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Angelo Ciacciulli

Showing results (1-10 of 14) with videos related to

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Horticulture Research|January 28, 2016
Sugars in peach fruit: a breeding perspectiveMarco Cirilli, Daniele Bassi, Angelo Ciacciulli
Journal of Agricultural and Food Chemistry|June 10, 2016
Stem Xylem Characterization for Vitis Drought ToleranceLaura Rustioni, Angelo Ciacciulli, Daniele Grossi, et al.
Journal of Texture Studies|December 22, 2017
Identification of a melting type variant among peach (P. persica L. Batsch) fruit textures by a digital penetrometerAngelo Ciacciulli, Remo Chiozzotto, Giovanna Attanasio, et al.
Frontiers in Plant Science|September 14, 2020
New Plant Breeding Techniques in Citrus for the Improvement of Important Agronomic Traits. A ReviewFabrizio Salonia, Angelo Ciacciulli, Lara Poles, et al.
BMC Plant Biology|May 20, 2018
Integrative genomics approaches validate PpYUC11-like as candidate gene for the stony hard trait in peach (P. persica L. Batsch)Marco Cirilli, Daniela Giovannini, Angelo Ciacciulli, et al.
Genes|July 26, 2020
Target-Genes Reveal Species and Genotypic Specificity of Anthocyanin Pigmentation in <i>Citrus</i> and Related GeneraChiara Catalano, Angelo Ciacciulli, Fabrizio Salonia, et al.
Frontiers in Plant Science|December 30, 2022
A dual sgRNA-directed CRISPR/Cas9 construct for editing the fruit-specific β-cyclase 2 gene in pigmented citrus fruitsFabrizio Salonia, Angelo Ciacciulli, Helena Domenica Pappalardo, et al.
Molecular Breeding : New Strategies in Plant Improvement|February 27, 2025
A novel trait to reduce the mechanical damage of peach fruits at harvest: The first genetic dissection study for peduncle lengthCassia da Silva Linge, Angelo Ciacciulli, Irina Baccichet, et al.
BMC Plant Biology|November 5, 2017
Genetic dissection of Sharka disease tolerance in peach (P. persica L. Batsch)Marco Cirilli, Laura Rossini, Filippo Geuna, et al.
The Plant Journal : for Cell and Molecular Biology|July 27, 2018
Deletion of the miR172 target site in a TOE-type gene is a strong candidate variant for dominant double-flower trait in RosaceaeStefano Gattolin, Marco Cirilli, Igor Pacheco, et al.
Pageof 2

Showing results (1-10 of 14) with videos related to

Sort By:
Pageof 2
Horticulture Research|January 28, 2016
Sugars in peach fruit: a breeding perspectiveMarco Cirilli, Daniele Bassi, Angelo Ciacciulli
Journal of Agricultural and Food Chemistry|June 10, 2016
Stem Xylem Characterization for Vitis Drought ToleranceLaura Rustioni, Angelo Ciacciulli, Daniele Grossi, et al.
Journal of Texture Studies|December 22, 2017
Identification of a melting type variant among peach (P. persica L. Batsch) fruit textures by a digital penetrometerAngelo Ciacciulli, Remo Chiozzotto, Giovanna Attanasio, et al.
Frontiers in Plant Science|September 14, 2020
New Plant Breeding Techniques in Citrus for the Improvement of Important Agronomic Traits. A ReviewFabrizio Salonia, Angelo Ciacciulli, Lara Poles, et al.
BMC Plant Biology|May 20, 2018
Integrative genomics approaches validate PpYUC11-like as candidate gene for the stony hard trait in peach (P. persica L. Batsch)Marco Cirilli, Daniela Giovannini, Angelo Ciacciulli, et al.
Genes|July 26, 2020
Target-Genes Reveal Species and Genotypic Specificity of Anthocyanin Pigmentation in <i>Citrus</i> and Related GeneraChiara Catalano, Angelo Ciacciulli, Fabrizio Salonia, et al.
Frontiers in Plant Science|December 30, 2022
A dual sgRNA-directed CRISPR/Cas9 construct for editing the fruit-specific β-cyclase 2 gene in pigmented citrus fruitsFabrizio Salonia, Angelo Ciacciulli, Helena Domenica Pappalardo, et al.
Molecular Breeding : New Strategies in Plant Improvement|February 27, 2025
A novel trait to reduce the mechanical damage of peach fruits at harvest: The first genetic dissection study for peduncle lengthCassia da Silva Linge, Angelo Ciacciulli, Irina Baccichet, et al.
BMC Plant Biology|November 5, 2017
Genetic dissection of Sharka disease tolerance in peach (P. persica L. Batsch)Marco Cirilli, Laura Rossini, Filippo Geuna, et al.
The Plant Journal : for Cell and Molecular Biology|July 27, 2018
Deletion of the miR172 target site in a TOE-type gene is a strong candidate variant for dominant double-flower trait in RosaceaeStefano Gattolin, Marco Cirilli, Igor Pacheco, et al.
Pageof 2