InBioS-PhytoSystems, Functional Genomics and Plant Molecular Imaging and Centre for Assistance in Technology of Microscopy (CAREm), University of Liège, 4000, Liège, Belgium.
Plant J. 2022 Jun;110(5):1332-1352. doi: 10.1111/tpj.15740. Epub 2022 Apr 17.
The plant serine/arginine-rich (SR) splicing factor SR45 plays important roles in several biological processes, such as splicing, DNA methylation, innate immunity, glucose regulation, and abscisic acid signaling. A homozygous Arabidopsis sr45-1 null mutant is viable, but exhibits diverse phenotypic alterations, including delayed root development, late flowering, shorter siliques with fewer seeds, narrower leaves and petals, and unusual numbers of floral organs. Here, we report that the sr45-1 mutant presents an unexpected constitutive iron deficiency phenotype characterized by altered metal distribution in the plant. RNA-Sequencing highlighted severe perturbations in metal homeostasis, the phenylpropanoid pathway, oxidative stress responses, and reproductive development. Ionomic quantification and histochemical staining revealed strong iron accumulation in the sr45-1 root tissues accompanied by iron starvation in aerial parts. Mis-splicing of several key iron homeostasis genes, including BTS, bHLH104, PYE, FRD3, and ZIF1, was observed in sr45-1 roots. We showed that some sr45-1 developmental abnormalities can be complemented by exogenous iron supply. Our findings provide new insight into the molecular mechanisms governing the phenotypes of the sr45-1 mutant.
植物丝氨酸/精氨酸丰富(SR)剪接因子 SR45 在多个生物学过程中发挥重要作用,例如剪接、DNA 甲基化、先天免疫、葡萄糖调节和脱落酸信号转导。拟南芥 sr45-1 纯合突变体是有活力的,但表现出多种表型改变,包括根发育迟缓、开花晚、长角果较短且种子较少、叶片和花瓣变窄以及花器官数量异常。在这里,我们报告 sr45-1 突变体表现出意想不到的组成型铁缺乏表型,其特征是植物中金属分布改变。RNA-Seq 强调了金属稳态、苯丙烷途径、氧化应激反应和生殖发育的严重扰动。离子定量和组织化学染色显示 sr45-1 根组织中铁的强烈积累伴随着地上部分的缺铁。在 sr45-1 根中观察到几个关键铁稳态基因,包括 BTS、bHLH104、PYE、FRD3 和 ZIF1 的剪接错误。我们表明,外源铁供应可以补充 sr45-1 的一些发育异常。我们的发现为 sr45-1 突变体表型的分子机制提供了新的见解。