In this study, a total of seven SOD (christened LcSOD) genes were identified from the litchi genome and classified into three groups across six chromosomes.
First-pass extracted concept
LcSOD gene family
Aliases
LcSOD, litchi SOD gene family
Evidence Snippets
Supporting Sources
Linked Claims
The LcSOD genes were characterized for physicochemical properties, subcellular localizations, secondary and tertiary structures, gene ontology annotations, and protein-protein interactions.
the LcSOD genes were characterized for their physicochemical properties, subcellular localizations, secondary and tertiary structures, gene ontology (GO) annotations, and protein-protein interactions
LcSOD genes showed stronger collinearity with dicotyledons than with monocotyledons.
The LcSOD genes were confirmed to have a stronger collinearity with dicotyledons than with monocotyledons.
LcSOD transcript levels in leaves correlated positively with changes in key physiological parameters under the same abiotic stress conditions.
transcript levels correlated positively with concomitant changes in key physiological parameters under the same conditions
In litchi leaves, LcSOD gene expression was induced by cold, heat, drought, and salt stresses.
In leaves, expression levels of the LcSOD genes were induced by cold, heat, drought, and salt stresses
Seven LcSOD genes were identified in the litchi genome and classified into three groups across six chromosomes.
In this study, a total of seven SOD (christened LcSOD) genes were identified from the litchi genome and classified into three groups across six chromosomes.
Cis-acting element analysis indicated that the LcSOD gene family is involved in growth, development, and responses to multiple phytohormones and diverse stresses.
Cis-acting elements analysis indicated that the LcSOD gene family was deeply involved in orchestrating growth, development, and responses to multiple phytohormones and diverse stresses.