Genome-Wide Identification, Characterization and Expression Analysis of Plant Nuclear Factor Gene Family Transcription Factors in ISaccharum/I spp

Plant nuclear factor (NF-Y) is a transcriptional activating factor composed of three subfamilies: NF-YA, NF-YB, and NF-YC. These transcriptional factors are reported to function as activators, suppressors, and regulators under different developmental and stress conditions in plants. However, there i...

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Veröffentlicht in:Genes 2023-05, Vol.14 (6)
Hauptverfasser: Swathik Clarancia, Peter, Naveenarani, Murugan, Ashwin Narayan, Jayanarayanan, Krishna, Sakthivel Surya, Thirugnanasambandam, Prathima Perumal, Valarmathi, Ramanathan, Suresha, Giriyapur Shivalingamurthy, Gomathi, Raju, Kumar, Raja Arun, Manickavasagam, Markandan, Jegadeesan, Ramalingam, Arun, Muthukrishnan, Hemaprabha, Govindakurup, Appunu, Chinnaswamy
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Sprache:eng
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Zusammenfassung:Plant nuclear factor (NF-Y) is a transcriptional activating factor composed of three subfamilies: NF-YA, NF-YB, and NF-YC. These transcriptional factors are reported to function as activators, suppressors, and regulators under different developmental and stress conditions in plants. However, there is a lack of systematic research on the NF-Y gene subfamily in sugarcane. In this study, 51 NF-Y genes (ShNF-Y), composed of 9 NF-YA, 18 NF-YB, and 24 NF-YC genes, were identified in sugarcane (Saccharum spp.). Chromosomal distribution analysis of ShNF-Ys in a Saccharum hybrid located the NF-Y genes on all 10 chromosomes. Multiple sequence alignment (MSA) of ShNF-Y proteins revealed conservation of core functional domains. Sixteen orthologous gene pairs were identified between sugarcane and sorghum. Phylogenetic analysis of NF-Y subunits of sugarcane, sorghum, and Arabidopsis showed that ShNF-YA subunits were equidistant while ShNF-YB and ShNF-YC subunits clustered distinctly, forming closely related and divergent groups. Expression profiling under drought treatment showed that NF-Y gene members were involved in drought tolerance in a Saccharum hybrid and its drought-tolerant wild relative, Erianthus arundinaceus. ShNF-YA5 and ShNF-YB2 genes had significantly higher expression in the root and leaf tissues of both plant species. Similarly, ShNF-YC9 had elevated expression in the leaf and root of E. arundinaceus and in the leaf of a Saccharum hybrid. These results provide valuable genetic resources for further sugarcane crop improvement programs.
ISSN:2073-4425
2073-4425
DOI:10.3390/genes14061147