities and linked ecosystem processes
GCB Bioenergy, 2013, 5, 81-95
2.9135Citations (PDF)
105Subordinate plant species impact on soil microbial communities and ecosystem functioning in grasslands: Findings from a removal experiment1.558Citations (PDF)
106Soil nematode assemblage responds weakly to grazer exclusion on a nutrient-rich seabird island2.25Citations (PDF)
107Relative contributions of plant traits and soil microbial properties to mountain grassland ecosystem services
Journal of Ecology, 2013, 101, 47-57
3.0333Citations (PDF)
108A novel framework for linking functional diversity of plants with other trophic levels for the quantification of ecosystem services1.6242Citations (PDF)
109Hierarchical responses of plant–soil interactions to climate change: consequences for the global carbon cycle
Journal of Ecology, 2013, 101, 334-343
3.0234Citations (PDF)
110Soil food web properties explain ecosystem services across European land use systems5.3683Citations (PDF)
111Warming effects on greenhouse gas fluxes in peatlands are modulated by vegetation composition
Ecology Letters, 2013, 16, 1285-1293
4.3213Citations (PDF)
112Effects of species evenness and dominant species identity on multiple ecosystem functions in model grassland communities
Oecologia, 2013, 174, 979-992
1.359Citations (PDF)
113Grazing increases the temperature sensitivity of soil organic matter decomposition in a temperate grassland2.741Citations (PDF)
114Plant responses to soil heterogeneity and global environmental change
Journal of Ecology, 2012, 100, 1303-1314
3.0129Citations (PDF)
115Abiotic drivers and plant traits explain landscape‐scale patterns in soil microbial communities
Ecology Letters, 2012, 15, 1230-1239
4.3624Citations (PDF)
116Grazing-induced effects on soil properties modify plant competitive interactions in semi-natural mountain grasslands
Oecologia, 2012, 170, 159-169
1.338Citations (PDF)
117Legacy effects of drought on plant growth and the soil food web
Oecologia, 2012, 170, 821-833
1.3120Citations (PDF)
118Fire Accelerates Assimilation and Transfer of Photosynthetic Carbon from Plants to Soil Microbes in a Northern Peatland
Ecosystems, 2012, 15, 1245-1257
1.724Citations (PDF)
119Stability of above-ground and below-ground processes to extreme drought in model grassland ecosystems: Interactions with plant species diversity and soil nitrogen availability1.5165Citations (PDF)
120Interactions between nematodes and their microbial enemies in coastal sand dunes
Oecologia, 2012, 170, 1053-1066
1.340Citations (PDF)
121Differential Effects of Legume Species on the Recovery of Soil Microbial Communities, and Carbon and Nitrogen Contents, in Abandoned Fields of the Loess Plateau, China
Environmental Management, 2012, 50, 1193-1203
1.734Citations (PDF)
122Increased Plant Carbon Translocation Linked to Overyielding in Grassland Species Mixtures
PLoS ONE, 2012, 7, e45926
1.532Citations (PDF)
123Extensive Management Promotes Plant and Microbial Nitrogen Retention in Temperate Grassland
PLoS ONE, 2012, 7, e51201
1.5134Citations (PDF)
124Land use alters the resistance and resilience of soil food webs to drought
Nature Climate Change, 2012, 2, 276-280
12.1653Citations (PDF)
125Differences in yield, Ellenberg N value, tissue chemistry and soil chemistry 15 years after the cessation of nitrogen addition
Plant and Soil, 2012, 357, 309-319
2.321Citations (PDF)
126Grazing exclusion affects soil and plant communities, but has no impact on soil carbon storage in an upland grassland5.4189Citations (PDF)
127Tansley’s vision for Journal of Ecology, and a Centenary Celebration
Journal of Ecology, 2012, 100, 1-5
3.09Citations (PDF)
128Biogeochemical plant–soil microbe feedback in response to climate warming in peatlands
Nature Climate Change, 2012, 3, 273-277
12.1248Citations (PDF)
129Oligopeptides Represent a Preferred Source of Organic N Uptake: A Global Phenomenon?
Ecosystems, 2012, 16, 133-145
1.791Citations (PDF)
130Inter-Specific Competition, but Not Different Soil Microbial Communities, Affects N Chemical Forms Uptake by Competing Graminoids of Upland Grasslands
PLoS ONE, 2012, 7, e51193
1.54Citations (PDF)
131Plant species richness, identity and productivity differentially influence key groups of microbes in grassland soils of contrasting fertility
Biology Letters, 2011, 7, 75-78
1.5162Citations (PDF)
132Rapid peptide metabolism: A major component of soil nitrogen cycling?
Global Biogeochemical Cycles, 2011, 25, n/a-n/a
4.181Citations (PDF)
133Role of nitrogen in carbon mitigation in forest ecosystems4.713Citations (PDF)
134Terrestrial Ecosystem Responses to Species Gains and Losses
Science, 2011, 332, 1273-1277
26.5444Citations (PDF)
135Additional carbon sequestration benefits of grassland diversity restoration
Journal of Applied Ecology, 2011, 48, 600-608
2.8176Citations (PDF)
136Seasonal variation in soluble soil carbon and nitrogen across a grassland productivity gradient7.995Citations (PDF)
137Natural abundance radiocarbon in soil microbial biomass: Results from a glacial foreland
Soil Biology and Biochemistry, 2011, 43, 1356-1361
7.96Citations (PDF)
138Influence of single trees on spatial and temporal patterns of belowground properties in native pine forest
Soil Biology and Biochemistry, 2011, 43, 1372-1378
7.936Citations (PDF)
139Soil- and enantiomer-specific metabolism of amino acids and their peptides by Antarctic soil microorganisms
Soil Biology and Biochemistry, 2011, 43, 2410-2416
7.948Citations (PDF)
140Plant and soil responses to defoliation: a comparative study of grass species with contrasting life history strategies
Plant and Soil, 2011, 344, 377-388
2.332Citations (PDF)
141Plant effects on soil N mineralization are mediated by the composition of multiple soil organic fractions
Ecological Research, 2011, 26, 201-208
1.029Citations (PDF)
142Stakeholder perceptions of grassland ecosystem services in relation to knowledge on soil fertility and biodiversity2.3273Citations (PDF)
143Molecular study of worldwide distribution and diversity of soil animals5.3197Citations (PDF)
144Vascular plant success in a warming Antarctic may be due to efficient nitrogen acquisition
Nature Climate Change, 2011, 1, 50-53
12.1175Citations (PDF)
145Acquisition and Assimilation of Nitrogen as Peptide-Bound and D-Enantiomers of Amino Acids by Wheat
PLoS ONE, 2011, 6, e19220
1.5138Citations (PDF)
146Plant-soil interactions in a changing world2.341Citations (PDF)
147Litter evenness influences short-term peatland decomposition processes
Oecologia, 2010, 164, 511-520
1.347Citations (PDF)
148Towards an assessment of multiple ecosystem processes and services via functional traits
Biodiversity and Conservation, 2010, 19, 2873-2893
1.9906Citations (PDF)
149The influence of seabird nutrient enrichment and grazing on the structure and function of island soil food webs7.931Citations (PDF)
150Influence of plant species and soil conditions on plant–soil feedback in mixed grassland communities
Journal of Ecology, 2010, 98, 384-395
3.0195Citations (PDF)
151The use of chronosequences in studies of ecological succession and soil development
Journal of Ecology, 2010, 98, 725-736
3.01,161Citations (PDF)
152Linkages of plant traits to soil properties and the functioning of temperate grassland
Journal of Ecology, 2010, 98, 1074-1083
3.0369Citations (PDF)
153The impact of agricultural soil erosion on biogeochemical cycling
Nature Geoscience, 2010, 3, 311-314
10.2866Citations (PDF)
154Reply to ‘Erosion and climate’
Nature Geoscience, 2010, 3, 738-738
10.28Citations (PDF)
155Microorganisms and climate change: terrestrial feedbacks and mitigation options
Nature Reviews Microbiology, 2010, 8, 779-790
57.5988Citations (PDF)
156Diversity meets decomposition5.21,206Citations (PDF)
157Understanding ecosystem retrogression
Ecological Monographs, 2010, 80, 509-529
7.0391Citations (PDF)
158Molecular profiling of soil animal diversity in natural ecosystems: Incongruence of molecular and morphological results7.949Citations (PDF)
159Biological Approaches to Global Environment Change Mitigation and Remediation
Current Biology, 2009, 19, R615-R623
2.547Citations (PDF)
160Vegetation cover regulates the quantity, quality and temporal dynamics of dissolved organic carbon and nitrogen in Antarctic soils
Polar Biology, 2009, 32, 999-1008
0.848Citations (PDF)
161Plant functional group identity influences short‐term peatland ecosystem carbon flux: evidence from a plant removal experiment
Functional Ecology, 2009, 23, 454-462
2.9157Citations (PDF)
162Ecosystem feedbacks and cascade processes: understanding their role in the responses of Arctic and alpine ecosystems to environmental change
Global Change Biology, 2009, 15, 1153-1172
7.6396Citations (PDF)
163Vegetation composition promotes carbon and nitrogen storage in model grassland communities of contrasting soil fertility
Journal of Ecology, 2009, 97, 864-875
3.0164Citations (PDF)
164Plant–soil interactions and the carbon cycle
Journal of Ecology, 2009, 97, 838-839
3.031Citations (PDF)
165Integrating plant–soil interactions into global carbon cycle models
Journal of Ecology, 2009, 97, 851-863
3.0247Citations (PDF)
166Among‐ and within‐species variation in plant litter decomposition in contrasting long‐term chronosequences
Functional Ecology, 2009, 23, 442-453
2.974Citations (PDF)
167Microbial contributions to climate change through carbon cycle feedbacks
ISME Journal, 2008, 2, 805-814
5.91,115Citations (PDF)
168The unseen majority: soil microbes as drivers of plant diversity and productivity in terrestrial ecosystems
Ecology Letters, 2008, 11, 296-310
4.34,660Citations (PDF)
169Plant functional traits and soil carbon sequestration in contrasting biomes
Ecology Letters, 2008, 11, 516-531
4.31,305Citations (PDF)
170Do plant species with different growth strategies vary in their ability to compete with soil microbes for chemical forms of nitrogen?7.9140Citations (PDF)
171Drying and rewetting effects on soil microbial community composition and nutrient leaching7.9365Citations (PDF)
172Direct and indirect effects of nitrogen deposition on litter decomposition7.9116Citations (PDF)
173The impact of synthetic pyrethroid and organophosphate sheep dip formulations on microbial activity in soil
Environmental Pollution, 2008, 153, 207-214
5.114Citations (PDF)
174The response of plant diversity to ecosystem retrogression: evidence from contrasting long‐term chronosequences
Oikos, 2008, 117, 93-103
1.694Citations (PDF)
175Heterotrophic microbial communities use ancient carbon following glacial retreat
Biology Letters, 2007, 3, 487-490
1.5233Citations (PDF)
176Temporal variability in plant and soil nitrogen pools in a high-Arctic ecosystem
Soil Biology and Biochemistry, 2007, 39, 2129-2137
7.968Citations (PDF)
177PREFERENCES FOR DIFFERENT NITROGEN FORMS BY COEXISTING PLANT SPECIES AND SOIL MICROBES
Ecology, 2007, 88, 989-999
2.4274Citations (PDF)
178Long-Term Consequences of Grazing and Burning on Northern Peatland Carbon Dynamics
Ecosystems, 2007, 10, 1069-1083
1.7184Citations (PDF)
179Direct uptake of soil nitrogen by mosses
Biology Letters, 2006, 2, 286-288
1.5102Citations (PDF)
180The abundance, richness and functional role of soil meso- and macrofauna in temperate grassland—A case study
Applied Soil Ecology, 2006, 33, 186-198
3.8115Citations (PDF)
181Exploitation of immunofluorescence for the quantification and characterization of small numbers of Pasteuria endospores
FEMS Microbiology Ecology, 2006, 58, 593-600
2.212Citations (PDF)
182Parasitic plants indirectly regulate below-ground properties in grassland ecosystems
Nature, 2006, 439, 969-972
31.3227Citations (PDF)
183Influence of microbial activity on plant–microbial competition for organic and inorganic nitrogen
Plant and Soil, 2006, 289, 321-334
2.3104Citations (PDF)
184Do plant species encourage soil biota that specialise in the rapid decomposition of their litter?7.9132Citations (PDF)
185Root parasite induced nitrogen transfer between plants is density dependent
Soil Biology and Biochemistry, 2006, 38, 2495-2498
7.933Citations (PDF)
186Relating microarthropod community structure and diversity to soil fertility manipulations in temperate grassland
Soil Biology and Biochemistry, 2005, 37, 1707-1717
7.9102Citations (PDF)
187Changes in tree growth resulting from simulated browsing have limited effects on soil biological properties
Soil Biology and Biochemistry, 2005, 37, 2306-2314
7.98Citations (PDF)
188The Effects of Spatial Scale on Trophic Interactions
Ecosystems, 2005, 8, 801-807
1.734Citations (PDF)
189Influence of plants on the chemical extractability and biodegradability of 2,4-dichlorophenol in soil
Environmental Pollution, 2005, 133, 53-62
5.126Citations (PDF)
190A temporal approach to linking aboveground and belowground ecology5.2781Citations (PDF)
191Effect of density and species richness of soil mesofauna on nutrient mineralisation and plant growth3.813Citations (PDF)
192Vertebrate herbivores and ecosystem control: cascading effects of faeces on tundra ecosystems
Ecography, 2004, 27, 242-252
3.1201Citations (PDF)
193Browsing by red deer negatively impacts on soil nitrogen availability in regenerating native forest7.982Citations (PDF)
194Impact of coloniser plant species on the development of decomposer microbial communities following deglaciation7.9155Citations (PDF)
195The impacts of individual plant species on rhizosphere microbial communities in soils of different fertility3.8161Citations (PDF)
196Ecological Linkages Between Aboveground and Belowground Biota
Science, 2004, 304, 1629-1633
26.54,196Citations (PDF)
197Preferential uptake of soil nitrogen forms by grassland plant species
Oecologia, 2004, 142, 627-635
1.3247Citations (PDF)
198How browsing by red deer impacts on litter decomposition in a native regenerating woodland in the Highlands of Scotland3.828Citations (PDF)
199HERBIVORE-MEDIATED LINKAGES BETWEEN ABOVEGROUND AND BELOWGROUND COMMUNITIES
Ecology, 2003, 84, 2258-2268
2.41,030Citations (PDF)
200SOIL MICROBES COMPETE EFFECTIVELY WITH PLANTS FOR ORGANIC-NITROGEN INPUTS TO TEMPERATE GRASSLANDS
Ecology, 2003, 84, 1277-1287
2.4352Citations (PDF)
201Relationships between enchytraeid worms (Oligochaeta), climate change, and the release of dissolved organic carbon from blanket peat in northern England7.988Citations (PDF)
202Changes in species evenness of litter have no effect on decomposition processes
Soil Biology and Biochemistry, 2002, 34, 1959-1963
7.925Citations (PDF)
203Linkages between soil biota, nitrogen availability, and plant nitrogen uptake in a mountain ecosystem in the Scottish Highlands
Applied Soil Ecology, 2002, 19, 121-134
3.888Citations (PDF)
204Causes and consequences of biological diversity in soil
Zoology, 2002, 105, 367-375
0.9178Citations (PDF)
205Site and management effects on soil microbial properties of subalpine meadows: a study of land abandonment along a north–south gradient in the European Alps7.9144Citations (PDF)
206Soil microbial community patterns related to the history and intensity of grazing in sub-montane ecosystems
Soil Biology and Biochemistry, 2001, 33, 1653-1664
7.9230Citations (PDF)
207How changes in soil faunal diversity and composition within a trophic group influence decomposition processes
Soil Biology and Biochemistry, 2001, 33, 2073-2081
7.9229Citations (PDF)
208Title is missing!
Plant and Soil, 2000, 220, 271-277
2.3165Citations (PDF)
209Management influences on soil microbial communities and their function in botanically diverse haymeadows of northern England and Wales7.9112Citations (PDF)
210Determinants of fungal growth and activity in botanically diverse haymeadows: effects of litter type and fertilizer additions7.924Citations (PDF)
211Below-Ground Microbial Community Development in a High Temperature World
Oikos, 1999, 85, 193
1.688Citations (PDF)
212Title is missing!
Plant and Soil, 1999, 212, 23-33
2.3185Citations (PDF)
213The measurement of soil fungal:bacterial biomass ratios as an indicator of ecosystem self-regulation in temperate meadow grasslands3.8392Citations (PDF)
214PLANT REMOVALS IN PERENNIAL GRASSLAND: VEGETATION DYNAMICS, DECOMPOSERS, SOIL BIODIVERSITY, AND ECOSYSTEM PROPERTIES
Ecological Monographs, 1999, 69, 535-568
7.0443Citations (PDF)
215Linkages between plant litter diversity, soil microbial biomass and ecosystem function in temperate grasslands7.9312Citations (PDF)
216Experimental evidence that soil fauna enhance nutrient mineralization and plant nutrient uptake in montane grassland ecosystems
Soil Biology and Biochemistry, 1999, 31, 1007-1014
7.9238Citations (PDF)
217Seasonal changes in soil microbial communities along a fertility gradient of temperate grasslands
Soil Biology and Biochemistry, 1999, 31, 1021-1030
7.9320Citations (PDF)
218Plant Removals in Perennial Grassland: Vegetation Dynamics, Decomposers, Soil Biodiversity, and Ecosystem Properties
Ecological Monographs, 1999, 69, 535
7.018Citations (PDF)
219Linking above-ground and below-ground interactions: how plant responses to foliar herbivory influence soil organisms
Soil Biology and Biochemistry, 1998, 30, 1867-1878
7.9642Citations (PDF)
220Low amounts of root herbivory positively influence the rhizosphere microbial community in a temperate grassland soil7.9120Citations (PDF)
221Functional aspects of soil animal diversity in agricultural grasslands
Applied Soil Ecology, 1998, 10, 263-276
3.8195Citations (PDF)
222Soil microbial activity on exposed mountain ridges in Snowdonia (Eryri), North Wales
Soil Biology and Biochemistry, 1996, 28, 1533-1536
7.913Citations (PDF)
223Changes in soil fungal:bacterial biomass ratios following reductions in the intensity of management of an upland grassland3.8602Citations (PDF)
224Pathogens in livestock waste, their potential for movement through soil and environmental pollution
Applied Soil Ecology, 1995, 2, 1-15
3.8250Citations (PDF)
225Drought Intensity Shapes Soil Legacy Effects on Grassland Plant and Soil Microbial Communities and Their Responses to Future Drought7.618Citations (PDF)
226Interactive effects of urbanness and land cover types on soil carbon and nitrogen pools in green spaces6.31Citations (PDF)
227Advancing predictive understanding of tree organic and inorganic nitrogen uptake across forest biomes7.95Citations (PDF)
228Canopy reflectance as a predictor of soil microbial community composition and diversity at a continental scale
New Phytologist, 0, 249, 829-847
5.35Citations (PDF)
229Plant functional traits can guide the regeneration of soil fertility in Kenyan grasslands
Plant and Soil, 0, 519, 1399-1416
2.30Citations (PDF)
230Long-term warming and vegetation change have no impact on microbial resistance to drought, but destabilise microbial communities and microbially-mediated functions7.90Citations (PDF)
231Grazer exclusion is associated with higher fast-cycling carbon pools but lower slow-cycling mineral-associated carbon across grasslands5.31Citations (PDF)
232Plant diversity increases microbial resistance to drought and soil carbon accumulation3.04Citations (PDF)
233Nitrogen partitioning between plant species and soil microbes in alpine heath7.91Citations (PDF)
234Long-term cessation of grazing reduces net carbon uptake in northern grassland and heathland5.42Citations (PDF)
235Climate‐induced shifts in ectomycorrhizal explorations from long to short strategies along an elevation gradient
New Phytologist, 0, 251, 3558-3575
5.31Citations (PDF)
236Latitudinal patterns and environmental correlates of plant root exudation7.71Citations (PDF)
237Grazing abandonment in Iceland: unearthing the consequences for root biomass and community-level root functional traits2.30Citations (PDF)
238Soil microbiomes and regenerative agriculture
Cell Host and Microbe, 0, 34, 1489-1493
12.20Citations (PDF)
239Soil microbial conservation cannot rely on above-ground biodiversity57.50Citations (PDF)