Publications
Unraveling microbiomes and functions associated with strategic tillage, stubble, and fertilizer management. Agriculture, Ecosystems & Environment. 323:107686.
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2022. Role of vermicompost chemical composition, microbial functional diversity, and fungal community structure in their microbial respiratory response to three pesticides. Bioresource Technology. 102:9638-9645.
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2011. High C input by perennial energy crops boosts belowground functioning and increases soil organic P content. Agriculture, Ecosystems & Environment. 308:15.
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2021. Resistance and Resilience of Soil Nitrogen Cycling to Drought and Heat Stress in Rehabilitated Urban Soils. Frontiers in Microbiology. 12:14.
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2021. The responses of NO2-- and N2O-reducing bacteria to maize inoculation by the PGPR Azospirillum lipoferum CRT1 depend on carbon availability and determine soil gross and net N2O production. Soil Biology and Biochemistry. 136:10.
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2019. Soil C and N statuses determine the effect of maize inoculation by plant growth-promoting rhizobacteria on nitrifying and denitrifying communities. Scientific Reports. 7:12.
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2017. Belowground microbes mitigate plant-plant competition. Plant Science. 262:175-181.
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2017. Competition, Not Cooperation, Dominates Interactions among Culturable Microbial Species. Current Biology. 22:1845-1850.
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2012. Soil chemistry and microbial community functional responses to invasive shrub removal in mixed hardwood forests. Applied Soil Ecology. 131:75-88.
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2018. Functional microbial diversity responses to biodynamic management in Burgundian vineyard soils. Biological Agriculture & Horticulture. 36:172-186.
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2020. The combined application of nitrogen and biochar reduced microbial carbon limitation in irrigated soils of West African urban horticulture. Chemical and Biological Technologies in Agriculture. 9:12.
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2022. Soil microbial activity in a Mediterranean garrigue responds more to changing shrub community than to reduced rainfall. Plant and Soil. 449:405-421.
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2020. Changes in soil microbial community activity and composition following substrate amendment within the MicroResp (TM) system. Journal of Soils and Sediments. 22:1242-1251.
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2022. Early-successional vegetation changes after roadside prairie restoration modify processes related with soil functioning by changing microbial functional diversity. Soil Biology and Biochemistry. 43:1245-1253.
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2011. Contrasting mass-ratio vs. niche complementarity effects on litter C and N loss during decomposition along a regional climatic gradient. Journal of Ecology. 105:968-978.
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2017. Side-effects of plant domestication: ecosystem impacts of changes in litter quality. New Phytologist. 198:504-513.
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2013. Application of a high-throughput laboratory method to assess litter decomposition rates in multiple-species experiments. Soil Biology and Biochemistry. 57:929-932.
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2013. Disentangling the Litter Quality and Soil Microbial Contribution to Leaf and Fine Root Litter Decomposition Responses to Reduced Rainfall. Ecosystems. 19:490-503.
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2016. Ecosystem development in roadside grasslands: biotic control, plant–soil interactions, and dispersal limitations. Ecological Applications. 21:2806-2821.
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2011. Post-fire recovery of soil microbial functions is promoted by plant growth. European Journal of Soil Science. 73:15.
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2022. Soil microbial functional activity is governed by a combination of tree species composition and soil properties in temperate forests. Applied Soil Ecology. 100:57-64.
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2016. Density and Diversity of Microbial Symbionts under Organic and Conventional Agricultural Management. Microbes and Environments. 34:234-243.
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2019. Microbial biomass, activity, and community structure in horticultural soils under conventional and organic management strategies. European Journal of Soil Biology. 58:122-128.
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2013. Fluorine and white clover: Assessing fluorine's impact on Rhizobium leguminosarum. Journal of Environmental Quality. 49:987-999.
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2020. Crop species and year affect soil-dwelling Collembola and Acari more strongly than fertilisation regime in an arable field. Applied Soil Ecology. 173:11.
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2022.