Ahmed Shahbaz, Hulbert Anna K, Xin Xin, Neff Michael M
The Department of Crop and Soil Sciences, Washington State University, Pullman, WA, USA.
Graduate Program in Molecular Plant Sciences, Washington State University, Pullman, WA, USA.
BMC Plant Biol. 2025 May 30;25(1):730. doi: 10.1186/s12870-025-06764-8.
The AT-HOOK MOTIF CONTAINING NUCLEAR LOCALIZED (AHL) gene family in Arabidopsis contains 29 members, which evolved into two phylogenetic clades. Genes from this family play a role in several biological processes, but most of the members' functions remain unknown.
Here, we provide evidence that AHL26, a clade-a protein, negatively regulates hypocotyl growth and flowering time in Arabidopsis. Analysis of transgenic plants expressing an AHL26:AHL26:GUS translational fusion driven by 1.9 KB of the endogenous AHL26 promoter displayed GUS activity in the hypocotyl and apical meristem of light-grown seedlings. The overexpression of AHL26 resulted in the inhibition of hypocotyl growth and delayed flowering. However, the overexpression of a dominant-negative AHL26 with mutation in AT-hook motif, resulted in early flowering and longer hypocotyls than the WT and over-expression transgenic lines suggesting genetic redundancy between AHL26 and other AHL genes. Transcriptome analysis showed that the regulation of flowering time in AHL26 over-expression and dominant-negative mutants results from regulating flowering-related genes and pathways.
Our study highlights the significant role of AHL26 in hypocotyl growth and flowering time regulation. We further demonstrate that AHL26 regulates hypocotyl length in a light-dependent manner. Through transcriptomic analysis, we also show that the delayed flowering phenotype in our AHL26 over-expression plants is due to the negative regulation of flowering-promoting genes such as FT. Furthermore, transcriptome analysis provides insight into the biological processes and pathways through which AHL26 influences the control of flowering time.
拟南芥中含AT钩基序的核定位(AHL)基因家族有29个成员,进化为两个系统发育分支。该家族的基因在多个生物学过程中发挥作用,但大多数成员的功能仍不清楚。
在这里,我们提供证据表明,AHL26(一个分支a蛋白)对拟南芥下胚轴生长和开花时间起负调控作用。对由1.9 KB内源性AHL26启动子驱动表达AHL26:AHL26:GUS翻译融合体的转基因植物进行分析,结果显示在光照培养的幼苗的下胚轴和顶端分生组织中有GUS活性。AHL26的过表达导致下胚轴生长受到抑制和开花延迟。然而,在AT钩基序中发生突变的显性负性AHL26的过表达导致开花提前,且下胚轴比野生型和过表达转基因株系更长,这表明AHL26与其他AHL基因之间存在遗传冗余。转录组分析表明,AHL26过表达和显性负性突变体中开花时间的调控是通过调节开花相关基因和途径实现的。
我们的研究突出了AHL26在下胚轴生长和开花时间调控中的重要作用。我们进一步证明,AHL26以光依赖的方式调节下胚轴长度。通过转录组分析,我们还表明,我们的AHL26过表达植物中开花延迟的表型是由于对FT等促进开花基因的负调控。此外,转录组分析为AHL26影响开花时间控制的生物学过程和途径提供了深入了解。