scholarly journals IRRIGAÇÃO LATERALMENTE ALTERNADA EM LIMA ÁCIDA 'TAHITI' NA REGIÃO NORTE DE MINAS GERAIS

Irriga ◽  
2018 ◽  
Vol 1 (01) ◽  
pp. 71 ◽  
Author(s):  
Marcelo Rocha Santos ◽  
Sérgio Luiz Rodrigues Donato ◽  
Eugênio Ferreira Coelho ◽  
Alessandro De Magalhães Arantes ◽  
Maurício Antonio Coelho Filho

IRRIGAÇÃO LATERALMENTE ALTERNADA EM LIMA ÁCIDA 'TAHITI' NA REGIÃO NORTE DE MINAS GERAIS  MARCELO ROCHA DOS SANTOS1; SÉRGIO LUIZ RODRIGUES DONATO1; EUGÊNIO FERREIRA COELHO2; ALESSANDRO DE MAGALHÃES ARANTES1 E MAURÍCIO ANTÔNIO COELHO FILHO2 [1]Instituto Federal Baiano - Campus Guanambi, Distrito de Ceraíma, Caixa Postal 009, CEP 46.430-000, [email protected], [email protected], [email protected] Mandioca e Fruticultura, Rua Embrapa s/n, Caixa Postal 007, CEP 44380-000, Cruz das Almas, BA,  [email protected], [email protected]  1 RESUMO As condições hídricas do solo e clima alteram as condições hídricas e fisiológicas das plantas, que influenciam o desenvolvimento e a produção. Objetivou-se com este estudo avaliar características fisiológicas, estado nutricional e produtividade em lima ácida 'Tahiti' com irrigação lateralmente alternada (partial rootzone drying – PRD). Nove tratamentos foram constituídos por diferentes reposições de lâmina de água aplicada, conforme a demanda evapotranspirométrica da cultura (ETc) e diferentes frequências de alternância no período compreendido entre a floração e a colheita, em dois ciclos produtivos da cultura, dispostos em delineamento em blocos casualizados com quatro repetições. O sistema de irrigação utilizado foi por gotejamento com duas linhas laterais e doze gotejadores por planta. Dos nutrientes analisados ficaram abaixo da faixa de suficiência apenas o teor de B nas plantas sob PRD a 50% da ETc e frequência de alternância (FA) de 7 dias, e de B e Mn sob PRD a 50% da ETc e FA de 21 dias e PRD a 75% da ETc e FA de 14 dias. Fotossíntese, transpiração, condutância estomática, concentração interna de CO2, radiação fotossinteticamente ativa e temperatura foliar variaram com a época e o horário de mensuração. Eficiência de carboxilação, eficiência quântica da fotossíntese e eficiência instantânea de uso da água (EUA) são maximizadas nos meses e horas dos dias com menores temperaturas. A PRD altera a concentração interna de CO2, transpiração, razão de carboxilação, razão de concentração de CO2 e produtividade. Há manutenção da produtividade com irrigação alternada a cada sete dias e PRD de 50% da ETc em relação à irrigação plena. Palavras-chave: Citrus, manejo da irrigação, déficit hídrico.  SANTOS, M. R.; DONATO, S. L. R; COELHO, E. F.; ARANTES, A. M.; COELHO FILHO, M. A.PARTIAL ROOTZONE DRYING IN ACID LIME 'TAHITI' IN NORTHERN OF MINAS GERAIS BRAZIL  2 ABSTRACT The water conditions of the soil and climate change the water and physiological conditions of plants, influencing their development and production. This study aimed to evaluate  gas exchanges, leaf temperature, nutrient levels in leaves and yield in acid lime ‘Tahiti’ under partial rootzone drying (PRD). Nine treatments were used with different percentages of crop evapotranspiration and different frequencies of alternation, from the beginning of flowering to physiological mature fruits in two productive cycles, arranged in a randomized block design with four replicates. The irrigation system was dripped with two lateral lines per row of plants, with twelve emitters per plant. Only the concentration of B was insufficient in plants under PRD with 50% ETc and frequency of alternation (FA) 7 days, PRD with 50% ETc and FA 21 days PRD and 75% ETc and FA 14 days and Mn for PRD 50% of ETc FA and 21 days PRD and 75% of ETc and FA 14 days. Photosynthesis, transpiration, stomatal conductance, internal CO2 concentration, photosynthetically active radiation and leaf temperature in Tahiti lime parameters are influenced by the period and time of measurement. The carboxylation efficiency, quantum efficiency of photosynthesis and instantaneous water use efficiency is maximized in the months and hours of days with lower temperatures. The PRD causes changes in internal CO2 concentration, transpiration, rate of carboxylation, ratio of CO2 concentration and yield. The highest yield occurred for PRD with 50% of ETc alternating irrigation every seven days in relation to full irrigation. Keyword: Citrus, irrigation management, water deficit. 

2017 ◽  
Vol 35 (4) ◽  
pp. 571-575 ◽  
Author(s):  
Ewerton M Costa ◽  
Rômulo Magno O Freitas ◽  
Paolo Augustus F Silva ◽  
Elton Lucio Araujo

ABSTRACT The leafminer Liriomyza sativae (Diptera: Agromyzidae) is one of the main pests of melon crop (Cucumis melo) in the Brazilian semiarid. The aims of this study were to determine the damaged leaf area and assess the physiological responses of melon plants submitted to different levels of infestation per larvae of L. sativae. The study was carried out in a greenhouse, using plants of melon of the cultivar Iracema (yellow melon). The design utilized was completely randomized, with five treatments {control (no infestation in the leaves) and four infestation levels (1; 10; 20 and 30 larvae per leaf)} and 10 replications (melon plants). Initially we evaluated the physiological aspects: photosynthetic rate (µmol CO2/m2/s), stomatal conductance (mol H2O/m2/s) internal CO2 concentration (µmol CO2/m2) and leaf transpiration (mmol H2O/m2/s). After the measurements of physiological aspects, the evaluated leaves of each plant were cut close to the petiole and scanned individually with a measuring scale on the side, being the determination of the damaged leaf area performed with the aid of software for processing and analysis of images. The averages of damaged leaf area observed were of 1.2; 6.3; 19.6 and 40.8 cm2 for infestations of 1; 10; 20 and 30 larvae/leaf respectively. In relation to the physiological aspects, the rate of photosynthesis, stomatal conductance and transpiration significantly decreased with the increase of leafminer larvae per leaf. The internal CO2 concentration increased with the increase in the number of larvae per leaf.


2021 ◽  
Vol 39 (1) ◽  
pp. 65-71
Author(s):  
Italo MG Sampaio ◽  
Mário L Silva Júnior ◽  
Ricardo FPM Bittencourt ◽  
Gabriel AM dos Santos ◽  
Fiama KM Nunes ◽  
...  

ABSTRACT In the last years, jambu has become popular and greatly appreciated, due to its remarkable taste. Thus, hydroponically cultivated jambu is promising, since it achieves better yield and production quality. The aim of this study was to evaluate the effect of ionic concentration in nutrient solution on growth, productivity and gas exchange of jambu. The experimental design was completely randomized, with five treatments and four replicates. The treatments consisted of variations of ionic concentration using the nutrient solution proposed by Hoagland & Arnon (25, 50, 75, 100 and 125%). The length of the main stem, stem diameter, number of inflorescence, leaf area, fresh and dry biomass (shoot, root and inflorescence), photosynthesis, stomatal conductance, transpiration, internal CO2 concentration, Ci/Ca ratio and instant carboxylation efficiency were evaluated. Ionic concentrations significantly affected the studied variables, except the stem diameter, the internal CO2 concentration and the Ci/Ca ratio. The number of inflorescences and the leaf area grew linearly with maximum values (37.8 units plant-1 and 1650.8 cm2 plant-1, respectively) obtained in ionic concentration of 125%. Maximum responses were observed for shoot fresh and dry mass (63.9 and 6.9 g plant-1), root fresh and dry mass (16.7 and 2.0 g plant-1) inflorescence fresh and dry mass (11.0 and 1.8 g plant-1), respectively, at ionic concentration of 125%. Liquid photosynthesis, stomatal conductance, transpiration and instant carboxylation efficiency achieved maximum responses of 17.9 µmol CO2 m-2 s-1, 0.3 mol H2O m-2 s-1, 6.3 mmol m-2 s-1 and 0.06 with estimated concentrations of 84, 70, 80 and 83% of ionic strength, respectively. Thus, we concluded that the ionic concentration of 125% is indicated to obtain a greater biomass accumulation.


2014 ◽  
Vol 114 (2) ◽  
pp. 191-202 ◽  
Author(s):  
Jiří Šantrůček ◽  
Martina Vráblová ◽  
Marie Šimková ◽  
Marie Hronková ◽  
Martina Drtinová ◽  
...  

Irriga ◽  
2019 ◽  
Vol 24 (1) ◽  
pp. 69-85
Author(s):  
Marcelo Jose de Almeida ◽  
Cleiton Mateus Sousa ◽  
Mariella Camargo Rocha ◽  
Vinicius De Melo Benites ◽  
Jose Carlos Polidoro

REPOSIÇÃO DEFICITÁRIA DE ÁGUA E ADUBAÇÃO COM ORGANOMINERAL NO CRESCIMENTO E PRODUÇÃO DE TOMATEIRO INDUSTRIAL*     MARCELO JOSÉ DE ALMEIDA1; CLEITON MATEUS SOUSA2; MARIELLA CAMARGO ROCHA3; VINÍCIUS DE MELO BENITES4 E JOSÉ CARLOS POLIDORO5   * Parte da Dissertação do primeiro autor apresentada no Programa de Pós-Graduação em Irrigação no Cerrado 1 Mestre em Irrigação no Cerrado, Programa de Pós-Graduação em Irrigação no Cerrado, Instituto Federal de Educação, Ciência e Tecnologia Goiano – Campus Ceres (IF Goiano – Campus Ceres), Rodovia GO 154, km 3, Caixa Postal 51, Ceres/GO/Brasil, CEP: 763300-000. [email protected] 2  Doutor em Fitotecnia pela Universidade Federal Rural do Rio de Janeiro (UFRRJ), Programa de Pós-Graduação em Irrigação no Cerrado, Instituto Federal de Educação, Ciência e Tecnologia Goiano – Campus Ceres (IF Goiano – Campus Ceres), Rodovia GO 154, km 3, Caixa Postal 51, Ceres/GO/Brasil, CEP: 763300-000. [email protected] 3 Doutora em Fitotecnia pela Universidade Federal Rural do Rio de Janeiro (UFRRJ), Bolsista de Desenvolvimento Científico Regional do CNPq/FAPEG desenvolvido no Instituto Federal Goiano – Campus Ceres, Rodovia GO 154, km 3, Caixa Postal 51, Ceres/GO/Brasil, CEP: 763300-000. [email protected] 4 Doutor em Solos e Nutrição de Plantas pela Universidade Federal de Viçosa (UFV), Empresa Brasileira de Pesquisa Agropecuária, Centro Nacional de Pesquisa de Solos, Rua Jardim Botânico 1.024, Jardim Botânico, Rio de  Janeiro/RJ/Brasil, CEP: 22460-000. [email protected] 5 Doutor em Agronomia (Ciências do Solo) pela Universidade Federal Rural do Rio de Janeiro (UFRRJ), Empresa Brasileira de Pesquisa Agropecuária, Centro Nacional de Pesquisa de Solos, Rua Jardim Botânico 1.024, Jardim Botânico, Rio de  Janeiro/RJ/Brasil, CEP: 22460-000. [email protected]     1 RESUMO   O ajuste de estratégias de adubação aliadas ao manejo racional da irrigação para o uso sustentável da água na produção de tomateiro destinado ao processamento industrial pode contribuir com a cultura do tomate. Avaliou-se a influência da adubação organomineral e de lâminas de reposição deficitária aplicadas via gotejamento sobre o crescimento e a produtividade do tomateiro industrial. Conduziu-se um experimento em campo utilizando a cultivar de tomateiro industrial BRS Sena. Utilizou-se delineamento experimental de blocos completos casualizados, em esquema fatorial (4 x 2), sendo quatro lâminas de irrigação (55, 70, 85 e 100% da ETC) e fertilizantes (organomineral e mineral). A irrigação utilizada foi por gotejamento e realizada diariamente de acordo com a evapotranspiração de referência (ET0). Avaliou-se: altura de plantas, diâmetro do caule, número de ramos laterais, número de frutos por planta, produtividade, produção de frutos planta-1, percentual de frutos defeituosos, massa fresca frutos defeituosos, percentual de podridão mole nos frutos, percentual de lóculos abertos, percentual de escaldadura nos frutos, percentual de broca grande nos frutos, percentual de podridão apical nos frutos, diâmetro longitudinal médio, diâmetro equatorial médio, sólidos solúveis totais, massa fresca de frutos e massa seca de frutos. A aplicação de fertilizante organomineral proporcionou maior produção de frutos por planta e maior diâmetro de frutos. As características biométricas correlacionaram-se entre si. A produção de frutos por planta e a produtividade aumentam linearmente com o incremento da taxa de reposição da evapotranspiração diária do tomateiro.   Palavras-chave: Solanum lycopersicum L., organomineral, reposição de água deficitária, manejo da irrigação ALMEIDA, M. J.; SOUSA, C. M.; ROCHA, M. C.; BENITES, V. M.; POLIDORO, J.C. REPLENISHMENT OF WATER AND FERTILIZATION WITH ORGANO-MINERAL IN THE GROWTH AND PRODUCTION OF INDUSTRIAL TOMATO.     2 ABSTRACT   The adjustment of fertilization management strategies associated with the rational management of irrigation for the sustainable use of water in the production of tomato destined for industrial processing can contribute to tomato crops. The objective of this study was to evaluate the influence of organomineral fertilization and replacement of deficient depths applied by drip irrigation on the growth and yield of industrial tomato. An experiment was conducted in field using BRS Sena industrial tomato cultivar. A randomized complete experimental block design was used in a factorial scheme (4 x 2), with four irrigation depths (55, 70, 85 and 100% ETC) and fertilizers (organomineral and mineral). The irrigation used was by drip system and performed daily according to the reference evapotranspiration (ET0). The following items were assessed: plant height, stem diameter, number of lateral branches, number of fruits per plant, productivity, plant-1 fruit production, percentage of defective fruits, fresh mass defective fruits, percentage of soft rot in fruits, percentage of open lobes, percentage of fruit scald, percentage of large fruit borer, percentage of apical rot in fruits, average longitudinal diameter, average equatorial diameter, total soluble solids, fresh fruit mass and dry fruit mass. The application of organomineral fertilizer resulted in higher production and diameter of fruits per plant. Biometric characteristics correlated with each other. Fruit production per plant and productivity increased linearly with the increase in the replacement rate of daily evapotranspiration of tomato.   Keywords: Solanum lycopersicum L., organo-mineral, deficit water replacement, irrigation management


1976 ◽  
Vol 56 (3) ◽  
pp. 627-631 ◽  
Author(s):  
D. F. COLE ◽  
W. M. BUGBEE

Studies were conducted to determine if there was genetic variation in internal CO2 levels in sugar beet roots during storage and to determine the effects of resident bacteria, storage temperature, decay, and root weight on internal CO2 levels. Significant differences in internal CO2 levels were observed among different sugar beet lines. Internal CO2 levels of roots selected from American 3 Hybrid T were not correlated with the number of resident bacteria or weight of the roots after two storage periods. Root weight was negatively correlated with internal CO2 over all lines and the coefficient of determination was 2.2% (r2 × 100). Internal CO2 levels in roots with visible decay were significantly higher (5.21%) than CO2 levels (1.92%) in healthy roots. Higher storage temperature significantly increased internal CO2 levels in sugar beet roots. Our results show that there is genetic variation for internal CO2 levels in sugar beet roots.


1980 ◽  
Vol 60 (4) ◽  
pp. 1489-1491 ◽  
Author(s):  
D. F. COLE

A significant relationship (r = 0.85**) was found between internal CO2 concentration and respiration rate in sugar beet (Beta vulgaris L.) roots 60 days after harvest. Internal CO2 concentration differed among commercial cultivars. The data indicate that lines with low or high internal CO2 concentration can be selected.


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