Plant domestication is the process of adapting plants to human use by selecting specific traits. The selection process often involves the modification of some components of the plant reproductive mechanisms. Allelic variants of genes associated with flowering time, vernalization, and the circadian clock are responsible for the adaptation of crops, such as rice, maize, barley, wheat, and tomato, to non-native latitudes. Modifications in the plant architecture and branching have been selected for higher yields and easier harvests. These phenotypes are often produced by alterations in the regulation of the transition of shoot apical meristems to inflorescences, and then to floral meristems. Floral homeotic mutants are responsible for popular double-flower phenotypes in Japanese cherries, roses, camellias, and lilies. The rise of peloric flowers in ornamentals such as snapdragon and florists’ gloxinia is associated with non-functional alleles that control the relative expansion of lateral and ventral petals. Mechanisms to force outcrossing such as self-incompatibility have been removed in some tree crops cultivars such as almonds and peaches. In this review, we revisit some of these important concepts from the plant domestication perspective, focusing on four topics related to the pre-fertilization mechanisms: flowering time, inflorescence architecture, flower development, and pre-fertilization self-incompatibility mechanisms.

Genetic insights into the modification of the pre-fertilization mechanisms during plant domestication / S. Manrique, J. Friel, P. Gramazio, T. Hasing, I. Ezquer, A. Bombarely. - In: JOURNAL OF EXPERIMENTAL BOTANY. - ISSN 0022-0957. - 70:11(2019 Jun), pp. 3007-3019. [10.1093/jxb/erz231]

Genetic insights into the modification of the pre-fertilization mechanisms during plant domestication

S. Manrique
Primo
;
I. Ezquer
Penultimo
;
A. Bombarely
Ultimo
2019

Abstract

Plant domestication is the process of adapting plants to human use by selecting specific traits. The selection process often involves the modification of some components of the plant reproductive mechanisms. Allelic variants of genes associated with flowering time, vernalization, and the circadian clock are responsible for the adaptation of crops, such as rice, maize, barley, wheat, and tomato, to non-native latitudes. Modifications in the plant architecture and branching have been selected for higher yields and easier harvests. These phenotypes are often produced by alterations in the regulation of the transition of shoot apical meristems to inflorescences, and then to floral meristems. Floral homeotic mutants are responsible for popular double-flower phenotypes in Japanese cherries, roses, camellias, and lilies. The rise of peloric flowers in ornamentals such as snapdragon and florists’ gloxinia is associated with non-functional alleles that control the relative expansion of lateral and ventral petals. Mechanisms to force outcrossing such as self-incompatibility have been removed in some tree crops cultivars such as almonds and peaches. In this review, we revisit some of these important concepts from the plant domestication perspective, focusing on four topics related to the pre-fertilization mechanisms: flowering time, inflorescence architecture, flower development, and pre-fertilization self-incompatibility mechanisms.
English
clonal propagation; domestication; flower development; flowering time; inflorescence architecture; self-incompatibility; sexual reproduction
Settore BIO/01 - Botanica Generale
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
giu-2019
Oxford university press
70
11
3007
3019
13
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Genetic insights into the modification of the pre-fertilization mechanisms during plant domestication / S. Manrique, J. Friel, P. Gramazio, T. Hasing, I. Ezquer, A. Bombarely. - In: JOURNAL OF EXPERIMENTAL BOTANY. - ISSN 0022-0957. - 70:11(2019 Jun), pp. 3007-3019. [10.1093/jxb/erz231]
open
Prodotti della ricerca::01 - Articolo su periodico
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262
Article (author)
no
S. Manrique, J. Friel, P. Gramazio, T. Hasing, I. Ezquer, A. Bombarely
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/650710
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