Browsing by Author "Tadashi Sakazaki, Roberto"
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Item Influência da cobertura morta na evapotranspiração, coeficiente de cultivo e eficiência de uso de agua do milho cultivado em cerrado(Universidad Nacional Autónoma de Chota, 2016-04-05) Murga Orrillo, Hipólito; Farias Araújo, Wellington; Abanto Rodríguez, Carlos; Tadashi Sakazaki, Roberto; Bardales Lozano, Ricardo Manuel; Polo Vargas, E Ana RosaA irrigação consome grande quantidade de água, sendo importante um adequado manejo da cultura para minimizar esse consumo, maximizando a produção. No intuito de obter informações para o manejo da irrigação, objetivou-se com o presente trabalho determinar a evapotranspiração da cultura (ETc), o coeficiente de cultivo (Kc) e a eficiência do uso de agua (EUAg) da cultura de milho, em solo com e sem cobertura, durante os diferentes estádios de desenvolvimento, utilizando lisímetros de drenagem. O experimento foi conduzido no campus Cauamé da Universidade Federal de Roraima, entre 19/04/2014 e 07/08/2014, em Boa Vista, RR. A evapotranspiração de referência (ETo) foi estimada pelo método de Penman-Monteith FAO. Os resultados da ETc do milho, durante o ciclo da cultura, em solo sem e com cobertura foram de 421,5 e 351,0 mm, respectivamente. As médias diárias de ETc foram de 4,1 mm dia-1 para solo sem cobertura e 3,4 mm dia-1 para solo com cobertura. A cobertura do solo propiciou valores diferentes de Kc's para o milho, nos mesmos estádios, em comparação aos Kc’s do solo descoberto. Para o solo descoberto, os Kc’s observados para os estádios fenológicos I, II, III, e IV, foram de 0,40; 0,84; 1,59 e 0,81, respectivamente. Já para solo com cobertura, os Kc’s pelos mesmos estádios em menção foram 0,28; 0,64; 1,49 e 0,48, respectivamente. A EUAg para solo com cobertura foi 1,77 kg m-3 e para solo sem cobertura foi 1,65 kg m-3 . Estes resultados mostram que a cobertura morta no solo influenciou no consumo hídrico do milho durante todo seu ciclo.Item Relation between the mineral nutrients and the vitamin C content in camu-camu plants (Myrciria dubia) cultivated on high soils and flood soils of Ucayali, Peru(Universidad Nacional Autónoma de Chota, 2016-09-27) Abanto Rodríguez, Carlos; Pinedo Panduro, Mario; Alves Chagas, Edvan; Cardoso Chagas, Pollyana; Tadashi Sakazaki, Roberto; Santos de Menezes, Pedro Henrique; Murga Orrillo, Hipólito; Farias Araújo, WellingtonCamu-camu is a native plant of the Peruvian Amazon. It is noted for its high concentration of ascorbic acid, however this feature varies widely from one location to another due to genetic and environmental factors. In order to determine the relationship between mineral nutrients and the concentration of ascorbic acid in camu- camu plants, a study was conducted in three camu-camu producing areas in flood-prone soils and soils on dry land conditions in the Ucayali Region. For this purpose, soil samples and camu-camu were collected. The content of following macronutrients was analyzed: nitrogen, phosphorus, potassium, calcium and magnesium; also was determined the concentration of aluminum, pH, organic matter and ascorbic acid. The results show that the camu-camu plantations located in upland soils had lower concentrations of ascorbic acid and lower natural fertility, than soils prone to flooding. Ascorbic acid is negatively related to the concentration of aluminum and positively to the concentration of magnesium and phosphorus in the camu-camu producing areas. It is concluded that the concentration of ascorbic acid in camu-camu plants is best expressed when soils have better chemical attributes and good conditions of natural fertility.Item Shade nets and substrates in seedling production of Annona squamosa L. in the Roraima Cerrado(Universidad Nacional Autónoma de Chota, 2019-09) Tadashi Sakazaki, Roberto; Farias Araújo, Wellington; Lopes Monteiro Neto, João Luiz; Cardoso Chagas, Pollyana; Alves Chagas, Edvan; Murga Orrillo, Hipólito; Bardales Lozano, Ricardo Manuel; Abanto Rodríguez, CarlosSugar apple (Annona squamosa L.) is one of the most widely grown member of the Annonaceae family in several regions, but there is still a lack of agronomic data regarding the management of its initial growth stages under Cerrado conditions. The aim of the present study was to evaluate the production of Annona squamosa L. seedlings under different environmental conditions achieved by using shade nets (E1: ChromatiNet® Silver 50%; E2: ChromatiNet® red 50%; E3: ChromatiNet® red 35%; E4: ChromatiNet® Silver 35%) in combination with four different substrates (S1: soil + sand + chicken manure; S2: soil + sand + cattle manure; S3: soil + sand + cattle manure + chicken manure; S4: soil + sand + sheep manure). An experiment was set up using a completely randomized design with treatments in a split-plot arrangement, with four replicates and ten plants per experimental unit. Seedling growth parameters and quality indices were evaluated. The tested environments had higher local temperatures relative to the external environment, which had a negative effect on plant growth. Environment E2 resulted in the highest plant height and dry weight, but led to uneven growth among the evaluated plant parts. The substrate with sheep manure (S4) did not benefit seedling production. The best results for seedling growth and quality were obtained with substrates S2 (soil + sand + cattle manure) and S3 (soil + sand + cattle manure + chicken manure), which are therefore promising for Annona squamosa L. seedling production in the Roraima Cerrado.Item Sustratos orgánicos en la producción de plantas de Calycophyllum spruceanum (Benth.)(Universidad Nacional Autónoma de Chota, 2016-09-27) Abanto Rodriguez, Carlos Javier; García Soria, Diego; Guerra Arévalo, Wilson; Murga Orrillo, Hipólito; Saldaña Ríos, Gisela; Vázquez Reátegui, Daniela; Tadashi Sakazaki, RobertoEste trabajo tuvo como objetivo evaluar la influencia del compuesto orgánico en la producción de plantas de capirona. El experimento fue realizado en el Centro de Investigaciones Dale E. Bandy del IIAP Ucayali. Los tratamientos fueron distribuidos mediante un Diseño Completos al Azar (DCA), con 5 tratamientos 3 repeticiones y 10 plantas por unidad experimental, los tratamientos fueron: T1 [Tierra aluvial]; T2 [tierra agrícola]; T3 [Tierra aluvial + tierra agrícola (1:1)]; T4 [Tierra aluvial + cascarilla de arroz + gallinaza (1:1:1)] y T5 [Tierra Agrícola+ cascarilla de arroz + gallinaza (1:1:1]. Las variables evaluadas al final del experimento fueron altura de planta (H) (cm); diámetro basal (DB) (mm); número de hojas; relación altura y diámetro basal (H∕DB); masa seca de la parte aérea (MSPA) (g); masa seca de la raíz (MSR) (g) e índice de calidad de Dickson (IQD). Los resultados muestran que los tratamientos T4 y T5 presentaron diferencias significativas superiores en todas las variables evaluadas en relación a los otros tratamientos. En ese sentido se concluye que los sustratos [Tierra aluvial + cascarilla de arroz + gallinaza] y [Tierra Agrícola+ cascarilla de arroz + gallinaza], provenientes de residuos de origen animal y vegetal proporcionaron mayor eficiencia en el crecimiento y mejor calidad de plantas de capirona aptas para campo definitivo.