Biblioteca do Café

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    Área foliar remanescente, boro, zinco e sacarose na produção de mudas de Coffea arabica L. por miniestaquia
    (Universidade Federal de Lavras, 2022-11-30) Honda Filho, Cássio Pereira; Guimarães, Rubens José
    A mini estaquia pode ser considerada uma especialização da estaquia convencional. Basicamente consiste na utilização de brotações de plantas propagadas pelo processo de estaquia, ou mudas produzidas por sementes. Além disso, pode representar uma alternativa potencialmente viável para espécies lenhosas cujo processo de estaquia convencional resulta em percentual de enraizamento variável e baixa qualidade na formação de raízes, como é o caso da espécie Coffea arabica L. Objetivou-se avaliar a influência de boro, zinco, sacarose e a área foliar remanescente no enraizamento de miniestacas de Coffea arabica L. Foram então realizados dois experimentos em delineamento inteiramente ao acaso, dispostos em fatorial triplo 2x3x3, sendo: presença ou não de boro (experimento 1) ou zinco (experimento 2) na solução de enraizamento com AIB; sacarose a 0, 10 e 20% de concentração aplicada a cada 20 dias; níveis de área foliar remanescente nas miniestacas (25, 50 e 75%). Em ambos os experimentos se notou que a presença de B e Zn foram eficientes para um bom crescimento radicular; o aumento na concentração de sacarose na calda de pulverização foi benéfica para o crescimento radicular em ambos os experimentos; tratamentos com 75% de área foliar remanescente foram superiores aos demais tratamentos. Conclui-se que o atual protocolo de enraizamento de miniestacas de café arábica deve ser ampliado com: adição de B ou Zn na solução com AIB; utilização de doses de sacarose exógena a 20% de concentração em um intervalo de 20 dias; opção da manutenção de um maior percentual da área foliar remanescente para um enraizamento de miniestacas mais eficiente e homogêneo.
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    Manganese and fluorine suppress bacterial blight on coffee seedlings grown in a nutrient solution
    (Editora UFLA, 2021) Velloso, Jeanny Alice; Pozza, Edson Ampelio; Pozza, Adelia Aziz Alexandre; Silva, Humberson Rocha; Pérez, Cristian David Plaza; Souza, José Otávio Gusmão de
    The use of manganese (Mn) and fluorine (F) in the management of bacterial blight were evaluated in coffee seedlings grown in a nutrient solution. The experiment was carried out with the cultivar Catuaí Vermelho IAC 99. The treatments consisted of the combination of five doses of Mn with five of F, applied via leaf, using Mn sulfate and sodium fluoride, in a 5x5 factorial scheme. The plants were inoculated with bacterial suspension seven days after foliar application of F and Mn doses. The incidence and severity assessments were performed at an interval of 24 hours for 10 days. Photosynthetic activity was assessed using the infrared gas analyzer. Stomatal conductance, photosynthesis, transpiration, PAR radiation and internal CO2 were ana lyzed. The chlorophyll content was calculated indirectly. The leaf analysis was performed by digestion in HNO3 to determine the levels of Mn. Variables such as Area Under Incidence Disease Progress (AUIDP), Area Under Severity Disease Progress (AUSDP), chlorophyll a, b, and total concentrations and photosynthesis were submitted to the Shapiro-Wilk test. The treatment means were subjected to linear regression analysis. Data were analyzed using software R. There was a significant interaction (P <0.05) between the concentrations of Mn and F for the AUIDP and (AUSDP). Doses between 0.7 and 1.4 g L-1 of Mn combined with doses of 0.10 to 0.12 g L-1 of F were more effective in suppressing the bacterial blight, after analysis for both variables. The increase in Mn concentrations in leaves reduced liquid photosynthesis. The interaction between Mn and F suppressed the bacterial blight intensity of the coffee plants in nutrient solution.
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    Polyol-ester impact on boron foliar absorption and remobilization in cotton and coffee trees
    (Sociedade Brasileira de Ciência do Solo, 2020) Rosolem, Ciro Antonio; Almeida, Danilo Silva; Cruz, Caio Vilela
    Foliar fertilization can be recommended to treat boron (B) deficiency in coffee and cotton. Considering that B foliar fertilizers with polyol-boron complexes can affect B uptake and mobility differently within the plant, and coffee and cotton have different cuticles and stomata density, a differential response would be expected. We aimed to study the foliar application of boric acid combined with sorbitol on B uptake and translocation in cotton and coffee. Green-house grown plants received B as boric acid and a sorbitol-monoethanolamine complex and were sampled up to 96 h after application. Boron absorption was fast, reaching 60 and 80 % in cotton and coffee 96 h after application, respectively. Uptake rates and total B absorption were similar for the fertilizers. The proportion of B taken up by coffee is greater than by cotton likely because of the greater stomata density in coffee and less likely due to the higher amount of wax in cotton cuticle. Boron remobilization is higher in coffee as compared with cotton. Sorbitol seems to increase B transport in the transpiratory stream of cotton, but impairs remobilization in the phloem since B translocation to roots is decreased in both cotton and coffee.
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    Characterization and use efficiency of sparingly soluble fertilizer of boron and zinc for foliar application in coffee plants
    (Instituto Agronômico (IAC), 2021) Macedo, Luiza Oliveira; Mattos-Jr, Dirceu; Jacobassi, Rodrigo Candido; Petená, Guilherme; Quaggio, José Antonio; Boaretto, Rodrigo Marcelli
    Deficiencies of boron and zinc occur in coffee plantations despite the many fertilizer sources offered by the industry for the agriculture. Sparingly soluble fertilizers (SSF) have been used in several countries for many years. However, their effectiveness when Applied to leaves is highly contested, and information about their use efficiency is still lacking. Experiments were set up to characterize the SSF of B and Zn according to particle size of fertilizers, and the spreading and retention of the particles in the leaf, comparing SSF (calcium borate, Zn oxide, and Zn borate) with soluble sources (boric acid and Zn sulfate) in four doses (mg.L-1): Experiment I (B 0, 130, 260, and 520), Experiment II (Zn 0, 200, 600, and 1,800), and experiment III (B 0, 43, 129, and 387, and Zn 0, 200, 600, and 1,800), to supply B and Zn for coffee plants. Microparticles of the SSF were found adhered to coffee leaves, and the Zn oxide was the one with the smallest particle size. SSFs were effective at increasing the Zn and B leaf concentrations in coffee. Dry matter of coffee increased 15% with applications of 270 mg.L-1 of B as calcium borate and 384 mg.L-1 of B as boric acid. Foliar application of Zn oxide at the dose of 1,800 mg.L-1 of Zn increased the leaf areas of the plants. High doses of Zn sulfate caused toxicity to coffee plants due to high saline concentrations. The microparticles found retained on the surface of the coffee leaves increased leaf concentration of B and Zn, which explained variations in the dry matter measurements and show the potential of the SSF for the development of fertilizers to improve the availability of micronutrients to coffee.