Superoxide Dismutase
SODs
are defense associated proteins that detoxify ROS and primarily serve as scavengers. They have been described in numerous plant species, but their in-depth characterization in
Brassica rapa
has not been reported. Therefore, the present investigation on genome wide study of
SOD
gene family was conducted to identify Br
SOD
genes, their domain-based organization, gene structure analysis, phylogenetic analysis, intron-exon structure of genes and expression analysis. The sequence characterization of Super oxide dismutase gene family in
Brassica rapa
, their syntenic associateship of conserved motifs and phylogenetic correlationship, prediction of
cis
-elements and determing the expression analysis in distinct tissues namely plant callus, root, stem, leaf, flower, and silique under abiotic conditions have been analysed using different software’s. The study on
SOD
gene family identified 17 Br
SOD
genes which were grouped into eight Br
Cu-ZnSODs
and nine Br
Fe-MnSODs
domain-based organization. Furthermore, the conserved character of Br
SODs
were confirmed by intron-exon organisation, motif arrangements and domain architectural investigations. Expression analysis using RNA Sequence data of different developmental stages proclaimed that genes were manifested in all six tissues with an exception of Br
Cu-ZnSOD3,
which was not manifested in roots; however, whose transcript was detected in all other tested tissues. The study has genome wide insight into the occurrence and functional specifications of Br
SOD
gene family in
Brassica rapa
that can be potentially utilized in breeding program for resilience to climate change and abiotic stresses tolerance
Brassica
variety.
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