Waksman Institute of Microbiology, Rutgers University, Piscataway, NJ, 08854-8020, USA.
Department of Biology, Algoma University, Sault Ste. Marie, ON, P6A 2G4, Canada.
New Phytol. 2021 Jan;229(1):388-402. doi: 10.1111/nph.16837. Epub 2020 Aug 27.
All aerial epidermal cells in land plants are covered by the cuticle, an extracellular hydrophobic layer that provides protection against abiotic and biotic stresses and prevents organ fusion during development. Genetic and morphological analysis of the classic maize adherent1 (ad1) mutant was combined with genome-wide binding analysis of the maize MYB transcription factor FUSED LEAVES1 (FDL1), coupled with transcriptional profiling of fdl1 mutants. We show that AD1 encodes an epidermally-expressed 3-KETOACYL-CoA SYNTHASE (KCS) belonging to a functionally uncharacterized clade of KCS enzymes involved in cuticular wax biosynthesis. Wax analysis in ad1 mutants indicates that AD1 functions in the formation of very-long-chain wax components. We demonstrate that FDL1 directly binds to CCAACC core motifs present in AD1 regulatory regions to activate its expression. Over 2000 additional target genes of FDL1, including many involved in cuticle formation, drought response and cell wall organization, were also identified. Our results identify a regulatory module of cuticle biosynthesis in maize that is conserved across monocots and eudicots, and highlight previously undescribed factors in lipid metabolism, transport and signaling that coordinate organ development and cuticle formation.
所有陆生植物的气生表皮细胞都被角质层覆盖,这是一种细胞外疏水性层,提供对非生物和生物胁迫的保护,并防止发育过程中的器官融合。经典玉米黏附 1(ad1)突变体的遗传和形态分析与玉米 MYB 转录因子融合叶片 1(FDL1)的全基因组结合分析相结合,并对 fdl1 突变体进行了转录谱分析。我们表明 AD1 编码一种表皮表达的 3-酮酰基辅酶 A 合酶(KCS),属于参与角质层蜡生物合成的功能未明确的 KCS 酶簇。ad1 突变体中的蜡分析表明 AD1 参与了超长链蜡成分的形成。我们证明 FDL1 直接结合 AD1 调控区中存在的 CCAACC 核心基序,以激活其表达。还鉴定了 FDL1 的 2000 多个其他靶基因,包括许多参与角质层形成、干旱响应和细胞壁组织的基因。我们的研究结果确定了玉米角质层生物合成的一个调控模块,该模块在单子叶植物和双子叶植物中是保守的,并强调了脂质代谢、运输和信号转导中以前未描述的因子,这些因子协调器官发育和角质层形成。