Search results for "Prunus persica"

showing 5 items of 45 documents

Association of Marginal Leaf Scorch with Sodium Accumulation in Salt-stressed Peach

2000

The effect of specific ion toxicity during salt stress was tested in the present study. The experiment was repeated twice, in 1996 and 1998, with `Nemaguard' peach seedlings and rooted cuttings grown in hydroponics under two NaCl concentrations (50 and 30 mm). Foliage was separated in symptomatic and symptomless leaves and the amount of sodium (Na+) and chloride (C1–) was determined. Significantly higher Na+ content was found in symptomatic than in symptomless leaves in both experiments, whereas in only two of the six cases was Cl– content higher in symptomatic than in symptomless leaves. The Na+ threshold for leaf scorch was somewhere between 4 and 6 mg·g–1 dry weight. Results indicated th…

biologyPrunus persica salinity chloride ion toxicityChemistrySodiumRosaceaechemistry.chemical_elementLeaf scorchHorticulturemedicine.diseaseHydroponicsbiology.organism_classificationSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeCuttingHorticultureDry weightmedicinePlant nutritionFruit treeHortScience
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Transport and partitioning of 13C-photoassimilate between peach fruiting shoots

2008

We used a non-intrusive method (13CO2 feeding) and a manipulative approach to see whether fruiting shoots in peach trees are autonomous or may import carbon from neighboring shoots under forced conditions, and whether the degree of autonomy is influenced by the source-sink relationship on the shoot. In three experiments, leaf to fruit ratio (L:F) of selected fruiting shoots was moderately (2005 and 2006) or strongly (extreme enforcing 2006) altered to either encourage or discourage movement of carbon from 13C-labeled sending shoots (SFS) to receiving fruiting shoots (RFS), both located on the same main scaffold of V-shaped peach trees. At stage I and III of fruit growth, fruit and shoot tip…

branch autonomy carbon isotopes fruiting shoot leaf area Prunus persica sink strength source-sink relations
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LOW VIGOR PEACH × ALMOND ROOTSTOCKS FOR INTENSIVE PEACH PLANTINGS IN MEDITERRANEAN ENVIRONMENTS

2014

A three-year trial was carried out to evaluate the vegetative and productive performance of five peach rootstocks of varied vigor. The study was conducted in south-western Sicily using 45 V-trained trees of 'Tropic Snow' peach planted in 2005 and grafted on GF677 and four low-vigor rootstocks selected at the Department of Agricultural, Food and Environmental Sciences, University of Pisa, namely IS5/8 (Polluce), IS5/19 (Castore), IS5/23, IS5/29. Trunk circumference, winter and summer pruning weight, number and mass of fruit were recorded from 2010 to 2012. All IS selections reduced trunk cross-sectional area (TCSA) and pruning weight compared to GF677 with IS5/23 inducing the highest reducti…

crop load dwarfing fruit size Prunus persica tree vigor yieldSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeMediterranean climateHorticultureAgronomyHorticultureBiologyRootstockActa Horticulturae
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Carbohydrate Metabolism and Source-Sink Relationships in Peach

2011

A growing plant can be viewed as a collection of carbohydrate sinks competing with each other for the available photosynthate supplied by the exporting leaves. Differences in sink strength often result in changes in the ability of various organs to compete for the available food determining final tree growth. A series of experiments have been conducted in peach to study changes and regulation of carbohydrate metabolism in growing organs and get a better understanding of the link between carbohydrate metabolism, sink strength, carbon partitioning and overall tree growth. Along with sucrose, sorbitol represents the major photosynthetic product and the main form of translocated carbon in peach…

enzyme activity fruit growth Prunus persica shoot tip sink strength sorbitol sucrose
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FRUIT AND LEAF SENSING FOR THE CONTINUOUS MONITORING OF TREE WATER STATUS IN HIGH-DENSITY ORCHARD SYSTEMS

water relations water status.olivoautomazioneecophysiologynectarineecofisiologiaplantprobefruttinettarineirrigationoliveAutomationsensorsensoriOlea europaeasondePrunus persicafoglieAcquahorticulturearboricolturastato idrico.irrigazioneSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboreerelazioni idriche
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