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CO_(2) Assimilation Rate in Production Systems for Papaya Crops
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作者 R.Ariza-Flores D.Trujillo-García +4 位作者 M.A.Otero-Sánchez E.Canales Sosa C.H.Avendaño-Arrazate L.A.Gálvez-Marroquín P.Cadena Iñiguez 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第3期933-947,共15页
The aim of this study was to evaluate some physiological aspects of papaya crops in semi conventional and organic production systems.The following factors assessed in this experiment were:1.Production systems(organic ... The aim of this study was to evaluate some physiological aspects of papaya crops in semi conventional and organic production systems.The following factors assessed in this experiment were:1.Production systems(organic and semi conventional);2.Genotypes(Maradol and Maradona F1),and 3.Cover crop plants(Canavalia,vegetative cover and no cover).Twelve treatments were obtained-product of factors’combination-and distributed under a threerepetition experimental design of subdivided parcels.The factors examined in this study,that changed the CO_(2) assimilation rate,were production system and genotype.It was determined that the greatest gas exchange in papaya crops happened at 13:40 h but achieving the highest CO_(2) assimilation was also affected by the production system and genotype.Similarly,they showed some effects in CO_(2) assimilation,transpiration,stomatal conductance,intercellular CO_(2),leaf temperature,chlorophyll,and temperature.In general,the combination of factors that accentuated in this experiment were the semi conventional-Maradona-Canavalia with a crop yield of 53.5 t ha^(-1),followed by treatments organic-Maradona-no cover and semi conventional-Maradona-vegetative cover. 展开更多
关键词 RESPIRATION production system Carica papaya L.
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