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Applied and Environmental Microbiology|September 7, 2001
Evidence that elevated CO2 levels can indirectly increase rhizosphere denitrifier activityD R Smart, K Ritchie, J M Stark, et al.Plant, Cell & Environment|September 7, 2001
Nitrogen balance for wheat canopies (Triticum aestivum cv. Veery 10) grown under elevated and ambient CO2 concentrationsD R Smart, K Ritchie, A J Bloom, et al.Plant, Cell & Environment|January 1, 1994
The influence of elevated CO2 on non-structural carbohydrate distribution and fructan accumulation in wheat canopiesD R Smart, N J Chatterton, B BugbeeLife Support & Biosphere Science : International Journal of Earth Space|January 1, 1996
Mass transfer in the biological fast lane: high CO2 and a shallow root zoneD Smart, K Ritchie, B BugbeePhysiologia Plantarum|January 1, 1995
On the use of antibiotics to reduce rhizoplane microbial populations in root physiology and ecology investigationsD R Smart, A Ferro, K Ritchie, et al.ASGSB Bulletin : Publication of the American Society for Gravitational and Space Biology|October 1, 1995
The components of crop productivity: measuring and modeling plant metabolismB BugbeeAdvances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|January 1, 1992
Determining the potential productivity of food crops in controlled environmentsB BugbeeGravitational and Space Biology Bulletin : Publication of the American Society for Gravitational and Space Biology|September 7, 2001
Engineering plants for spaceflight environmentsB BugbeeHortscience : a Publication of the American Society for Horticultural Science|July 1, 1992
Steady-state canopy gas exchange: system design and operationB BugbeePlant, Cell & Environment|September 7, 2001
Adaptation to high CO2 concentration in an optimal environment: radiation capture, canopy quantum yield and carbon use efficiencyO Monje, B BugbeePageof 46