College of Plant Protection, Yangzhou University, 48 Wenhui East Road, Yangzhou, Jiangsu, 225009, PR China.
Faculty of Crop Production Sciences, The University of Agriculture Peshawar, Peshawar, Khyber Pakhtunkhwa, 25120, Pakistan.
BMC Plant Biol. 2024 Jun 15;24(1):564. doi: 10.1186/s12870-024-05274-3.
Three Amino acid Loop Extension (TALE) belongs to the homeobox group of genes that are important constituents of plant systems. The TALE gene family is instrumental not only in growth and development but also plays an essential role in regulating plant response to environmental adversaries.
In the present study, we isolated 21 CsTALE genes from the cucumber (Cucumis sativus L.) genome database. Bioinformatics tools were put in place to understand the structural and functional components of the CsTALE gene family. The evolutionary analysis dissected them into seven subclades (KNOX-I, KNOX-II, and BELL-I to BELL-V). The cis-acting elements in the promoter region of CsTALE genes disclosed that they are key regulators of hormonal and stress-related processes. Additionally, the STRING database advocated the concerting role of CsTALE proteins with other key transcription factors potent in plant developmental biology. The CsmiR319 and CsmiR167a-3p targeting the CsTALE15 and CsTALE16, respectively, further assert the importance of the CsTALE gene family posttranscriptional-related processes. Tissue-specific gene expression unfolded the fundamental involvement of CsTALE genes as they were expressed throughout the developmental stages. Under waterlogging stress, the CsTALE17 expressed significantly higher values in WL, WL-NAA, and WL-ETH but not in WL-MeJA-treated samples.
The present study reveals the evolution and functions of the CsTALE gene family in cucumber. Our work will provide a platform that will help future researchers address the issue of waterlogging stress in the Yangtze River Delta.
三氨基酸环延伸(TALE)属于同源盒基因家族,是植物系统的重要组成部分。TALE 基因家族不仅在生长和发育中起着重要作用,而且在调节植物对环境逆境的反应中也起着至关重要的作用。
本研究从黄瓜(Cucumis sativus L.)基因组数据库中分离出 21 个 CsTALE 基因。生物信息学工具被用来了解 CsTALE 基因家族的结构和功能组成。进化分析将它们分为七个亚科(KNOX-I、KNOX-II 和 BELL-I 至 BELL-V)。CsTALE 基因启动子区的顺式作用元件表明,它们是激素和应激相关过程的关键调节剂。此外,STRING 数据库主张 CsTALE 蛋白与其他在植物发育生物学中具有重要作用的关键转录因子协同作用。CsmiR319 和 CsmiR167a-3p 分别靶向 CsTALE15 和 CsTALE16,进一步证明了 CsTALE 基因家族在转录后相关过程中的重要性。组织特异性基因表达揭示了 CsTALE 基因的基本参与,因为它们在整个发育阶段都有表达。在淹水胁迫下,CsTALE17 在 WL、WL-NAA 和 WL-ETH 中的表达值显著高于 WL-MeJA 处理的样本。
本研究揭示了黄瓜 CsTALE 基因家族的进化和功能。我们的工作将为未来的研究人员提供一个平台,帮助解决长江三角洲地区的淹水胁迫问题。