University of Florida, Horticultural Sciences Department, Gainesville, FL 32611, USA.
University of Florida, Environmental Horticulture Department, Gainesville, FL 32611, USA.
J Exp Bot. 2022 Apr 5;73(7):1978-1991. doi: 10.1093/jxb/erab523.
Leaf laminar growth and adaxial-abaxial boundary formation are fundamental outcomes of plant development. Boundary and laminar growth coordinate the further patterning and growth of the leaf, directing the differentiation of cell types within the top and bottom domains and promoting initiation of lateral organs along their adaxial or abaxial axis. Leaf adaxial-abaxial polarity specification and laminar outgrowth are regulated by two transcription factors, REVOLUTA (REV) and KANADI (KAN). ABA INSENSITIVE TO GROWTH 1 (ABIG1) encodes a HOMEODOMAIN-LEUCINE ZIPPER (HD-ZIP) class II transcription factor and is a direct target of the adaxial-abaxial regulators REV and KAN. To investigate the role of ABIG1 in leaf development and in the establishment of polarity, we examined the phenotypes of both gain-of-function and loss-of-function mutants. Through genetic interaction analysis with REV and KAN mutants, we determined that ABIG1 plays a role in leaf laminar growth as well as in adaxial-abaxial polarity establishment. Genetic and physical interaction assays showed that ABIG1 interacts with the transcriptional TOPLESS corepressor. This study provides new evidence that ABIG1, another HD-ZIP II, facilitates growth through the corepressor TOPLESS.
叶片层状生长和近远轴边界的形成是植物发育的基本结果。边界和层状生长协调叶片的进一步模式形成和生长,指导顶部和底部区域内的细胞类型的分化,并促进沿其近轴或远轴侧面器官的起始。叶片的近远轴极性的指定和层状生长由两个转录因子调控,REVOLUTA (REV) 和 KANADI (KAN)。ABA INSENSITIVE TO GROWTH 1 (ABIG1) 编码一个 HOMEODOMAIN-LEUCINE ZIPPER (HD-ZIP) 类 II 转录因子,是近远轴调节剂 REV 和 KAN 的直接靶标。为了研究 ABIG1 在叶片发育和极性建立中的作用,我们检查了功能获得和功能丧失突变体的表型。通过与 REV 和 KAN 突变体的遗传相互作用分析,我们确定 ABIG1 在叶片层状生长以及近远轴极性建立中起作用。遗传和物理相互作用测定表明,ABIG1 与转录 TOPLESS 共抑制子相互作用。这项研究提供了新的证据,表明另一个 HD-ZIP II 的 ABIG1 通过共抑制子 TOPLESS 促进生长。