Hamid Rasmieh, Panahi Bahman, Ghorbanzadeh Zahra, Jacob Feba, Zeinalabedini Mehrshad, Ghaffari Mohammad Reza
Department of Plant Breeding, Cotton Research Institute of Iran (CRII), Agricultural Research, Education and Extension Organization (AREEO), Gorgan, Iran.
Department of Genomics, Branch for Northwest & West region, Agricultural Biotechnology Research Institute of Iran (ABRII), Agricultural Research, Education and Extension Organization (AREEO), Tabriz, Iran.
BMC Plant Biol. 2025 Sep 2;25(1):1192. doi: 10.1186/s12870-025-07258-3.
Proteins containing domains of unknown function (DUFs) play a crucial role in plant growth, development and stress adaptation, but many of them are still uncharacterized. The DUF789 family is one of the least studied of these, especially in economically significant crops like cotton (Gossypium spp.), whose possible function in fibre production and abiotic stress response is yet unknown.
In a comprehensive genome-wide analysis, a total of 91 DUF789 genes were identified in four Gossypium species: G. arboreum, G. barbadense, G. raimondii and G. hirsutum. Evolutionary and phylogenetic analyses placed the GhDUF789 proteins into different clades, with purifying selection identified as the major evolutionary force. Analyses of gene structure and conserved motifs revealed considerable structural diversity, with closely related genes showing similar exon-intron patterns and motif compositions. Synteny and duplication analyses showed that segmental and tandem duplications contributed to the DUF789 family expansion in cotton. Analysis of cis-regulatory elements revealed that the GhDUF789 promoters are enriched in motifs responsive to hormonal, developmental, light-induced and abiotic stresses. GO enrichment analyses, prediction of protein-protein interaction and secondary and tertiary structure modelling, indicated that GhDUF789 proteins are involved in clathrin-mediated vesicle trafficking and membrane trafficking. The miRNA target prediction revealed regulatory interactions with conserved miRNAs from cotton, in particular ghr-miR414 and ghr-miR396. Expression profiling based on transcriptome analysis, supported by validation using qRT-PCR, revealed that several GhDUF789 genes are differentially expressed during fibre development and respond strongly to drought, heat, salinity and cold stress, especially in drought-tolerant genotypes.
This study provides the first comprehensive characterization of the DUF789 gene family in cotton and offers new insights into its evolutionary dynamics, structural features and potential role in fibre development and adaptation to abiotic stress. The results provide a solid foundation for future functional studies and identify candidate GhDUF789 genes for targeted genetic improvement of stress resistance and fibre quality in cotton.
含有未知功能结构域(DUF)的蛋白质在植物生长、发育和胁迫适应中起着关键作用,但其中许多仍未得到表征。DUF789家族是研究最少的家族之一,尤其是在像棉花(棉属)这样具有经济重要性的作物中,其在纤维生产和非生物胁迫响应中的可能功能尚不清楚。
在一项全面的全基因组分析中,在四种棉属物种:亚洲棉、海岛棉、雷蒙德氏棉和陆地棉中总共鉴定出91个DUF789基因。进化和系统发育分析将GhDUF789蛋白分为不同的进化枝,纯化选择被确定为主要的进化力量。基因结构和保守基序分析揭示了相当大的结构多样性,密切相关的基因显示出相似的外显子-内含子模式和基序组成。共线性和重复分析表明,片段重复和串联重复促成了棉花中DUF789家族的扩张。顺式调控元件分析表明,GhDUF789启动子富含对激素、发育、光诱导和非生物胁迫有响应的基序。基因本体富集分析、蛋白质-蛋白质相互作用预测以及二级和三级结构建模表明,GhDUF789蛋白参与网格蛋白介导的囊泡运输和膜运输。miRNA靶标预测揭示了与棉花保守miRNA的调控相互作用,特别是ghr-miR414和ghr-miR396。基于转录组分析的表达谱分析,并通过qRT-PCR验证支持,结果表明几个GhDUF789基因在纤维发育过程中差异表达,并对干旱、高温、盐度和冷胁迫有强烈响应,尤其是在耐旱基因型中。
本研究首次对棉花中的DUF789基因家族进行了全面表征,并为其进化动态、结构特征以及在纤维发育和适应非生物胁迫中的潜在作用提供了新的见解。研究结果为未来的功能研究奠定了坚实基础,并鉴定出候选GhDUF789基因,用于棉花抗逆性和纤维品质的定向遗传改良。