Publications
Role of perennial plants in determining the activity of the microbial community in the Negev Desert ecosystem. Soil Biology and Biochemistry. 40:2686-2695.
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2008. Are Biological Effects of Desert Shrubs More Important than Physical Effects on Soil Microorganisms? Microbial Ecology. 59:121-129.
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2010. Species richness of ectomycorrhizal hyphal necromass increases soil CO2 efflux under laboratory conditions. Soil Biology and Biochemistry. 43:1350-1355.
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2011. The exotic legume tree species, Acacia mearnsii, alters microbial soil functionalities and the early development of a native tree species, Quercus suber, in North Africa. Soil Biology and Biochemistry. 65:172-179.
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2013. Effect of rice straw application on microbial community and activity in paddy soil under different water status. Environmental Science and Pollution Research. 23:5941-5948.
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2016. Changes in soil microbial substrate utilization in response to altered litter diversity and precipitation in a Mediterranean shrubland. Biology and Fertility of Soils. 53:171-185.
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2017. Do temperate tree species diversity and identity influence soil microbial community function and composition? Ecology and Evolution. 7:7965-7974.
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2017. Elevated CO2 and Tree Species Affect Microbial Activity and Associated Aggregate Stability in Soil Amended with Litter. Forests. 8:13.
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2017. Microbial richness and composition independently drive soil multifunctionality. Functional Ecology. 31:2330-2343.
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2017. Intraspecies variation in a widely distributed tree species regulates the responses of soil microbiome to different temperature regimes. Environmental Microbiology Reports. 10:167-178.
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2018. Relationship between microbial composition and substrate use efficiency in tropical soil. Geoderma. 315:96-103.
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2018. Short-term exposure to Oil Sand Process-Affected Water does not reduce microbial potential activity in three contrasting peatland types. Wetlands. 38:769-778.
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2018. Springtail community structure is influenced by functional traits but not biogeographic origin of leaf litter in soils of novel forest ecosystems. Proceedings of the Royal Society B-Biological Sciences. 285:7.
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2018. Drivers of soil carbon stabilization in oil palm plantations. Land Degradation & Development. 30:1904-1915.
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2019. Global ecological predictors of the soil priming effect. Nature Communications. 10:9.
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2019. Nutrient availability affects carbon turnover and microbial physiology differently in topsoil and subsoil under a temperate grassland. Geoderma. 336:22-30.
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2019. Soil amendments with ethylene precursor alleviate negative impacts of salinity on soil microbial properties and productivity. Scientific Reports. 9:13.
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2019. Soil microbial respiration adapts to ambient temperature in global drylands. Nature Ecology & Evolution. 3:232-+.
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2019. Carbon use efficiency and microbial functional diversity in a temperate Luvisol and a tropical Nitisol after millet litter and N addition. Biology and Fertility of Soils. 56:1139-1150.
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2020. Soil macrofaunal activity, microbial catabolic limitations and nutrient cycling in cropping systems amended with woody residues and nitrogen inputs. Pedobiologia. 83:10.
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2020. Soil microbial community shifts with long-term of different straw return in wheat-corn rotation system. Scientific Reports. 10:10.
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2020. Effects of warming, wetting and nitrogen addition on substrate-induced respiration and temperature sensitivity of heterotrophic respiration in a temperate forest soil. Pedosphere. 31:363-372.
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2021. Functional diversity and identity of plant genotypes regulate rhizodeposition and soil microbial activity. New Phytologist. 232:776-787.
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2021.