2023
DOI: 10.1016/j.plantsci.2023.111645
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Identification and functional characterization of the SUMO system in sweet potato under salt and drought stress

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Cited by 4 publications
(2 citation statements)
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“…In plants, sumoylation is a post-translation modification process in which SUMO molecules are attached covalently to the substrate and catalyzed by an enzyme cascade. In sweet potatoes, the SUMO genes IbSCE1a/b and IbSIZ1a/b/c enhance the drought and salt tolerance, respectively [ 102 ]. Furthermore, the roles of other transporters and antiporters were also reported in stress-related responses in sweet potatoes.…”
Section: The Functional Genomics Studies For Resilience Against Abiot...mentioning
confidence: 99%
See 1 more Smart Citation
“…In plants, sumoylation is a post-translation modification process in which SUMO molecules are attached covalently to the substrate and catalyzed by an enzyme cascade. In sweet potatoes, the SUMO genes IbSCE1a/b and IbSIZ1a/b/c enhance the drought and salt tolerance, respectively [ 102 ]. Furthermore, the roles of other transporters and antiporters were also reported in stress-related responses in sweet potatoes.…”
Section: The Functional Genomics Studies For Resilience Against Abiot...mentioning
confidence: 99%
“…The proteogenomic study was performed to functionally characterize the proteomes of sweet potatoes that contribute to map peptides on the haplotype-resolved genome and predicted transcriptome [ 134 ]. A recent study reported SUMO system protein’s critical role in salt and drought stress response in sweet potato [ 102 ]. Proteomics was also applied to study the disease resistance in sweet potato.…”
Section: Proteomics: a Key For Understanding Protein Structure Functi...mentioning
confidence: 99%