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Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion

The primary impetus behind this research was to provide a boost to the characterization of the Italian olive biodiversity by acquiring reliable and homogeneous data over the course of an eight-year trial on the floral and fruiting biology of 120 molecularly analyzed cultivars, most of which have eit...

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Autores principales: Lombardo, Luca, Fila, Gianni, Lombardo, Nicola, Epifani, Chiara, Duffy, Donald H., Godino, Gianluca, Salimonti, Amelia, Zelasco, Samanta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6783865/
https://www.ncbi.nlm.nih.gov/pubmed/31466369
http://dx.doi.org/10.3390/biology8030062
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author Lombardo, Luca
Fila, Gianni
Lombardo, Nicola
Epifani, Chiara
Duffy, Donald H.
Godino, Gianluca
Salimonti, Amelia
Zelasco, Samanta
author_facet Lombardo, Luca
Fila, Gianni
Lombardo, Nicola
Epifani, Chiara
Duffy, Donald H.
Godino, Gianluca
Salimonti, Amelia
Zelasco, Samanta
author_sort Lombardo, Luca
collection PubMed
description The primary impetus behind this research was to provide a boost to the characterization of the Italian olive biodiversity by acquiring reliable and homogeneous data over the course of an eight-year trial on the floral and fruiting biology of 120 molecularly analyzed cultivars, most of which have either low or very low diffusion. The obtained data highlighted a considerable variability to almost all of the analyzed parameters, which given the uniformity of environment and crop management was indicative of a large genetic variability in the accessions under observation, as confirmed through the molecular analysis. Several cases of synonymy were reported for the first time, even among plants cultivated in different regions, whilst all of the varieties examined, with only one exception, showed very low percentages of self-fruit-set, indicating a need for the employment of suitable pollinator plants. Eventually, a fitted model allowed us to evaluate the clear effects of the thermal values on blossoming, particularly in the months of March and April, whereas the climatic conditions during the flowering time had only a modest effect on its duration.
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spelling pubmed-67838652019-10-16 Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion Lombardo, Luca Fila, Gianni Lombardo, Nicola Epifani, Chiara Duffy, Donald H. Godino, Gianluca Salimonti, Amelia Zelasco, Samanta Biology (Basel) Article The primary impetus behind this research was to provide a boost to the characterization of the Italian olive biodiversity by acquiring reliable and homogeneous data over the course of an eight-year trial on the floral and fruiting biology of 120 molecularly analyzed cultivars, most of which have either low or very low diffusion. The obtained data highlighted a considerable variability to almost all of the analyzed parameters, which given the uniformity of environment and crop management was indicative of a large genetic variability in the accessions under observation, as confirmed through the molecular analysis. Several cases of synonymy were reported for the first time, even among plants cultivated in different regions, whilst all of the varieties examined, with only one exception, showed very low percentages of self-fruit-set, indicating a need for the employment of suitable pollinator plants. Eventually, a fitted model allowed us to evaluate the clear effects of the thermal values on blossoming, particularly in the months of March and April, whereas the climatic conditions during the flowering time had only a modest effect on its duration. MDPI 2019-08-28 /pmc/articles/PMC6783865/ /pubmed/31466369 http://dx.doi.org/10.3390/biology8030062 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lombardo, Luca
Fila, Gianni
Lombardo, Nicola
Epifani, Chiara
Duffy, Donald H.
Godino, Gianluca
Salimonti, Amelia
Zelasco, Samanta
Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title_full Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title_fullStr Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title_full_unstemmed Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title_short Uncovering Olive Biodiversity through Analysis of Floral and Fruiting Biology and Assessment of Genetic Diversity of 120 Italian Cultivars with Minor or Marginal Diffusion
title_sort uncovering olive biodiversity through analysis of floral and fruiting biology and assessment of genetic diversity of 120 italian cultivars with minor or marginal diffusion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6783865/
https://www.ncbi.nlm.nih.gov/pubmed/31466369
http://dx.doi.org/10.3390/biology8030062
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