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Identification and characterization of novel SUMO genes in bread wheat
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The small-ubiquitin-like-modifier (SUMO), composed of approximately 100 amino acid residues, regulates the cellular activity of several proteins by posttranslational modification. Almost all plant species express a family of SUMO isoforms. Nevertheless, the
SUMO
genes in wheat (
TaSUMOs
) have not undergone complete characterization, and the roles of
TaSUMOs
remain unidentified. The study identified four new
SUMO
genes in wheat, named
TaSUMO4-7
, in addition to the previously known
TaSUMO1-3
. These genes are part of the conserved SUMO family, as indicated by phylogenetic analysis. The genes contain the characteristic SUMO-acceptor site motif and the essential C-terminal diglycine motif for processing. Expression analysis showed that
TaSUMO4-7
genes are expressed in various wheat tissues. Bioinformatics analysis predicted the biochemical properties and structures of the proteins, which were found to localize in the cytoplasm and nucleus. The study confirms that the new
TaSUMO4-7
genes are functional members of the wheat SUMO family and lays the groundwork for further research into their specific roles.
Title: Identification and characterization of novel
SUMO
genes in bread wheat
Description:
The small-ubiquitin-like-modifier (SUMO), composed of approximately 100 amino acid residues, regulates the cellular activity of several proteins by posttranslational modification.
Almost all plant species express a family of SUMO isoforms.
Nevertheless, the
SUMO
genes in wheat (
TaSUMOs
) have not undergone complete characterization, and the roles of
TaSUMOs
remain unidentified.
The study identified four new
SUMO
genes in wheat, named
TaSUMO4-7
, in addition to the previously known
TaSUMO1-3
.
These genes are part of the conserved SUMO family, as indicated by phylogenetic analysis.
The genes contain the characteristic SUMO-acceptor site motif and the essential C-terminal diglycine motif for processing.
Expression analysis showed that
TaSUMO4-7
genes are expressed in various wheat tissues.
Bioinformatics analysis predicted the biochemical properties and structures of the proteins, which were found to localize in the cytoplasm and nucleus.
The study confirms that the new
TaSUMO4-7
genes are functional members of the wheat SUMO family and lays the groundwork for further research into their specific roles.
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