Fan Tian, Li Xiumei, Yang Wu, Xia Kuaifei, Ouyang Jie, Zhang Mingyong
Key Laboratory of South China Agricultural Plant Molecular Analysis and Genetic Improvement & Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, China; University of Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China; Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, China.
PLoS One. 2015 May 29;10(5):e0125833. doi: 10.1371/journal.pone.0125833. eCollection 2015.
Phase change from vegetative to reproductive development is one of the critical developmental steps in plants, and it is regulated by both environmental and endogenous factors. The maintenance of shoot apical meristem (SAM) identity, miRNAs and flowering integrators are involved in this phase change process. Here, we report that the miRNA osa-miR171c targets four GRAS (GAI-RGA-SCR) plant-specific transcription factors (OsHAM1, OsHAM2, OsHAM3, and OsHAM4) to control the floral transition and maintenance of SAM indeterminacy in rice (Oryza sativa). We characterized a rice T-DNA insertion delayed heading (dh) mutant, where the expression of OsMIR171c gene is up-regulated. This mutant showed pleiotropic phenotypic defects, including especially prolonged vegetative phase, delayed heading date, and bigger shoot apex. Parallel expression analysis showed that osa-miR171c controlled the expression change of four OsHAMs in the shoot apex during floral transition, and responded to light. In the dh mutant, the expression of the juvenile-adult phase change negative regulator osa-miR156 was up-regulated, expression of the flowering integrators Hd3a and RFT1 was inhibited, and expression of FON4 negative regulators involved in the maintenance of SAM indeterminacy was also inhibited. From these data, we propose that the inhibition of osa-miR171c-mediated OsHAM transcription factors regulates the phase transition from vegetative to reproductive development by maintaining SAM indeterminacy and inhibiting flowering integrators.
从营养生长到生殖发育的相变是植物关键的发育步骤之一,它受环境和内源因素共同调控。茎尖分生组织(SAM)特性的维持、miRNA和开花整合因子参与了这一相变过程。在此,我们报道miRNA osa-miR171c靶向四个GRAS(GAI-RGA-SCR)植物特异性转录因子(OsHAM1、OsHAM2、OsHAM3和OsHAM4),以控制水稻(Oryza sativa)的花期转变和SAM不确定性的维持。我们鉴定了一个水稻T-DNA插入延迟抽穗(dh)突变体,其中OsMIR171c基因的表达上调。该突变体表现出多效性表型缺陷,尤其是营养生长期延长、抽穗期延迟和茎尖增大。平行表达分析表明,osa-miR171c在花期转变期间控制茎尖中四个OsHAMs的表达变化,并对光作出响应。在dh突变体中,幼年-成年相变负调控因子osa-miR156的表达上调,开花整合因子Hd3a和RFT1的表达受到抑制,参与维持SAM不确定性的FON4负调控因子的表达也受到抑制。基于这些数据,我们提出osa-miR171c介导的OsHAM转录因子的抑制通过维持SAM不确定性和抑制开花整合因子来调节从营养生长到生殖发育的阶段转变。