Laboratoire Reproduction et Développement des Plantes, Université de Lyon, ENS de Lyon, UCB Lyon 1, CNRS, INRA, F-69342, Lyon, France.
Plant Genetics, Institute for Water and Wetland Research, Radboud University Nijmegen, 6525AJ Nijmegen, The Netherlands.
Plant Cell. 2019 Dec;31(12):3033-3056. doi: 10.1105/tpc.19.00162. Epub 2019 Oct 7.
Members of () and ()/ () MADS-box transcription factor subfamilies play key roles in floral organ identity determination and floral meristem determinacy in the rosid species Arabidopsis (). Here, we present a functional characterization of the seven / and four / genes in the distant asterid species petunia ( × ). Based on the analysis of single and higher order mutants, we report that the petunia // orthologs together with encode classical floral organ identity and floral termination functions, with a master role for the petunia ortholog (). By contrast, the subclade members and , for which no clear ortholog is present in Arabidopsis, play a major role in determining floral meristem identity together with , while contributing only moderately to floral organ identity. In turn, the four members of the petunia / subfamily redundantly are required for inflorescence meristem identity and act as B-function repressors in the first floral whorl, together with / genes. Overall, these data together with studies in other species suggest major differences in the functional diversification of the / and / MADS-box subfamilies during angiosperm evolution.plantcell;31/12/3033/FX1F1fx1.
()和()/()MADS-box 转录因子亚家族的成员在蔷薇科物种拟南芥()中对花器官身份决定和花分生组织决定起关键作用。在这里,我们对远缘茄科植物矮牵牛()的七个/和四个/基因进行了功能表征。基于对单突变体和更高阶突变体的分析,我们报告说,矮牵牛//直系同源物与 一起编码经典的花器官身份和花终止功能,其中矮牵牛 直系同源物 起着主要作用()。相比之下,亚家族成员 和 ,在拟南芥中没有明显的直系同源物,与 一起主要决定花分生组织身份,而对花器官身份的贡献则适中。反过来,矮牵牛/亚家族的四个成员冗余地需要花序分生组织身份,并与 /基因一起在第一花轮中作为 B 功能抑制剂。总的来说,这些数据以及其他物种的研究表明,在被子植物进化过程中,/和/MADS-box 亚家族的功能多样化存在主要差异。