The photosynthetic response to elevated CO2 in high altitude potato species (Solanum curtilobum)

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Abstract

Plants of Solanum curtilobum (from high altitude) and Solanum tuberosum (from low altitude) were grown in open-top chambers in a greenhouse at either ambient (AC, 360 μmol mol-1) or ca. twice ambient (EC, 720 μmol mol-1) CO2 concentrations for 30 d. CO2 treatments started at the reproductive stage of the plants. There were similar patterns in the physiological response to CO2 enrichment in the two species. Stomatal conductance was reduced by 59 % in S. tuberosum and by 55 % in S. curtilobum, but such a reduction did not limit the net photosynthetic rate (PN), which was increased by approximately 56 % in S. curtilobum and 53 % in S. tuberosum. The transpiration rate was reduced by 16 % in both potato species while instantaneous transpiration efficiency increased by 80 % in S. tuberosum and 90 % in S. curtilobum. Plants grown under EC showed 36 and 66 % increment in total dry biomass, whereas yields (dry mass of tubers) were increased by 40 and 85 % in S. tuberosum and S. curtilobum, respectively. EC promoted productivity by increasing PN. Thus S. tuberosum, cultivated around the world at low altitudes, and S. curtilobum, endemic of the high-land Andes, respond positively to EC during the tuberisation stage.

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Olivo, N., Martinez, C. A., & Oliva, M. A. (2002). The photosynthetic response to elevated CO2 in high altitude potato species (Solanum curtilobum). Photosynthetica, 40(2), 309–313. https://doi.org/10.1023/A:1021370429699

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