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Nicholas J Ostle

Showing results (1-10 of 23) with videos related to

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The ISME Journal|July 11, 2008
Microbial contributions to climate change through carbon cycle feedbacksRichard D Bardgett, Chris Freeman, Nicholas J Ostle
Global Change Biology|October 18, 2013
Wind farm and solar park effects on plant-soil carbon cycling: uncertain impacts of changes in ground-level microclimateAlona Armstrong, Susan Waldron, Jeanette Whitaker, et al.
The Science of the Total Environment|April 14, 2022
Interactions between climate warming and land management regulate greenhouse gas fluxes in a temperate grassland ecosystemArlete S Barneze, Jeanette Whitaker, Niall P McNamara, et al.
Oecologia|February 18, 2015
Contrasting growth responses of dominant peatland plants to warming and vegetation compositionTom N Walker, Susan E Ward, Nicholas J Ostle, et al.
Oecologia|February 6, 2018
Biogeographic differences in soil biota promote invasive grass response to nutrient addition relative to co-occurring species despite lack of belowground enemy releaseArthur A D Broadbent, Carly J Stevens, Nicholas J Ostle, et al.
Oecologia|December 9, 2017
Belowground competition drives invasive plant impact on native species regardless of nitrogen availabilityArthur Broadbent, Carly J Stevens, Duane A Peltzer, et al.
Global Change Biology|April 2, 2014
Interactive biotic and abiotic regulators of soil carbon cycling: evidence from controlled climate experiments on peatland and boreal soilsMaría Jesús I Briones, Niall P McNamara, Jan Poskitt, et al.
Ecology Letters|August 20, 2013
Warming effects on greenhouse gas fluxes in peatlands are modulated by vegetation compositionSusan E Ward, Nicholas J Ostle, Simon Oakley, et al.
Global Change Biology|January 6, 2016
Vascular plants promote ancient peatland carbon loss with climate warmingTom N Walker, Mark H Garnett, Susan E Ward, et al.
The Science of the Total Environment|January 17, 2020
Land-use changes alter soil bacterial composition and diversity in tropical forest soil in ChinaYingtao Sun, Chunling Luo, Longfei Jiang, et al.
Pageof 3

Showing results (1-10 of 23) with videos related to

Sort By:
Pageof 3
The ISME Journal|July 11, 2008
Microbial contributions to climate change through carbon cycle feedbacksRichard D Bardgett, Chris Freeman, Nicholas J Ostle
Global Change Biology|October 18, 2013
Wind farm and solar park effects on plant-soil carbon cycling: uncertain impacts of changes in ground-level microclimateAlona Armstrong, Susan Waldron, Jeanette Whitaker, et al.
The Science of the Total Environment|April 14, 2022
Interactions between climate warming and land management regulate greenhouse gas fluxes in a temperate grassland ecosystemArlete S Barneze, Jeanette Whitaker, Niall P McNamara, et al.
Oecologia|February 18, 2015
Contrasting growth responses of dominant peatland plants to warming and vegetation compositionTom N Walker, Susan E Ward, Nicholas J Ostle, et al.
Oecologia|February 6, 2018
Biogeographic differences in soil biota promote invasive grass response to nutrient addition relative to co-occurring species despite lack of belowground enemy releaseArthur A D Broadbent, Carly J Stevens, Nicholas J Ostle, et al.
Oecologia|December 9, 2017
Belowground competition drives invasive plant impact on native species regardless of nitrogen availabilityArthur Broadbent, Carly J Stevens, Duane A Peltzer, et al.
Global Change Biology|April 2, 2014
Interactive biotic and abiotic regulators of soil carbon cycling: evidence from controlled climate experiments on peatland and boreal soilsMaría Jesús I Briones, Niall P McNamara, Jan Poskitt, et al.
Ecology Letters|August 20, 2013
Warming effects on greenhouse gas fluxes in peatlands are modulated by vegetation compositionSusan E Ward, Nicholas J Ostle, Simon Oakley, et al.
Global Change Biology|January 6, 2016
Vascular plants promote ancient peatland carbon loss with climate warmingTom N Walker, Mark H Garnett, Susan E Ward, et al.
The Science of the Total Environment|January 17, 2020
Land-use changes alter soil bacterial composition and diversity in tropical forest soil in ChinaYingtao Sun, Chunling Luo, Longfei Jiang, et al.
Pageof 3