Molecular screening reveals a photoperiod responsive floral regulator in sugarcane
Flowering is a major factor that can decrease sugarcane productivity because it affects the quantity and quality of feedstock due to sucrose consumption from the stalk during inflorescence formation. Photoperiod is the main environmental factor involved in sugarcane floral induction, which occurs by...
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Published in | Theoretical and experimental plant physiology Vol. 35; no. 3; pp. 199 - 214 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
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Springer International Publishing
01.09.2023
Springer Nature B.V |
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Abstract | Flowering is a major factor that can decrease sugarcane productivity because it affects the quantity and quality of feedstock due to sucrose consumption from the stalk during inflorescence formation. Photoperiod is the main environmental factor involved in sugarcane floral induction, which occurs by the integration of gene regulatory networks in response to environmental and endogenous stimuli. One of the gene families involved in these regulatory networks are orthologs of the
Arabidopsis thaliana
FLOWERING LOCUS T
(
FT
) gene, which encodes a phloem-mobile signal that stimulates floral induction at the shoot apical meristem. This work investigates homologs of the
FT
gene in sugarcane, as well as determines the putative function of these genes under inductive short-day photoperiods. We conducted in silico analyses to isolate putative
FT
orthologs in sugarcane and examined the expression levels of these genes under different photoperiodic conditions over a 24-hour-day-cycle in contrasting cultivars with different flowering responses. Three new
FT
orthologs were found with high similarity to
FT
homologs in other species. Among three genes identified, we focused on
ScFT6
, which has conserved amino acid sequence domains at characteristic positions for the flowering inducer of the phosphatidylethanolamine-binding protein (PEBP) gene family.
ScFT6
expression varied according to diurnal variation and demonstrated a high transcriptional level under inductive shortening-day conditions. Cultivars with distinct flowering time responses display variable expression for the
ScFT6
. Therefore,
ScFT6
is a putative orthologous gene in relation to
FT
that is controlled by photoperiod and diurnal regulation in sugarcane. |
---|---|
AbstractList | Flowering is a major factor that can decrease sugarcane productivity because it affects the quantity and quality of feedstock due to sucrose consumption from the stalk during inflorescence formation. Photoperiod is the main environmental factor involved in sugarcane floral induction, which occurs by the integration of gene regulatory networks in response to environmental and endogenous stimuli. One of the gene families involved in these regulatory networks are orthologs of the Arabidopsis thalianaFLOWERING LOCUS T (FT) gene, which encodes a phloem-mobile signal that stimulates floral induction at the shoot apical meristem. This work investigates homologs of the FT gene in sugarcane, as well as determines the putative function of these genes under inductive short-day photoperiods. We conducted in silico analyses to isolate putative FT orthologs in sugarcane and examined the expression levels of these genes under different photoperiodic conditions over a 24-hour-day-cycle in contrasting cultivars with different flowering responses. Three new FT orthologs were found with high similarity to FT homologs in other species. Among three genes identified, we focused on ScFT6, which has conserved amino acid sequence domains at characteristic positions for the flowering inducer of the phosphatidylethanolamine-binding protein (PEBP) gene family. ScFT6 expression varied according to diurnal variation and demonstrated a high transcriptional level under inductive shortening-day conditions. Cultivars with distinct flowering time responses display variable expression for the ScFT6. Therefore, ScFT6 is a putative orthologous gene in relation to FT that is controlled by photoperiod and diurnal regulation in sugarcane. Flowering is a major factor that can decrease sugarcane productivity because it affects the quantity and quality of feedstock due to sucrose consumption from the stalk during inflorescence formation. Photoperiod is the main environmental factor involved in sugarcane floral induction, which occurs by the integration of gene regulatory networks in response to environmental and endogenous stimuli. One of the gene families involved in these regulatory networks are orthologs of the Arabidopsis thaliana FLOWERING LOCUS T ( FT ) gene, which encodes a phloem-mobile signal that stimulates floral induction at the shoot apical meristem. This work investigates homologs of the FT gene in sugarcane, as well as determines the putative function of these genes under inductive short-day photoperiods. We conducted in silico analyses to isolate putative FT orthologs in sugarcane and examined the expression levels of these genes under different photoperiodic conditions over a 24-hour-day-cycle in contrasting cultivars with different flowering responses. Three new FT orthologs were found with high similarity to FT homologs in other species. Among three genes identified, we focused on ScFT6 , which has conserved amino acid sequence domains at characteristic positions for the flowering inducer of the phosphatidylethanolamine-binding protein (PEBP) gene family. ScFT6 expression varied according to diurnal variation and demonstrated a high transcriptional level under inductive shortening-day conditions. Cultivars with distinct flowering time responses display variable expression for the ScFT6 . Therefore, ScFT6 is a putative orthologous gene in relation to FT that is controlled by photoperiod and diurnal regulation in sugarcane. |
Author | Schumacher, Pedro Vitor Resende, Pâmela Marinho Chalfun-Junior, Antonio Linhares-Neto, Manoel Viana Cardon, Carlos Henrique Colasanti, Joseph Ribeiro, Thales Henrique Cherubino |
Author_xml | – sequence: 1 givenname: Manoel Viana orcidid: 0000-0002-8244-7177 surname: Linhares-Neto fullname: Linhares-Neto, Manoel Viana organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras – sequence: 2 givenname: Pedro Vitor surname: Schumacher fullname: Schumacher, Pedro Vitor organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras – sequence: 3 givenname: Thales Henrique Cherubino orcidid: 0000-0003-2675-7004 surname: Ribeiro fullname: Ribeiro, Thales Henrique Cherubino organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras – sequence: 4 givenname: Carlos Henrique orcidid: 0000-0003-4939-7128 surname: Cardon fullname: Cardon, Carlos Henrique organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras – sequence: 5 givenname: Pâmela Marinho surname: Resende fullname: Resende, Pâmela Marinho organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras – sequence: 6 givenname: Joseph surname: Colasanti fullname: Colasanti, Joseph organization: Department of Molecular and Cellular Biology, University of Guelph – sequence: 7 givenname: Antonio orcidid: 0000-0002-1794-9429 surname: Chalfun-Junior fullname: Chalfun-Junior, Antonio email: chalfunjunior@ufla.br organization: Department of Biology, Plant Physiology Sector, Federal University of Lavras |
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Copyright_xml | – notice: The Author(s), under exclusive licence to Brazilian Society of Plant Physiology 2023. Springer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. |
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SubjectTerms | Amino acid sequence Amino acids Biomedical and Life Sciences Conserved sequence Cultivars Diurnal variations Endogenous stimuli Environmental effects Environmental factors Flowering Gene expression Gene families Genes Homology Life Sciences Meristems Phosphatidylethanolamine Photoperiodicity Sucrose Sugarcane |
Title | Molecular screening reveals a photoperiod responsive floral regulator in sugarcane |
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