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September 10, 2025Current Issues in Molecular Biology2 citationsOpen Access

Genome-Wide Identification and Expression Analysis of the GH19 Chitinase Gene Family in Sea Island Cotton

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JMJingjing MaFudan UniversityYLYilei LongXinjiang UniversityJFJincheng FuQingdao University of Science and Technology

Key Points

  • A total of 107 GH19 genes were identified in four Gossypium species, revealing their distinct distribution patterns.
  • Phylogenetic analysis shows three well-conserved clades within the GH19 chitinase gene family, indicating evolutionary relationships.
  • Promoter analysis revealed numerous stress-responsive motifs in GH19 gene promoters, suggesting roles in plant defense mechanisms.
  • Comprehensive expression profiling indicated tissue-specific expression patterns of GH19 genes, contributing to our understanding of plant stress responses.

Abstract

In this study, GH19 chitinase (Chi) gene family was systematically identified and characterized using genomic assemblies from four cotton species: Gossypium barbadense, G. hirsutum, G. arboreum, and G. raimondii. A suite of analyses was performed, including genome-wide gene identification, physicochemical property characterization of the encoded proteins, subcellular localization prediction, phylogenetic reconstruction, chromosomal mapping, promoter cis-element analysis, and comprehensive expression profiling using transcriptomic data and qRT-PCR (including tissue-specific expression, hormone treatments, and Fusarium oxysporum infection assays). A total of 107 GH19 genes were identified across the four species (35 in G. barbadense, 37 in G. hirsutum, 19 in G. arboreum, and 16 in G. raimondii). The molecular weights of GH19 proteins ranged from 9.9 to 97.3 kDa, and they were predominantly predicted to localize to the extracellular space. Phylogenetic analysis revealed three well-conserved clades within this family. In tetraploid cotton, GH19 genes were unevenly distributed across 12 chromosomes, often clustering in certain regions, whereas in diploid species, they were confined to five chromosomes. Promoter analysis indicated that GH19 gene promoters contain numerous stress- and hormone-responsive motifs, including those for abscisic acid (ABA), ethylene (ET), and gibberellin (GA), as well as abundant light-responsive elements. The expression patterns of GH19 genes were largely tissue-specific; for instance, GbChi23 was predominantly expressed in the calyx, whereas GbChi19/21/22 were primarily expressed in the roots and stems. Overall, this study provides the first comprehensive genomic and functional characterization of the GH19 family in G. barbadense, laying a foundation for understanding its role in disease resistance mechanisms and aiding in the identification of candidate genes to enhance plant defense against biotic stress.

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Cite This Study

Ma et al. (2025) studied this question.

synapsesocial.com/papers/68c1c62f54b1d3bfb60f1cf0https://doi.org/10.3390/cimb47080633
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