Zhao Zhenxiang, Ao Wenhong, Luo Weirong, Sun Yaoguang, Tokala Vijay Yadav, Liu Junjun, Zhi Shenshen, Sun Yongdong
School of Horticulture and Landscape Architecture, Henan Institute of Science and Technology, Xinxiang, China.
Henan Province Engineering Research Center of Horticultural Plant Resource Utilization and Germplasm Enhancement, Henan Institute of Science and Technology, Xinxiang, China.
Front Plant Sci. 2025 Apr 24;16:1518406. doi: 10.3389/fpls.2025.1518406. eCollection 2025.
The miR159 gene family plays an essential role in plant growth and development, and stress response. Nevertheless, there are no reports defining its specific function in cucumber fruit expansion and response to abiotic stresses. In this study, we retrieved six Csa-miR159 sequences from the EnsemblPlants database, which were located on chromosome 1, chromosome 3, and chromosome 5 of cucumber, respectively. Phylogenetic analysis showed that Csa-miR159c/d/e/f belonged to one branch and Csa-miR159a/b to another. is-acting regulatory elements (CREs) including light response elements, phytohormone response elements, stress response elements, regulatory elements associated with plant growth and development were distributed unevenly in the promoter regions of Csa-miR159s, which indicated that Csa-miR159s might mediate the stress response, and growth and development. Moreover, it was determined that were the target genes of Csa-miR159s through psRNA-Target prediction and qRT-PCR analysis. Further findings suggested that Csa-miR159b might negatively regulate cucumber fruit expansion by targeting , , and . Similarly, Csa-miR159d might negatively regulate cucumber fruit expansion by targeting and . In addition, the differential expression of Csa-miR159s suggested their potential response to abiotic stresses and plant phytohormones. This study would provide valuable information on the molecular characterization of Csa-miR159s and establish a foundation for further research on the mechanisms of Csa-miR159s in regulating fruit expansion and stress response.
miR159基因家族在植物生长发育和胁迫响应中起着至关重要的作用。然而,目前尚无关于其在黄瓜果实膨大及对非生物胁迫响应中具体功能的报道。在本研究中,我们从EnsemblPlants数据库中检索到6条Csa-miR159序列,它们分别位于黄瓜的1号染色体、3号染色体和5号染色体上。系统发育分析表明,Csa-miR159c/d/e/f属于一个分支,Csa-miR159a/b属于另一个分支。包括光响应元件、植物激素响应元件、胁迫响应元件以及与植物生长发育相关的调控元件在内的顺式作用调控元件(CREs)在Csa-miR159s的启动子区域分布不均,这表明Csa-miR159s可能介导胁迫响应以及生长发育过程。此外,通过psRNA-Target预测和qRT-PCR分析确定了 是Csa-miR159s的靶基因。进一步研究结果表明,Csa-miR159b可能通过靶向 、 、 和 对黄瓜果实膨大起负调控作用。同样,Csa-miR159d可能通过靶向 和 对黄瓜果实膨大起负调控作用。此外,Csa-miR159s的差异表达表明它们对非生物胁迫和植物激素具有潜在响应。本研究将为Csa-miR159s的分子特征提供有价值的信息,并为进一步研究Csa-miR159s调控果实膨大及胁迫响应的机制奠定基础。