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David T Tissue

Showing results (141-150 of 174) with videos related to

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Global Change Biology|November 8, 2014
The capacity to cope with climate warming declines from temperate to tropical latitudes in two widely distributed Eucalyptus speciesJohn E Drake, Michael J Aspinwall, Sebastian Pfautsch, et al.
Functional Plant Biology : FPB|June 3, 2020
Rising temperature may negate the stimulatory effect of rising CO<sub>2</sub> on growth and physiology of Wollemi pine (Wollemia nobilis)James D Lewis, Nathan G Phillips, Barry A Logan, et al.
Plants (Basel, Switzerland)|August 29, 2020
Circadian Regulation Does Not Optimize Stomatal BehaviourVíctor Resco de Dios, William R L Anderegg, Ximeng Li, et al.
Oecologia|April 26, 2011
Maintenance of C sinks sustains enhanced C assimilation during long-term exposure to elevated [CO2] in Mojave Desert shrubsIker Aranjuelo, Allison L Ebbets, R Dave Evans, et al.
Frontiers in Plant Science|October 6, 2016
DRI-Grass: A New Experimental Platform for Addressing Grassland Ecosystem Responses to Future Precipitation Scenarios in South-East AustraliaSally A Power, Kirk L Barnett, Raul Ochoa-Hueso, et al.
Journal of Experimental Botany|September 11, 2014
Drought increases heat tolerance of leaf respiration in Eucalyptus globulus saplings grown under both ambient and elevated atmospheric [CO2] and temperaturePaul P G Gauthier, Kristine Y Crous, Gohar Ayub, et al.
Global Change Biology|April 12, 2022
Warming drives sustained plant phosphorus demand in a humid tropical forestZhiyang Lie, Guoyi Zhou, Wenjuan Huang, et al.
Global Change Biology|July 13, 2020
Low phosphorus supply constrains plant responses to elevated CO<sub>2</sub> : A meta-analysisMingkai Jiang, Silvia Caldararu, Haiyang Zhang, et al.
Tree Physiology|May 28, 2011
Interactive effects of elevated CO2 and drought on nocturnal water fluxes in Eucalyptus salignaMelanie J B Zeppel, James D Lewis, Belinda Medlyn, et al.
Nature Ecology & Evolution|June 4, 2025
Climate warming fuels the global antibiotic resistome by altering soil bacterial traitsDa Lin, Shuai Du, Zhe Zhao, et al.
Pageof 18

Showing results (141-150 of 174) with videos related to

Sort By:
Pageof 18
Global Change Biology|November 8, 2014
The capacity to cope with climate warming declines from temperate to tropical latitudes in two widely distributed Eucalyptus speciesJohn E Drake, Michael J Aspinwall, Sebastian Pfautsch, et al.
Functional Plant Biology : FPB|June 3, 2020
Rising temperature may negate the stimulatory effect of rising CO<sub>2</sub> on growth and physiology of Wollemi pine (Wollemia nobilis)James D Lewis, Nathan G Phillips, Barry A Logan, et al.
Plants (Basel, Switzerland)|August 29, 2020
Circadian Regulation Does Not Optimize Stomatal BehaviourVíctor Resco de Dios, William R L Anderegg, Ximeng Li, et al.
Oecologia|April 26, 2011
Maintenance of C sinks sustains enhanced C assimilation during long-term exposure to elevated [CO2] in Mojave Desert shrubsIker Aranjuelo, Allison L Ebbets, R Dave Evans, et al.
Frontiers in Plant Science|October 6, 2016
DRI-Grass: A New Experimental Platform for Addressing Grassland Ecosystem Responses to Future Precipitation Scenarios in South-East AustraliaSally A Power, Kirk L Barnett, Raul Ochoa-Hueso, et al.
Journal of Experimental Botany|September 11, 2014
Drought increases heat tolerance of leaf respiration in Eucalyptus globulus saplings grown under both ambient and elevated atmospheric [CO2] and temperaturePaul P G Gauthier, Kristine Y Crous, Gohar Ayub, et al.
Global Change Biology|April 12, 2022
Warming drives sustained plant phosphorus demand in a humid tropical forestZhiyang Lie, Guoyi Zhou, Wenjuan Huang, et al.
Global Change Biology|July 13, 2020
Low phosphorus supply constrains plant responses to elevated CO<sub>2</sub> : A meta-analysisMingkai Jiang, Silvia Caldararu, Haiyang Zhang, et al.
Tree Physiology|May 28, 2011
Interactive effects of elevated CO2 and drought on nocturnal water fluxes in Eucalyptus salignaMelanie J B Zeppel, James D Lewis, Belinda Medlyn, et al.
Nature Ecology & Evolution|June 4, 2025
Climate warming fuels the global antibiotic resistome by altering soil bacterial traitsDa Lin, Shuai Du, Zhe Zhao, et al.
Pageof 18