State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, Nanxincun 20, Xiangshan, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
J Exp Bot. 2021 Oct 26;72(20):6882-6903. doi: 10.1093/jxb/erab309.
Floral B-function MADS-box genes, such as GLOBOSA (GLO), function in corolla and stamen organ identity specification. The functions of these genes outside these floral whorls are rarely reported. DOLL1 is a GLO gene controlling corolla and androecium organ identity. In this study we found that, in Physalis floridana double-layered-lantern 1 (doll1) mutant pollinated with wild-type pollen, fruit set was extremely low, indicating that doll1 females are dysfunctional. Stigma and style structure, stigma receptivity, pollen tube guidance, and embryo sac development were also impaired in doll1. P. floridana CRABS CLAW (PFCRC), predominantly expressed in carpels, was repressed in doll1 native carpels. Loss-of-function of PFCRC altered carpel meristem determinacy, carpel closure, and ovule number, and the resultant 'pistil' consisted of multiple spirally-arranged dorsiventral carpels occasionally with 1-2 naked ovules on the margin and trichomes at each mutated carpel tip, implying an alteration of carpel organ identity. Regulatory and genetic interactions between B-class MADS-box genes and PFCRC were revealed in a context-dependent manner in floral development. Our work reveals a new role for the B-function genes in carpel and ovule development via regulating PFCRC, providing a new understanding of genetic regulatory networks between MADS-domain and CRC transcription factors in mediating carpel organ specification, functionality, and origin.
花器官 B 功能 MADS-box 基因,如 GLOBOSA (GLO),在花瓣和雄蕊器官身份特化中起作用。这些基因在花轮之外的功能很少有报道。DOLL1 是一个控制花瓣和雄蕊器官身份的 GLO 基因。在这项研究中,我们发现,在 Physalis floridana 双层灯笼 1(doll1)突变体中用野生型花粉授粉,结实率极低,表明 doll1 雌性是功能失调的。柱头和花柱结构、柱头可接受性、花粉管导向和胚囊发育也在 doll1 中受到损害。Physalis floridana CRABS CLAW (PFCRC),主要在心皮中表达,在 doll1 的天然心皮中被抑制。PFCRC 的功能丧失改变了心皮分生组织的确定性、心皮闭合和胚珠数量,产生的“雌蕊”由多个螺旋排列的背腹心皮组成,偶尔在心皮尖端的每个突变心皮上有 1-2 个裸露的胚珠和毛状体,暗示心皮器官身份的改变。B 类 MADS-box 基因和 PFCRC 之间的调控和遗传相互作用在花发育中以依赖上下文的方式显现出来。我们的工作通过调节 PFCRC,揭示了 B 功能基因在心皮和胚珠发育中的新作用,为 MADS 结构域和 CRC 转录因子在介导心皮器官特化、功能和起源方面的遗传调控网络提供了新的认识。