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Genome-wide identification, characterization and expression profile analysis of expansins gene family in sugarcane (Saccharum spp.)
by
Santiago, Thaís R.
, Steindorff, Andrei S.
, Fávaro, Léia C. L.
, C. Molinari, Hugo B.
, Cunha, Bárbara A. D. B.
, Formighieri, Eduardo F.
, de Souza, Wagner R.
, Pereira, Valquiria M.
, Gaspar, Marília
, Kobayashi, Adilson K.
in
Biodiesel fuels
/ Biology and Life Sciences
/ Biomass
/ Biosynthesis
/ Bonding strength
/ Cell walls
/ Cellulose
/ Developmental stages
/ Drug tolerance
/ Enzymes
/ Ethanol
/ Flowers & plants
/ Gene expression
/ Gene Expression Profiling
/ Genes, Plant
/ Genetic aspects
/ Genomes
/ Hydrogen
/ Hydrogen Bonding
/ Hydrogen bonds
/ Identification
/ Leaves
/ Lignocellulose
/ Loosening
/ Optimization
/ Phylogenetics
/ Phylogeny
/ Physical Sciences
/ Physiological aspects
/ Plants (botany)
/ Polysaccharides
/ Proteins
/ Raw materials
/ Research and Analysis Methods
/ Ripening
/ Saccharides
/ Saccharification
/ Saccharum
/ Saccharum - genetics
/ Signal transduction
/ Stomata
/ Studies
/ Sugarcane
2018
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Genome-wide identification, characterization and expression profile analysis of expansins gene family in sugarcane (Saccharum spp.)
by
Santiago, Thaís R.
, Steindorff, Andrei S.
, Fávaro, Léia C. L.
, C. Molinari, Hugo B.
, Cunha, Bárbara A. D. B.
, Formighieri, Eduardo F.
, de Souza, Wagner R.
, Pereira, Valquiria M.
, Gaspar, Marília
, Kobayashi, Adilson K.
in
Biodiesel fuels
/ Biology and Life Sciences
/ Biomass
/ Biosynthesis
/ Bonding strength
/ Cell walls
/ Cellulose
/ Developmental stages
/ Drug tolerance
/ Enzymes
/ Ethanol
/ Flowers & plants
/ Gene expression
/ Gene Expression Profiling
/ Genes, Plant
/ Genetic aspects
/ Genomes
/ Hydrogen
/ Hydrogen Bonding
/ Hydrogen bonds
/ Identification
/ Leaves
/ Lignocellulose
/ Loosening
/ Optimization
/ Phylogenetics
/ Phylogeny
/ Physical Sciences
/ Physiological aspects
/ Plants (botany)
/ Polysaccharides
/ Proteins
/ Raw materials
/ Research and Analysis Methods
/ Ripening
/ Saccharides
/ Saccharification
/ Saccharum
/ Saccharum - genetics
/ Signal transduction
/ Stomata
/ Studies
/ Sugarcane
2018
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Genome-wide identification, characterization and expression profile analysis of expansins gene family in sugarcane (Saccharum spp.)
by
Santiago, Thaís R.
, Steindorff, Andrei S.
, Fávaro, Léia C. L.
, C. Molinari, Hugo B.
, Cunha, Bárbara A. D. B.
, Formighieri, Eduardo F.
, de Souza, Wagner R.
, Pereira, Valquiria M.
, Gaspar, Marília
, Kobayashi, Adilson K.
in
Biodiesel fuels
/ Biology and Life Sciences
/ Biomass
/ Biosynthesis
/ Bonding strength
/ Cell walls
/ Cellulose
/ Developmental stages
/ Drug tolerance
/ Enzymes
/ Ethanol
/ Flowers & plants
/ Gene expression
/ Gene Expression Profiling
/ Genes, Plant
/ Genetic aspects
/ Genomes
/ Hydrogen
/ Hydrogen Bonding
/ Hydrogen bonds
/ Identification
/ Leaves
/ Lignocellulose
/ Loosening
/ Optimization
/ Phylogenetics
/ Phylogeny
/ Physical Sciences
/ Physiological aspects
/ Plants (botany)
/ Polysaccharides
/ Proteins
/ Raw materials
/ Research and Analysis Methods
/ Ripening
/ Saccharides
/ Saccharification
/ Saccharum
/ Saccharum - genetics
/ Signal transduction
/ Stomata
/ Studies
/ Sugarcane
2018
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Genome-wide identification, characterization and expression profile analysis of expansins gene family in sugarcane (Saccharum spp.)
Journal Article
Genome-wide identification, characterization and expression profile analysis of expansins gene family in sugarcane (Saccharum spp.)
2018
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Overview
Expansins refer to a family of closely related non-enzymatic proteins found in the plant cell wall that are involved in the cell wall loosening. In addition, expansins appear to be involved in different physiological and environmental responses in plants such as leaf and stem initiation and growth, stomata opening and closing, reproduction, ripening and stress tolerance. Sugarcane (Saccharum spp.) is one of the main crops grown worldwide. Lignocellulosic biomass from sugarcane is one of the most promising raw materials for the ethanol industry. However, the efficient use of lignocellulosic biomass requires the optimization of several steps, including the access of some enzymes to the hemicellulosic matrix. The addition of expansins in an enzymatic cocktail or their genetic manipulation could drastically improve the saccharification process of feedstock biomass by weakening the hydrogen bonds between polysaccharides present in plant cell walls. In this study, the expansin gene family in sugarcane was identified and characterized by in silico analysis. Ninety two putative expansins in sugarcane (SacEXPs) were categorized in three subfamilies after phylogenetic analysis. The expression profile of some expansin genes in leaves of sugarcane in different developmental stages was also investigated. This study intended to provide suitable expansin targets for genetic manipulation of sugarcane aiming at biomass and yield improvement.
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