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Nick J Ostle

Showing results (1-10 of 12) with videos related to

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Oecologia|May 1, 2010
Litter evenness influences short-term peatland decomposition processesSusan E Ward, Nick J Ostle, Niall P McNamara, et al.
Ecology and Evolution|December 1, 2017
Land use not litter quality is a stronger driver of decomposition in hyperdiverse tropical forestSabine Both, Dafydd M O Elias, Ully H Kritzler, et al.
Plos One|October 11, 2012
Increased plant carbon translocation linked to overyielding in grassland species mixturesGerlinde B De Deyn, Helen Quirk, Simon Oakley, et al.
Journal of Microbiological Methods|August 10, 2010
Effects of sieving, drying and rewetting upon soil bacterial community structure and respiration ratesBruce C Thomson, Nick J Ostle, Niall P McNamara, et al.
Frontiers in Plant Science|July 6, 2016
Root Herbivores Drive Changes to Plant Primary Chemistry, but Root Loss Is Mitigated under Elevated Atmospheric CO2Scott W McKenzie, Scott N Johnson, T Hefin Jones, et al.
Ecology and Evolution|September 15, 2021
Do soil depth and plant community composition interact to modify the resistance and resilience of grassland ecosystem functioning to drought?Ellen L Fry, Anna Wilkinson, David Johnson, et al.
Frontiers in Microbiology|September 24, 2013
Plant soil interactions alter carbon cycling in an upland grassland soilBruce C Thomson, Nick J Ostle, Niall P McNamara, et al.
Plos One|September 16, 2015
Soil Methane Sink Capacity Response to a Long-Term Wildfire Chronosequence in Northern SwedenNiall P McNamara, Ruth Gregg, Simon Oakley, et al.
Ecology Letters|September 7, 2019
Microbial responses to warming enhance soil carbon loss following translocation across a tropical forest elevation gradientAndrew T Nottingham, Jeanette Whitaker, Nick J Ostle, et al.
Ecology|August 5, 2018
Microbes follow Humboldt: temperature drives plant and soil microbial diversity patterns from the Amazon to the AndesAndrew T Nottingham, Noah Fierer, Benjamin L Turner, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Oecologia|May 1, 2010
Litter evenness influences short-term peatland decomposition processesSusan E Ward, Nick J Ostle, Niall P McNamara, et al.
Ecology and Evolution|December 1, 2017
Land use not litter quality is a stronger driver of decomposition in hyperdiverse tropical forestSabine Both, Dafydd M O Elias, Ully H Kritzler, et al.
Plos One|October 11, 2012
Increased plant carbon translocation linked to overyielding in grassland species mixturesGerlinde B De Deyn, Helen Quirk, Simon Oakley, et al.
Journal of Microbiological Methods|August 10, 2010
Effects of sieving, drying and rewetting upon soil bacterial community structure and respiration ratesBruce C Thomson, Nick J Ostle, Niall P McNamara, et al.
Frontiers in Plant Science|July 6, 2016
Root Herbivores Drive Changes to Plant Primary Chemistry, but Root Loss Is Mitigated under Elevated Atmospheric CO2Scott W McKenzie, Scott N Johnson, T Hefin Jones, et al.
Ecology and Evolution|September 15, 2021
Do soil depth and plant community composition interact to modify the resistance and resilience of grassland ecosystem functioning to drought?Ellen L Fry, Anna Wilkinson, David Johnson, et al.
Frontiers in Microbiology|September 24, 2013
Plant soil interactions alter carbon cycling in an upland grassland soilBruce C Thomson, Nick J Ostle, Niall P McNamara, et al.
Plos One|September 16, 2015
Soil Methane Sink Capacity Response to a Long-Term Wildfire Chronosequence in Northern SwedenNiall P McNamara, Ruth Gregg, Simon Oakley, et al.
Ecology Letters|September 7, 2019
Microbial responses to warming enhance soil carbon loss following translocation across a tropical forest elevation gradientAndrew T Nottingham, Jeanette Whitaker, Nick J Ostle, et al.
Ecology|August 5, 2018
Microbes follow Humboldt: temperature drives plant and soil microbial diversity patterns from the Amazon to the AndesAndrew T Nottingham, Noah Fierer, Benjamin L Turner, et al.
Pageof 2