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2014
Until now, the application of genetic transformation techniques in peach has been limited by the difficulties in developing efficient regeneration and transformation protocols. Here we describe an efficient regeneration protocol for the commercial micropropagation of GF677 rootstock (Prunus persica × Prunus amygdalus).
Sabbadini S. +4 more
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Until now, the application of genetic transformation techniques in peach has been limited by the difficulties in developing efficient regeneration and transformation protocols. Here we describe an efficient regeneration protocol for the commercial micropropagation of GF677 rootstock (Prunus persica × Prunus amygdalus).
Sabbadini S. +4 more
openaire +2 more sources
2021
Prunus persica (L.) Batsch Pfirsichbaum Art ISFS: 330000 Checklist: 1036650 Rosaceae Prunus Prunus persica (L.) Batsch Zusammenfassung Artbeschreibung (nach Lauber & al. 2018): Bis 8 m hoher Baum oder Strauch. Junge Triebe kahl. Blätter lanzettlich, allmählich zugespitzt, beidseits dunkelgrün, kahl, spitz und meist doppelt gezähnt, in der Knospe ...
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Prunus persica (L.) Batsch Pfirsichbaum Art ISFS: 330000 Checklist: 1036650 Rosaceae Prunus Prunus persica (L.) Batsch Zusammenfassung Artbeschreibung (nach Lauber & al. 2018): Bis 8 m hoher Baum oder Strauch. Junge Triebe kahl. Blätter lanzettlich, allmählich zugespitzt, beidseits dunkelgrün, kahl, spitz und meist doppelt gezähnt, in der Knospe ...
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2018
Prunus persica (L.) Batsch Artbeschreibung: Bis 8 m hoher Baum oder Strauch. Junge Triebe kahl. Blätter lanzettlich, allmählich zugespitzt, beidseits dunkelgrün, kahl, spitz und meist doppelt gezähnt, in der Knospe gefaltet, Stiel kürzer als die halbe Blattbreite. Blüten einzeln oder zu 2, meist sitzend. Kronblätter hellrosa.
Konrad Lauber +2 more
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Prunus persica (L.) Batsch Artbeschreibung: Bis 8 m hoher Baum oder Strauch. Junge Triebe kahl. Blätter lanzettlich, allmählich zugespitzt, beidseits dunkelgrün, kahl, spitz und meist doppelt gezähnt, in der Knospe gefaltet, Stiel kürzer als die halbe Blattbreite. Blüten einzeln oder zu 2, meist sitzend. Kronblätter hellrosa.
Konrad Lauber +2 more
openaire +1 more source
2020
Published as part of Buldrini, Fabrizio, Gentilini, Matteo, Bruni, Cinzia, Santini, Claudio, Alessandrini, Alessandro & Bosi, Giovanna, 2020, Flora vascolare spontanea della città di Modena: analisi del centro storico, pp. 3-56 in Natural History Sciences 7 (1) on page 35, DOI: 10.4081/nhs.2020.443, http://zenodo.org/record ...
Buldrini, Fabrizio +5 more
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Published as part of Buldrini, Fabrizio, Gentilini, Matteo, Bruni, Cinzia, Santini, Claudio, Alessandrini, Alessandro & Bosi, Giovanna, 2020, Flora vascolare spontanea della città di Modena: analisi del centro storico, pp. 3-56 in Natural History Sciences 7 (1) on page 35, DOI: 10.4081/nhs.2020.443, http://zenodo.org/record ...
Buldrini, Fabrizio +5 more
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PEACH ( Prunus persica (L.) Batsch)
2016Peach is extensively grown in temperate areas, in both hemispheres, covering 1.5. million. ha for a total amount of about 18. million tons. It is the third most important temperate tree fruit, behind apple and pear. Over 90% of the production is for the fresh market, while the canning industry requires adapted cultivars with specific features of ...
D. Bassi +3 more
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Prunus persica peach and nectarine.
2020This chapter discusses the botany and history, breeding and genetics, molecular genetics, gene cloning, functional genomics, fruit characteristics, micropropagation, micrografting, somatic cell genetics, genetic manipulation, genetic transformation and cryopreservation of peach and nectarine.
Pérez-Clemente, Rosa M. +3 more
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Plant Cell, Tissue and Organ Culture (PCTOC), 2011
Somatic peach plants were regenerated from callus derived from the base of stem explants of the scion cultivars ‘UFO-3’, ‘Maruja’, ‘Flariba’ and ‘Alice Bigi’, and the peach × almond rootstocks ‘Garnem’ and ‘GF677’. A protocol for organogenic plant regeneration was developed using three culture media containing different concentrations of 6 ...
Margarita Pérez-Jiménez +2 more
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Somatic peach plants were regenerated from callus derived from the base of stem explants of the scion cultivars ‘UFO-3’, ‘Maruja’, ‘Flariba’ and ‘Alice Bigi’, and the peach × almond rootstocks ‘Garnem’ and ‘GF677’. A protocol for organogenic plant regeneration was developed using three culture media containing different concentrations of 6 ...
Margarita Pérez-Jiménez +2 more
openaire +1 more source

