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Inoculation with an enhanced N2‐fixing Bradyrhizobium japonicum strain (USDA110) does not alter soybean (Glycine max Merr.) response to elevated [CO2]
Authors:Álvaro Sanz‐sáez  Katy D Heath  Patricia V Burke  Elizabeth A Ainsworth
Institution:1. Department of Plant Biology, University of Illinois at Urbana‐Champaign, Urbana, IL, USA;2. Department of Plant Biology and Ecology, Pharmacy Faculty, University of the Basque Country UPV/EHU, Vitoria‐Gasteiz, Alava, Spain;3. Global Change and Photosynthesis Research Unit, USDA ARS, Urbana, IL, USA
Abstract:This study tested the hypothesis that inoculation of soybean (Glycine max Merr.) with a Bradyrhizobium japonicum strain (USDA110) with greater N2 fixation rates would enhance soybean response to elevated CO2]. In field experiments at the Soybean Free Air CO2 Enrichment facility, inoculation of soybean with USDA110 increased nodule occupancy from 5% in native soil to 54% in elevated CO2] and 34% at ambient CO2]. Despite this success, inoculation with USDA110 did not result in greater photosynthesis, growth or seed yield at ambient or elevated CO2] in the field, presumably due to competition from native rhizobia. In a growth chamber experiment designed to study the effects of inoculation in the absence of competition, inoculation with USDA110 in sterilized soil resulted in nodule occupation of >90%, significantly greater 15N2 fixation, photosynthetic capacity, leaf N and total plant biomass compared with plants grown with native soil bacteria. However, there was no interaction of rhizobium fertilization with elevated CO2]; inoculation with USDA110 was equally beneficial at ambient and elevated CO2]. These results suggest that selected rhizobia could potentially stimulate soybean yield in soils with little or no history of prior soybean production, but that better quality rhizobia do not enhance soybean responses to elevated CO2].
Keywords:elevated carbon dioxide  free air CO2 enrichment  N2 fixation  nodulation  rhizobia
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