951 resultados para citrus trees


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O objetivo deste trabalho foi de avaliar o comportamento de sete cultivares de laranjeiras- doces: 'Baia 101', 'Baianinha IAC 79', 'Monte Parnaso', 'Pêra D6', 'Natal 112', 'Valência 27' e 'Aquiri', sobre diferentes porta-enxertos: limão 'Cravo', tangerinas 'Cleópatra' e 'Sunki' e citrange 'Carrizo', nas condições edafoclimáticas de Rio Branco, Acre. O delineamento experimental foi em parcelas subdivididas, com as cultivares nas parcelas, os porta-enxertos nas subparcelas e os quatro anos de avaliação como repetições. As laranjeiras 'Pêra D6', 'Natal 112' e 'Valência 27' apresentaram tendências de maior produção quando enxertadas sobre o limão 'Cravo', e a laranja 'Aquiri' quando enxertada sobre citrange 'Carrizo'. Em relação aos demais porta-enxertos, o limão 'Cravo' mostrou tendências de induzir maior produção/volume de copa e peso médio do fruto, e menor teor de sólidos solúveis totais e acidez total. As laranjas do grupo Baia ('Baia 101', 'Baianinha IAC 79' e 'Monte Parnaso') produziram frutos com baixa percentagem de suco; não são recomendadas para plantio em Rio Branco, AC. Com base nos resultados obtidos, recomendam-se os porta-enxertos citrange 'Carrizo', tangerina 'Cleópatra' e limão 'Cravo' para a laranja 'Aquiri', e o porta-enxerto limão 'Cravo' para as laranjas 'Pêra D6', 'Natal 112' e 'Valência 27'.

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Pesquisou-se o desenvolvimento in vitro de embriões de um híbrido do cruzamento Citrus limonia Osb. chi Poncirus trifoliata (L.) Raf. em meio MS, acrescido de GA3 (0,0, 0,01, 0,1 e 1,0 mg/L) e carvão ativado (0,0, 0,5, 1,0 e 2,0 g/L), em todas as combinações possíveis. Após a excisão das sementes os embriões obtidos, independentemente dos estádios, foram inoculados nos respectivos meios de cultura. Cada tratamento permaneceu por 48 horas no escuro e 40 dias em sala de crescimento à temperatura de 27 ± 1ºC, com 16 horas de luminosidade. Após esse período, as plântulas foram avaliadas, considerando-se o porcentual de sobrevivência e comprimento da haste caulinar e do sistema radicular. Verificou-se que a concentação de 0,1 mg/L de GA3 interagiu antagonicamente em meio de cultivo contendo até 2,0 g/L de carvão ativado. O GA3 a 0,01 mg/L associado a concentrações de carvão ativado a partir de 0,5 g/L até 2,0 g/L, maximizou o porcentual de sobrevivência dos em- briões. Os embriões apresentaram o maior comprimento de raiz (4,5 cm) e da haste caulinar (2,1 cm) com carvão ativado na concentração de 0,5 g/L e 2,0 g/L, respectivamente.

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A procedure is described to regenerate plants from protoplasts of Brazilian citrus cultivars, after isolation, fusion and culture. Protoplasts were isolated from embryogenic cell suspension cultures and from leaf mesophyll of seedlings germinated in vitro. The enzyme solution for protoplast isolation was composed of mannitol (0.7 M), CaCl2 (24.5 mM), NaH2PO4 (0.92 mM), MES (6.15 mM), cellulase (Onozuka RS - Yakult, 1%), macerase (Onozuka R10 - Yakult, 1%) and pectolyase Y-23 (Seishin, 0.2%). Protoplast culture in liquid medium after chemical fusion lead to the formation of callus colonies further adapted to solid medium. Somatic embryo formation occurred spontaneously after two subcultures, on modified MT medium supplemented with 500 mg/L of malt extract. Well defined embryos were germinated in modified MT medium with addition of GA3 (2.0 muM) and malt extract (500 mg/L). Plant regeneration was also achieved by adventitious shoots obtained through direct organogenesis of not well defined embryos in modified MT medium with addition of malt extract (500 mg/L), BAP (1.32 muM), NAA (1.07 muM) and coconut water (10 mL/L). Plantlets were transferred to root medium. Rooted plants were transferred to a greenhouse for further adaptation and development.

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Com o objetivo de estudar a relação entre o grau de poliembrionia e a freqüência de híbridos em citros, foram realizados cruzamentos controlados utilizando como parentais femininos as tangerinas 'Clementina' e 'Sunki' e os limões 'Cravo' e 'Volkameriano', que apresentam graus de poliembrionia nulo, baixo, baixo a moderado e moderado, respectivamente. Como parentais masculinos empregaram-se Poncirus trifoliata e híbridos desta, tendo em vista a característica morfológica dominante folhas trilobadas. Observaram-se nas tangerinas 'Clementina' e 'Sunki' e nos limões 'Cravo' e 'Volkameriano' as seguintes freqüências de híbridos: 57,4%, 53,6%, 18,6% e 14,2%, respectivamente. Foi verificada uma associação negativa entre o grau de poliembrionia e a freqüência de híbridos.

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A digitized image method was compared with a standard washing technique for measuring citrus roots in the field. Video pictures of roots were taken in a soil profile. The profile area analyzed was defined by iron rings, which were also used to remove the roots to determine their dry weight. The roots presented in the pictures were quantified using SIARCS software developed by Embrapa. The root length and area determined by digital images provided a good estimate of root quantity present in the profile.

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This publication is designed to help identify the most common trees found in Iowa. It is based on vegetative characteristics including leaves, fruit, and bark. It is neither complete nor without possible oversights. Separate species are grouped by similar characteristics, mainly based on type and arrangement of leaves. These groups are; awl- or scale like needles; single needles, flattened with rounded tips; single needles, square in cross section, with pointed tips; and needles in bundles or fascicles of two or more. Remember, vegetative characteristics are quite variable; use more than one specimen for comparison.

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This publication is designed to help identify the most common hardwood or deciduous trees found in Iowa. It is based on vegetative characteristics including leaves, fruit, and bark. It is neither complete nor without possible oversights. Separate species are grouped by similar characteristics, mainly based on type and arrangement of leaves. Remember, vegetative characteristics are quite variable; use more than one specimen for comparison.

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If you have ever flown in an airplane over Iowa, you would see that our woodlands are scattered along the rivers and streams and areas too steep to farm. You would also see a green carpet of trees within out cities and towns. Did you know the 90% of the over 2.7 million acres of forest in Iowa is owned by over 138,000 different private owners? Or that 30% of the land cover in a typical Iowa community if covered by trees? Trees are vital for the protection of our drinking water supply, critical for wildlife habitat, and help sustain employment of over 7,000 Iowans in the wood products industry. This booklet "20 Native trees to Plant" will help you gain a greater knowledge about Iowa's trees and forests. Learn about and enjoy Iowa's trees. Consider ways that you can improve our environment by planting and caring for Iowa's trees and forests.

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It's a fact. Landowners like the five couples featured in the publication have helped replant Iowa. In fact, Iowa's forests and dwindled from an original 7 million acres to only 1.4 million acres in 1974. The state now has 2.8 million acres, surpassing the acreage of woodlands more than a century ago.