AI Article Synopsis

  • CKX genes play a crucial role in regulating cytokinin levels, which are essential for plant growth and embryo/seed development in pigeonpea; however, there's limited research on their specific functions in this area.* -
  • This study discovered 18 CKX genes in pigeonpea, each differing in structure and expression, with many localized in the nucleus and unevenly distributed across certain chromosomes.* -
  • Analysis of gene expression patterns revealed that specific CKX genes may act as negative regulators of seed number per pod, indicating their potential for improving seed and biomass production in pigeonpea.*

Article Abstract

Cytokinin oxidase/dehydrogenase (CKX) regulates cytokinin levels in plants which are vital for plant growth and development. However, there is a paucity of evidence regarding their role in controlling embryo/seed development in pigeonpea. This comprehensive study provides information on the identification and characterization of CKX genes in pigeonpea. A genome-wide analysis identified 18 CKX genes, each with distinct structure, expression patterns, and possible diverse functions. Domain analysis revealed the presence of the sequences including FAD and CK-Binding domain, and subcellular localization analysis showed that almost 50 % of them reside within the nucleus. They were observed to be located unevenly on chromosome numbers 2, 4, 6, 7, and 11 with a majority of them present on the scaffolds. The 8 homologous pairs and various orthologous gene pairs provided further insights into their evolution pattern. Further, SNP/Indels variation in CKX genes and haplotype groups among contrasting genotypes for SNPP (seed number per pod) were analyzed. Spatiotemporal expression analysis revealed the significant expression pattern of CcCKX15, CcCKX17, and CcCKX2 in genotypes carrying low SNPP reiterating their possible role as negative regulators. These genes can be potential targets to undertake seed and biomass improvement in pigeonpea.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.134194DOI Listing

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