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Plos One
|
March 22, 2014
Elevated atmospheric CO2 triggers compensatory feeding by root herbivores on a C3 but not a C4 grass
Scott N Johnson, Goran Lopaticki, Susan E Hartley
Bulletin of Entomological Research
|
December 10, 2019
Silicon is an inducible and effective herbivore defence against <i>Helicoverpa punctigera</i> (Lepidoptera: Noctuidae) in soybean
Scott N Johnson, Rhiannon C Rowe, Casey R Hall
Scientific Reports
|
December 8, 2020
Author Correction: Increased insect herbivore performance under elevated CO<sub>2</sub> is associated with lower plant defence signalling and minimal declines in nutritional quality
Scott N Johnson, Jamie M Waterman, Casey R Hall
Plants (Basel, Switzerland)
|
August 14, 2020
Aphid Feeding Induces Phytohormonal Cross-Talk without Affecting Silicon Defense against Subsequent Chewing Herbivores
Scott N Johnson, Rhiannon C Rowe, Casey R Hall
Trends in Plant Science
|
November 17, 2020
Silicon Defence in Plants: Does Herbivore Identity Matter?
Scott N Johnson, Susan E Hartley, Ben D Moore
Current Opinion in Insect Science
|
August 28, 2020
Atmospheric change and induced plant secondary metabolites - are we reshaping the building blocks of multi-trophic interactions?
Paul J Ode, Scott N Johnson, Ben D Moore
Oecologia
|
August 13, 2018
Drought negates growth stimulation due to root herbivory in pasture grasses
Kirk L Barnett, Scott N Johnson, Sally A Power
Scientific Reports
|
September 5, 2020
Increased insect herbivore performance under elevated CO<sub>2</sub> is associated with lower plant defence signalling and minimal declines in nutritional quality
Scott N Johnson, Jamie M Waterman, Casey R Hall
Biology Letters
|
March 17, 2017
Impacts of silicon-based grass defences across trophic levels under both current and future atmospheric CO<sub>2</sub> scenarios
James M W Ryalls, Susan E Hartley, Scott N Johnson
BMC Ecology
|
December 6, 2018
Silicon uptake by a pasture grass experiencing simulated grazing is greatest under elevated precipitation
James M W Ryalls, Ben D Moore, Scott N Johnson
Page
of 7
Search research articles
Search
Showing results (11-20 of 67) with videos related to
Sort By:
Page
of 7
Plos One
|
March 22, 2014
Elevated atmospheric CO2 triggers compensatory feeding by root herbivores on a C3 but not a C4 grass
Scott N Johnson, Goran Lopaticki, Susan E Hartley
Bulletin of Entomological Research
|
December 10, 2019
Silicon is an inducible and effective herbivore defence against <i>Helicoverpa punctigera</i> (Lepidoptera: Noctuidae) in soybean
Scott N Johnson, Rhiannon C Rowe, Casey R Hall
Scientific Reports
|
December 8, 2020
Author Correction: Increased insect herbivore performance under elevated CO<sub>2</sub> is associated with lower plant defence signalling and minimal declines in nutritional quality
Scott N Johnson, Jamie M Waterman, Casey R Hall
Plants (Basel, Switzerland)
|
August 14, 2020
Aphid Feeding Induces Phytohormonal Cross-Talk without Affecting Silicon Defense against Subsequent Chewing Herbivores
Scott N Johnson, Rhiannon C Rowe, Casey R Hall
Trends in Plant Science
|
November 17, 2020
Silicon Defence in Plants: Does Herbivore Identity Matter?
Scott N Johnson, Susan E Hartley, Ben D Moore
Current Opinion in Insect Science
|
August 28, 2020
Atmospheric change and induced plant secondary metabolites - are we reshaping the building blocks of multi-trophic interactions?
Paul J Ode, Scott N Johnson, Ben D Moore
Oecologia
|
August 13, 2018
Drought negates growth stimulation due to root herbivory in pasture grasses
Kirk L Barnett, Scott N Johnson, Sally A Power
Scientific Reports
|
September 5, 2020
Increased insect herbivore performance under elevated CO<sub>2</sub> is associated with lower plant defence signalling and minimal declines in nutritional quality
Scott N Johnson, Jamie M Waterman, Casey R Hall
Biology Letters
|
March 17, 2017
Impacts of silicon-based grass defences across trophic levels under both current and future atmospheric CO<sub>2</sub> scenarios
James M W Ryalls, Susan E Hartley, Scott N Johnson
BMC Ecology
|
December 6, 2018
Silicon uptake by a pasture grass experiencing simulated grazing is greatest under elevated precipitation
James M W Ryalls, Ben D Moore, Scott N Johnson
Page
of 7