557 resultados para Prunus armeniaca


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An experiment was conducted in 2013 and 2014 with three newly introduced cultivars of apricot (Prunus armeniaca L.), namely “Antonio Errani”, “Tirynthos” and “Ninfa” to study their performance and adaptability under Egyptian conditions. Results indicated that calculating the chilling hours temperature at or below 15°C was more suitable than temperatures at or below 7.2°C and 10°C. The cultivar with a low chilling requirement started with the opening of vegetative and flower buds earlier when compared to other cultivars. Furthermore, the cultivar Ninfa required less heat units as compared to the other two cultivars. Thus, the accumulated growing degree-days (GDDs) from the time of the flower bud break l until fruit maturity was low in early matured Ninfa cultivar. However, Antonio Errani and Tirynthos cultivars were late in the date of fruit ripening. Meanwhile, there was no significant difference in the opening percentage of vegetative and flower buds, trunk circumference, fruit drop, fruit number and yield weight among cultivars during the two seasons. Conversely, the leaf drop of Antonio Errani cultivar was earlier while Ninfa cultivar started it’s leaf drop later in the two seasons. Tirynthos gave the highest fruit weight, fruit size and fruit surface lightness. Meanwhile, the Antonio Errani cultivar was the highest in fruit firmness and total soluble solids. The appearance and behavior of cultivars under the study varied from one season to another with shoot length, leaf area, percentage of fruit set and acidity. It can be recommended from the present study that, Antonio Errani, Tirynthos and Ninfa cultivars are well adapted under Egyptian conditions. Further, fruits from the cultivars mature early and late in the season and can fulfill the demands of the market.

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El cultivar de damascos Modesto es de introducción relativamente reciente en Mendoza (Argentina). El objetivo del trabajo fue evaluar las siguientes características de interés agronómico: la época de floración y la calidad de los frutos en cosecha y en postcosecha. El estudio se realizó en un monte comercial durante 2007 y 2008. Se registraron tres estados fenológicos: "D" (corola visible), "F" (flor abierta) y "H" (fruto cuajado). Se estableció el inicio de la floración, la plena floración y el fin de la misma. En los frutos las evaluaciones y mediciones se realizaron en el momento de la recolección y después del período de maduración de la fruta conservada en cámara frigorífica. Se determinó: color de fondo, peso, diámetro, firmeza de pulpa, contenido de sólidos solubles, pH, acidez titulable, presencia de hongos y desórdenes fisiológicos. Los resultados muestran que el cultivar Modesto florece en una época intermedia en la zona E de la provincia de Mendoza. La fecha de plena floración en los dos años del estudio fue el 8 de setiembre. En los estados de madurez evaluados los frutos reúnen los atributos de calidad demandados por el consumidor: alto CSS, color anaranjado en la madurez, buena firmeza de pulpa; sin embargo, el rápido, descenso de la firmeza durante la maduración en poscosecha obliga a una comercialización acelerada. Después del almacenamiento en cámara frigorífica durante treinta días y un período de maduración de dos días, la futa presentó el desorden harinosidad con una incidencia superior al 60%; esto señala que el cv. Modesto no puede almacenarse por un período tan prolongado.

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Mediante ensayos de campo se determinó la auto-compatibilidad o auto-incompatibilidad sexual de 12 variedades de Prunus communis y 18 de Prunus Armeniaca pertenecientes a la colección de frutales existentes en la Estación Experimental Mendoza, Sub-Estación de Junín. Todos los almendros estudiados se comportaron como auto-incompatibles y los damascos como auto-compatibles, excepto la variedad Damasco.

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A reverse transcriptase-polymerase chain reaction experiment was done to synthesize a homologous polyphenol oxidase (PPO) probe from apricot (Prunus armeniaca var Bergeron) fruit. This probe was further used to isolate a full-length PPO cDNA, PA-PPO (accession no. AF020786), from an immature-green fruit cDNA library. PA-PPO is 2070 bp long and contains a single open reading frame encoding a PPO precursor peptide of 597 amino acids with a calculated molecular mass of 67.1 kD and an isoelectric point of 6.84. The mature protein has a predicted molecular mass of 56.2 kD and an isoelectric point of 5.84. PA-PPO belongs to a multigene family. The gene is highly expressed in young, immature-green fruit and is turned off early in the ripening process. The ratio of PPO protein to total proteins per fruit apparently remains stable regardless of the stage of development, whereas PPO specific activity peaks at the breaker stage. These results suggest that, in addition to a transcriptional control of PPO expression, other regulation factors such as translational and posttranslational controls also occur.

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Background Flavonoids such as anthocyanins, flavonols and proanthocyanidins, play a central role in fruit colour, flavour and health attributes. In peach and nectarine (Prunus persica) these compounds vary during fruit growth and ripening. Flavonoids are produced by a well studied pathway which is transcriptionally regulated by members of the MYB and bHLH transcription factor families. We have isolated nectarine flavonoid regulating genes and examined their expression patterns, which suggests a critical role in the regulation of flavonoid biosynthesis. Results In nectarine, expression of the genes encoding enzymes of the flavonoid pathway correlated with the concentration of proanthocyanidins, which strongly increases at mid-development. In contrast, the only gene which showed a similar pattern to anthocyanin concentration was UDP-glucose-flavonoid-3-O-glucosyltransferase (UFGT), which was high at the beginning and end of fruit growth, remaining low during the other developmental stages. Expression of flavonol synthase (FLS1) correlated with flavonol levels, both temporally and in a tissue specific manner. The pattern of UFGT gene expression may be explained by the involvement of different transcription factors, which up-regulate flavonoid biosynthesis (MYB10, MYB123, and bHLH3), or repress (MYB111 and MYB16) the transcription of the biosynthetic genes. The expression of a potential proanthocyanidin-regulating transcription factor, MYBPA1, corresponded with proanthocyanidin levels. Functional assays of these transcription factors were used to test the specificity for flavonoid regulation. Conclusions MYB10 positively regulates the promoters of UFGT and dihydroflavonol 4-reductase (DFR) but not leucoanthocyanidin reductase (LAR). In contrast, MYBPA1 trans-activates the promoters of DFR and LAR, but not UFGT. This suggests exclusive roles of anthocyanin regulation by MYB10 and proanthocyanidin regulation by MYBPA1. Further, these transcription factors appeared to be responsive to both developmental and environmental stimuli.

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Diachasmimorpha kraussii is a larval parasitoid of dacine fruit flies. Host utilisation behaviour, including field foraging behaviour, is poorly known in this species. The diurnal foraging behaviour of D. kraussii and one of its common hosts, Bactrocera tryoni, in a nectarine orchard was concurrently recorded. Observations of mating, resting, feeding and oviposition were taken two-hourly on 42 trees, commencing at 07:00 h and terminating at 17:30 h, for 17 days. Resting and oviposition were common events within the orchard for both species, while mating behaviours were not recorded in the orchard for either species. Feeding was not observed for D. kraussii and was rare for B. tryoni. At the level of the individual tree there was a very weak, but significant correlation between parasitoid and fly abundance over a day, but when broken down to the individual observation periods the correlations were absent, or were weakly significant in an inconsistent manner (i.e. sometimes positively correlated, sometimes negatively correlated). At the orchard level, abundance of the parasitoid was not correlated with adult fly abundance. Results suggest that D. kraussii forage independently to adult B. tryoni, a result consistent with a prediction that their foraging is largely driven by larval or plant damage cues.

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Previous reviews of plum phytochemical content and health benefits have concentrated on the European plum, Prunus domestica L.. However, the potential bioactivity of red and dark red fleshed Japanese plum, Prunus salicina Lindl., so called blood plums, appears to warrant a significant increase in exposure as indicated in a recent review of the whole Prunus genus. Furthermore, Japanese plums are the predominate plum produced on an international basis. In this review the nutrient and phytochemical content, breeding programs, horticultural practice, post harvest treatment and processing as well as bioactivity (emphasizing in vivo studies) of Japanese plum are considered with a focus on the anthocyanin content that distinguishes the blood plums.

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Durante la ontogenia de las cerezas dulces (Prunus avium L.) se producen cambios que conducen a la maduración y al ablandamiento del fruto, asociados a una modificación en la composición de la pared celular, ocurriendo de forma diferenciada en cerezas firmes y blandas. Esta característica también incide en la resistencia de estos frutos a los daños mecánicos, disminuyendo o aumentando la susceptibilidad al daño. El objetivo del trabajo fue analizar los cambios en la pared celular durante la ontogenia y en respuesta al daño por impacto en cerezas con firmeza contrastante. Se determinaron la solubilización, despolimerización y composición de pectinas y glicanos entrecruzantes de la pared celular, en cuatro estadíos durante la ontogenia de cerezas firmes cv Sweetheart y blandas cv Newstar. Estas determinaciones también se realizaron a madurez comercial, en frutos expuestos a la simulación del daño por impacto, al caer libremente desde una altura de 70 cm, y se tomaron muestras 7 y 10 días después de producido el daño. Durante la ontogenia de los frutos blandos, se produjo la pérdida de ácidos urónicos (solubilización), despolimerización de glicanos entrecruzantes y pérdida de azúcares neutros, mientras que en los frutos firmes se observaron la despolimerización de glicanos entrecruzantes y la pérdida de azúcares neutros. El efecto del daño mecánico produjo en los frutos blandos una disminución de los ácidos urónicos y la pérdida de azúcares neutros (arabinosa, galactosa y xilosa), como así también la despolimerización de pectinas y de glicanos entrecruzantes. En conclusión, en frutos blandos la solubilización de pectinas podría ser el mayor causante del ablandamiento y más aún cuando se produce la despolimerización de pectinas y glicanos entrecruzantes después de producido el daño mecánico. Los frutos firmes presentaron una estructura péctica más conservada durante ontogenia y daño mecánico, sin variaciones en el contenido de cadenas laterales