Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India.
Plant Physiol. 2013 Apr;161(4):1970-83. doi: 10.1104/pp.112.212423. Epub 2013 Feb 28.
SEPALLATA (SEP) MADS box transcription factors mediate floral development in association with other regulators. Mutants in five rice (Oryza sativa) SEP genes suggest both redundant and unique functions in panicle branching and floret development. leafy hull sterile1/OsMADS1, from a grass-specific subgroup of LOFSEP genes, is required for specifying a single floret on the spikelet meristem and for floret organ development, but its downstream mechanisms are unknown. Here, key pathways and directly modulated targets of OsMADS1 were deduced from expression analysis after its knockdown and induction in developing florets and by studying its chromatin occupancy at downstream genes. The negative regulation of OsMADS34, another LOFSEP gene, and activation of OsMADS55, a SHORT VEGETATIVE PHASE-like floret meristem identity gene, show its role in facilitating the spikelet-to-floret meristem transition. Direct regulation of other transcription factor genes like OsHB4 (a class III homeodomain Leu zipper member), OsBLH1 (a BEL1-like homeodomain member), OsKANADI2, OsKANADI4, and OsETTIN2 show its role in meristem maintenance, determinacy, and lateral organ development. We found that the OsMADS1 targets OsETTIN1 and OsETTIN2 redundantly ensure carpel differentiation. The multiple effects of OsMADS1 in promoting auxin transport, signaling, and auxin-dependent expression and its direct repression of three cytokinin A-type response regulators show its role in balancing meristem growth, lateral organ differentiation, and determinacy. Overall, we show that OsMADS1 integrates transcriptional and signaling pathways to promote rice floret specification and development.
SEPALLATA(SEP)MADS 框转录因子与其他调节剂一起介导花的发育。水稻中五个 SEP 基因的突变体表明在穗分枝和小花发育中存在冗余和独特的功能。来自草特异性 LOFSEP 基因亚组的 leafy hull sterile1/OsMADS1,是在小穗分生组织上指定单个小花和小花器官发育所必需的,但它的下游机制尚不清楚。在这里,通过在发育的小花中敲低和诱导 OsMADS1 后的表达分析,以及研究其在下游基因上的染色质占据,推断出 OsMADS1 的关键途径和直接调节靶标。另一个 LOFSEP 基因 OsMADS34 的负调控和 SHORT VEGETATIVE PHASE-like 小花分生组织身份基因 OsMADS55 的激活表明它在促进小穗到小花分生组织过渡中的作用。其他转录因子基因如 OsHB4(III 类同源域亮氨酸拉链成员)、OsBLH1(BEL1 样同源域成员)、OsKANADI2、OsKANADI4 和 OsETTIN2 的直接调控表明它在分生组织维持、确定性和侧生器官发育中的作用。我们发现 OsMADS1 的靶标 OsETTIN1 和 OsETTIN2 冗余地确保心皮分化。OsMADS1 促进生长素运输、信号转导和生长素依赖表达的多种作用及其对三个细胞分裂素 A 型应答调节剂的直接抑制作用表明其在平衡分生组织生长、侧生器官分化和确定性方面的作用。总体而言,我们表明 OsMADS1 整合转录和信号通路以促进水稻小花的特化和发育。