02836nam a2200385 a 450000100080000000500110000800800410001910000210006024501390008126002210022052015880044165000190202965000190204865000090206765000200207665300150209665300170211170000190212870000210214770000190216870000200218770000200220770000180222770000160224570000250226170000190228670000170230570000150232270000220233770000210235970000140238070000170239470000200241170000190243120364372016-03-18 2015 bl uuuu u00u1 u #d1 aRODRIGUES, W. P. aEffect of high [CO2] and temperature on the photosynthetic enzymes and electron transport of Coffea Arabica L..h[electronic resource] aIn: BRAZILIAN CONGRESS OF PLANT PHYSIOLOGY, 15.; BRAZILIAN-ISRAELI PLANT SCIENCES CONFERENCE, 1., 2015, Foz do Iguaçu. Abstracts... Foz do Iguaçu: Sociedade Brasileira de Fisiologia Vegetal, 2015. Ref. D-053.c2015 aIt is expected that future climate changes and global warming conditions will limit the coffee crop yields. However, the real effects of enhanced air [CO2] and temperature on this plant remain completely unknown. Therefore, this work studied the impact of such environmental changes on the photosynthetic machinery of Coffea arabica L. cv. Icatu. Plants were grown for 1 year under controlled conditions (temperature, RH, irradiance, photoperiod), at 380 or 700 ?L CO2 L-1 air, without nutrient, water and root space limitations, and then subjected to temperature increase (0.5ºC/day) to 42/34ºC. Thylakoid electron transport involving PSI and II, and enzyme activities (RuBisCO and RuB5PK) were assessed at 25/20ºC, 31/25ºC, 37/30ºC and 42/34ºC.The results showed a marginal impact until 37 ºC irrespective of [CO2] conditions, configuring a clear tolerance to supra-optimal temperatures. Also, a higher metabolic performance was observed in the plants under high [CO2]. Only at 42 ºC the tolerance limit was exceeded, as shown by significant impacts in all parameters, particularly in enzymes, but under elevated [CO2] a better performance was preserved regarding the photosystems functioning. Our findings showed that the elevated [CO2] allowed maintenance of higher metabolic activity and seemed to some extent mitigate the heat impact at the photosystems level, what is quite relevant in a context of predict global warming scenarios. This work was supported by Portuguese funds from Fundação para a Ciência e a Tecnologia, through the project PTDC/AGR-PRO/3386/2012. aCarbon dioxide aClimate change aHeat aCoffea Arábica aCO2 effect aCoffee plant1 aMARTINS, M. Q.1 aFORTUNATO, A. S.1 aMARTINS, L. D.1 aPARTELLI, F. L.1 aCAMPOSTRINI, E.1 aSEMEDO, J. N.1 aPAIS, I. P.1 aSIMÕES-COSTA, S. C.1 aLEITÃO, A. E.1 aTOMAZ, M. A.1 aCOLWEL, F.1 aSCOTTI-CAMPOS, P.1 aRODRIGUES, A. P.1 aGHINI, R.1 aLIDON, F. C.1 aMATTA, F. M. da1 aRAMALHO, J. C.