Sharma Shivam, Prusty Ankita, Dansana Prasant Kumar, Kapoor Sanjay, Tyagi Akhilesh Kumar
Interdisciplinary Centre for Plant Genomics and Department of Plant Molecular Biology, University of Delhi, South Campus (UDSC), Benito Juarez Marg, New Delhi, 110021, India.
Plant Cell Rep. 2025 Jan 10;44(2):27. doi: 10.1007/s00299-025-03423-y.
Overexpression of general transcription factor OsTFIIB5 in rice affects seedling growth, plant height, flowering time, panicle architecture, and seed protein/starch levels and involves modulation of expression of associated genes. TFIIB, a key general transcription factor (GTF), plays a critical role in pre-initiation complex (PIC) formation and facilitates RNA polymerase II-mediated transcription. In humans and yeast, TFIIB is encoded by a single gene; however, in plants it is encoded by a multigene family whose products may perform specialized transcriptional functions. The role of plant TFIIBs, particularly in monocots, remains largely unexplored. This study presents the first functional characterization of the rice TFIIB gene, OsTFIIB5 (LOC_Os09g36440), during development. Expression profiling of OsTFIIB5 revealed differential patterns across various developmental stages, with pronounced transcript accumulation during seed development. Overexpression of OsTFIIB5 impacted multiple stages of plant growth and development, leading to phenotypic changes such as altered seedling growth, reduced plant height, early heading, altered panicle architecture, decreased yield, and changes in seed storage substances. Notably, there were no effects on seed germination, pollen development, and grain size. Reduction in shoot length and plant height was linked to altered expression of genes involved in gibberellin (GA) biosynthesis, signalling, and deactivation. Overexpression of OsTFIIB5 enhanced the expression of genes involved in the photoperiodic flowering pathway, resulting in early panicle emergence. Higher expression levels of OsTFIIB5 also induced the accumulation of seed storage proteins (SSPs), while reducing starch content and altering the proportions of amylose and amylopectin in seeds. These findings suggest that OsTFIIB5 functions as a transcriptional regulator, governing multiple aspects of rice growth and development.
水稻中通用转录因子OsTFIIB5的过表达影响幼苗生长、株高、开花时间、穗型结构以及种子蛋白质/淀粉水平,并涉及相关基因表达的调控。TFIIB是一种关键的通用转录因子(GTF),在转录起始前复合物(PIC)的形成中起关键作用,并促进RNA聚合酶II介导的转录。在人类和酵母中,TFIIB由单个基因编码;然而,在植物中它由一个多基因家族编码,其产物可能执行专门的转录功能。植物TFIIB的作用,尤其是在单子叶植物中的作用,在很大程度上仍未被探索。本研究首次展示了水稻TFIIB基因OsTFIIB5(LOC_Os09g36440)在发育过程中的功能特性。OsTFIIB5的表达谱揭示了其在各个发育阶段的差异模式,在种子发育过程中有明显的转录积累。OsTFIIB5的过表达影响了植物生长和发育的多个阶段,导致表型变化,如幼苗生长改变、株高降低、抽穗提前、穗型结构改变、产量下降以及种子储存物质的变化。值得注意的是,对种子萌发、花粉发育和粒型没有影响。茎长和株高的降低与赤霉素(GA)生物合成、信号传导和失活相关基因的表达改变有关。OsTFIIB5的过表达增强了光周期开花途径相关基因的表达,导致穗提前抽出。OsTFIIB5的较高表达水平还诱导了种子储存蛋白(SSP)的积累,同时降低了淀粉含量,并改变了种子中直链淀粉和支链淀粉的比例。这些发现表明OsTFIIB5作为一种转录调节因子,调控水稻生长和发育的多个方面。