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1.
Rev. biol. trop ; 59(3): 1081-1088, Sept. 2011. ilus, tab
Article in English | LILACS | ID: lil-638142

ABSTRACT

The African oil palm (Elaeis guineensis) is the most effective oil producer in tons per hectare. Nevertheless, its increasing cultivation in Latin America is harmed by the “lethal yellowing”. Genetic resistance to this anomaly can be found in the germplasm of American oil palm or caiaué (E. oleifera), a native species from the Amazon rainforest. However, the procedures adopted to induce seeds of E. guineensis to germination frequently result mild for interespecific hybrids. Embryo in vitro cultivation can be a viable option. This work was aimed initially to test liquid MS medium supplemented with different glucose or sucrose concentrations for the in vitro cultivation of zygotic embryos from E. guineensis x E. oleifera controlled pollinations. Additionally we investigated different compost mixtures to acclimatize the regenerated hybrid plantlets. Concentrations of 10, 20 and 30g/L of both sugars were tested on flasks containing five mature zygotic embryos, with 15 repetitions per treatment in a total of 450 explants. The number of embryos displaying shoots and radicles at least 2mm in length per experimental unit was evaluated during phase one of in vitro cultivation. Plantlets displaying shoots and radicles were transferred to phase two of in vitro cultivation and subsequently to acclimatization, under 70% shading with manual water supply. The experiments of acclimatization were conducted with 130 plantlets randomly distributed in pure horticultural compost, 3:1 or 1:1 compost:sand mixtures and each plantlet was defined as an experimental unit. Data were submitted to ANOVA, t test and analyzes of correlation (p≤0.05). Highest emergence rates were 97% for shoots and 73% for radicles, observed in MS medium supplemented with 20g/L (110mM) of glucose. This sugar in concentrations of 20 or 30g/L provided balanced shoot/root development, and this was considered one of the reasons for the higher frequency of plantlet establishment. The survival percentage was 55% after the first 43 days of acclimatization and by the fourth month, 66 plants developed simultaneously longer shoot and root systems in pure horticultural compost. in conclusion, radicle development was an impairment to plantlet establishment and was overcame under media with glucose above 110mM. Acclimatization could benefit from an extended period of in vitro development. Rev. Biol. Trop. 59 (3): 1081-1088. Epub 2011 September 01.


Elaeis guineensis es el productor de aceite más eficaz en toneladas por hectárea, su cultivo, cada vez mayor en América Latina, se ha visto perjudicado por el “amarilleamiento letal”. La resistencia genética a esta anomalía se puede encontrar en el germoplasma de la palma aceitera americana o caiaué (E. oleifera), una especie nativa de la selva amazónica. Sin embargo, los procedimientos adoptados para inducir la germinación de las semillas de E. guineensis frecuentemente produce resultados modestos para híbridos interespecíficos. El cultivo de embriones in vitro puede ser una opción viable. En este trabajo se probó el medio líquido MS complementado con diferentes concentraciones de glucosa o sacarosa en el cultivo in vitro de embriones cigóticos de E. guineensis x E. oleifera originados de polinización controlada. Además se investigaron diferentes mezclas de compost para aclimatar los híbridos regenerados. Las concentraciones de 10, 20 y 30 g/L de ambos azúcares se probaron en frascos que contenían cinco embriones cigóticos maduros, con 15 repeticiones por tratamiento y un total de 450 explantes. El número de embriones que muestran brotes y radículas de al menos 2mm de longitud por unidad experimental se evaluó durante la primera fase de cultivo in vitro. Las plántulas que mostraron brotes y radículas fueron trasladadas a la segunda fase de cultivo in vitro y, posteriormente, se aclimataron, por debajo de 70% de sombra con el suministro manual de agua. Los experimentos de aclimatación se llevaron a cabo con 130 plántulas distribuidas al azar en el compost hortícola puro, compost 3:1 o 1:1: mezclas de arena y cada plántula se definió como una unidad experimental. Los datos fueron sometidos a un análisis de varianza, prueba t y análisis de correlación (p≤0.05). Las tasas más altas de emergencia fueron 97% y 73% para brotes y radículas respectivamente, en el medio MS complementado con 20g/L (110mM) de glucosa. Este azúcar en concentraciones de 20 o 30g/L permitió un desarrollo balanceado de brotes/desarrollo de raíces, que fue considerado como una de las razones de la alta frecuencia de establecimiento de las plántulas. El porcentaje de supervivencia fue de un 55% después de los primeros 43 días de aclimatación y por el cuarto mes, 66 plantas desarrollaron simultáneamente hojas largas y un sistema radical en el compost hortícola puro. En conclusión, el desarrollo radicular fue un impedimento para el establecimiento de plántulas y se superó en el medio con glucosa por encima de 110mM. La aclimatación podría beneficiarse con un largo período de desarrollo in vitro.


Subject(s)
Arecaceae/embryology , Germination/physiology , Hybridization, Genetic/physiology , Acclimatization , Arecaceae/classification , Hybridization, Genetic/genetics , Species Specificity , Seeds/embryology
2.
Acta amaz ; 40(1): 165-170, mar. 2010. graf, tab
Article in Portuguese | LILACS, VETINDEX | ID: lil-546971

ABSTRACT

O presente trabalho teve por objetivo avaliar a emergência de plântulas de Astrocaryum aculeatum a partir de sementes submetidas a diferentes temperaturas e períodos de embebição. O delineamento experimental foi inteiramente casualizado, em esquema fatorial 4 (temperaturas de embebição em água: 25ºC, 30ºC, 35ºC e 40ºC) X 3 (períodos de embebição: 2, 4 e 6 dias), com testemunha (sem embebição) e com quatro repetições. As semeaduras foram realizadas em viveiro. A emergência e o índice de velocidade de emergência só diferiram entre a testemunha e os tratamentos aplicados, independentes do período e da temperatura, com resultados favoráveis para a embebição das sementes. O tempo médio de emergência apresentou efeito de interação significativo, destacando-se a utilização da temperatura de embebição de 40ºC, associada ao período de 4 dias, que proporcionou um menor tempo médio (163 dias). O tempo inicial de emergência foi menor na temperatura de 35ºC (80 dias), enquanto o tempo final de emergência não apresentou diferença entre as médias. Sementes embebidas por 2 dias apresentaram 50 por cento de sementes mortas ao final do experimento, enquanto as embebidas por 4 dias, apenas 38 por cento. A emergência de plântulas de A. aculeatum foi favorecida pela embebição, independente da temperatura e do período utilizados.


This study evaluated the seedling emergence of Astrocaryum aculetum seeds soaked in water for different periods at different temperatures. The experimental design was entirely randomized, in factorial 4 (temperatures of soaking in water: 25ºC, 30ºC, 35ºC e 40ºC) X 3 (period of soaking: 2, 4 and 6 days), additional treatment (control, without soaking), with four replications. Before (control) and after the soaking periods in different temperatures, the seeds were planted in nursery. The emergence and its velocity differed only in the comparison of the control with the applied treatments, with favorable results of all soak treatments, independent of temperature and duration. The mean time of emergence presented a significant interaction effect, with the four day 40ºC soaking temperature period, presenting a lower mean time (163 days). The initial emergence time was lower in 35ºC temperature (80 days), while the final time didn't show differences among means. Seeds soaked for two days had 50 percent dead seeds, while seeds soaked for four days had just 38 percent. Seedling emergence was favored by soaking, independent of temperature and duration.


Subject(s)
Germination/physiology , Arecaceae/embryology , Seedlings/physiology , Plant Dormancy
3.
Electron. j. biotechnol ; 8(1): 24-34, Apr. 2005. ilus, tab, graf
Article in English | LILACS | ID: lil-448779

ABSTRACT

Oil palm (Elaeis guineensis Jacq.) is the highest yielding oil-bearing crop. However, being a perennial crop, genetic improvement of oil palm is extremely slow. Indeed, compared to other annual oil crops such as soybean and rapeseed, genetic manipulations remained less important. Therefore, to remain competitive, oil palm growers and breeders need new and novel approaches. In this report, the potential of immature embryos (IE) as a useful tool for oil palm genetic transformation studies was evaluated. It was evident that IEs were amenable to both direct and Agrobacterium-mediated gene transfer. Due to the abundant supply of IE, optimization of biolistic and Agrobacterium-mediated gene transfer into IEs were easily carried out. Transient transformation frequencies were comparable to other plant systems reported, with as high as 97.4 percent recorded for biolistic and 64.4 percent for Agrobacterium-mediated gene transfer. Like most moncots, oil palm tissues were less sensitive to kanamycin, geneticin and chloramphenicol. Instead, both hygromycin and phosphinotrycin were toxic 20 mg/l, making both suitable candidates for selecting putative transformants. IEs were also more responsive to in vitro manipulations as compared to other explants such as leaf and root tissues. Rapid in vitro response to callusing and embryogenesis or rapid and highly efficient direct germination resulted in a shorter culture period. This would minimize the production of abnormal clonal palms, which has been associated to chromosomal aberration due to prolonged time in culture. In addition, IEs also allows rapid and direct introduction of elite genes into breeding programs and in biclonal seed production.


Subject(s)
Arecaceae/growth & development , Arecaceae/embryology , Arecaceae/genetics , Seeds/genetics , Arecaceae/microbiology , Culture Media , Embryonic Development , Germination , Palm Oil , Plants, Genetically Modified , Seeds/growth & development , Seeds/embryology , Seeds/microbiology , Transformation, Genetic
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