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Genome-Wide Identification and Characterization of CDPK Gene Family in Cultivated Peanut ( L.) Reveal Their Potential Roles in Response to Ca Deficiency. | LitMetric

This study identified 45 calcium-dependent protein kinase (CDPK) genes in cultivated peanut ( L.), which are integral in plant growth, development, and stress responses. These genes, classified into four subgroups based on phylogenetic relationships, are unevenly distributed across all twenty peanut chromosomes. The analysis of the genetic structure of AhCDPKs revealed significant similarity within subgroups, with their expansion primarily driven by whole-genome duplications. The upstream promoter sequences of genes contained 46 cis-acting regulatory elements, associated with various plant responses. Additionally, 13 microRNAs were identified that target 21 genes, suggesting potential post-transcriptional regulation. AhCDPK proteins interacted with respiratory burst oxidase homologs, suggesting their involvement in redox signaling. Gene ontology and KEGG enrichment analyses affirmed genes' roles in calcium ion binding, protein kinase activity, and environmental adaptation. RNA-seq data revealed diverse expression patterns under different stress conditions. Importantly, 26 genes were significantly induced when exposed to Ca deficiency during the pod stage. During the seedling stage, four () in roots peaked after three hours, suggesting early signaling roles in pod Ca nutrition. These findings provide insights into the roles of CDPK genes in plant development and stress responses, offering potential candidates for predicting calcium levels in peanut seeds.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10705679PMC
http://dx.doi.org/10.3390/cells12232676DOI Listing

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