State Key Laboratory of Genetic Engineering, Collaborative Innovation Center of Genetics and Development, Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai, 200433, China.
Key Laboratory of Biodiversity Sciences and Ecological Engineering, Ministry of Education, Institute of Biodiversity Sciences, Center for Evolutionary Biology, School of Life Sciences, Fudan University, Shanghai, 200433, China.
Plant J. 2015 Sep;83(6):976-90. doi: 10.1111/tpj.12942. Epub 2015 Aug 26.
The anther is the male reproductive organ of flowering plants, and the Arabidopsis bHLH transcription factors encoded by DYSFUNCTIONAL TAPETUM1 (DYT1) and ABORTED MICROSPORE (AMS) are required for control of the complex transcriptional networks regulating anther development. Knowledge of the mechanisms by which the bHLH proteins affect this diverse gene expression is quite limited. We examine here three recently duplicated Arabidopsis bHLH genes, bHLH010, bHLH089 and bHLH091, using evolutionary, genetic, morphological and transcriptomic approaches, and uncover their redundant functions in anther development. These three genes are relatively highly expressed in the tapetum of the Arabidopsis anther; single mutants at each of the bHLH010, bHLH089 and bHLH091 loci are developmentally normal, but the various double and triple combinations progressively exhibit increasingly defective anther phenotypes (abnormal tapetum morphology, delayed callose degeneration, and aborted pollen development), indicating their redundant functions in male fertility. Further transcriptomic and molecular analyses suggest that these three proteins act slightly later than DYT1, and also form protein complexes with DYT1, subsequently affecting the correct expression of many DYT1 target genes in the anther development transcriptional network. This study demonstrated that bHLH010, bHLH089 and bHLH091 together are important for the normal transcriptome of the developing Arabidopsis anther, possibly by forming a feed-forward loop with DYT1.
花药是开花植物的雄性生殖器官,拟南芥 DYSFUNCTIONAL TAPETUM1(DYT1)和 ABORTED MICROSPORE(AMS)编码的 bHLH 转录因子对于调控花药发育的复杂转录网络的控制是必需的。关于 bHLH 蛋白影响这种多样化基因表达的机制的知识相当有限。我们在这里使用进化、遗传、形态和转录组学方法研究了三个最近复制的拟南芥 bHLH 基因,bHLH010、bHLH089 和 bHLH091,并揭示了它们在花药发育中的冗余功能。这三个基因在拟南芥花药的绒毡层中相对高度表达;在 bHLH010、bHLH089 和 bHLH091 基因座的每个单突变体中,发育都是正常的,但各种双突变体和三突变体组合逐渐表现出越来越严重的花药表型缺陷(异常绒毡层形态、延迟胼胝质降解和花粉发育中止),表明它们在雄性育性中具有冗余功能。进一步的转录组学和分子分析表明,这三种蛋白质的作用比 DYT1 稍晚,并且还与 DYT1 形成蛋白质复合物,随后影响花药发育转录网络中许多 DYT1 靶基因的正确表达。这项研究表明,bHLH010、bHLH089 和 bHLH091 一起对于正常的拟南芥花药发育转录组是重要的,可能通过与 DYT1 形成正反馈环。