Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
Department of Plant Pathology, Kansas State University, Manhattan, KS, 66506, USA.
Plant J. 2019 Feb;97(3):530-542. doi: 10.1111/tpj.14140. Epub 2018 Dec 7.
Epicuticular waxes provide a hydrophobic barrier that protects land plants from environmental stresses. To elucidate the molecular functions of maize glossy mutants that reduce the accumulation of epicuticular waxes, eight non-allelic glossy mutants were subjected to transcriptomic comparisons with their respective wild-type siblings. Transcriptomic comparisons identified 2279 differentially expressed (DE) genes. Other glossy genes tended to be down-regulated in glossy mutants; by contrast stress-responsive pathways were induced in mutants. Gene co-expression network (GCN) analysis found that glossy genes were clustered, suggestive of co-regulation. Genes that potentially regulate the accumulation of glossy gene transcripts were identified via a pathway level co-expression analysis. Expression data from diverse organs showed that maize glossy genes are generally active in young leaves, silks, and tassels, while largely inactive in seeds and roots. Through reverse genetics, a DE gene homologous to Arabidopsis CER8 and co-expressed with known glossy genes was confirmed to participate in epicuticular wax accumulation. GCN data-informed forward genetics approach enabled cloning of the gl14 gene, which encodes a putative membrane-associated protein. Our results deepen understanding of the transcriptional regulation of the genes involved in the accumulation of epicuticular wax, and provide two maize glossy genes and a number of candidate genes for further characterization.
表皮蜡提供了一个疏水屏障,保护陆地植物免受环境压力。为了阐明减少表皮蜡积累的玉米glossy 突变体的分子功能,对 8 个非同等位的 glossy 突变体与其相应的野生型进行了转录组比较。转录组比较鉴定出 2279 个差异表达(DE)基因。其他 glossy 基因在 glossy 突变体中往往下调;相比之下,胁迫响应途径在突变体中被诱导。基因共表达网络(GCN)分析发现 glossy 基因聚类,提示共调控。通过途径水平共表达分析,鉴定了可能调节 glossy 基因转录物积累的基因。来自不同器官的表达数据表明,玉米 glossy 基因通常在幼叶、花丝和雄穗中活跃,而在种子和根中基本不活跃。通过反向遗传学,证实了一个与拟南芥 CER8 同源且与已知 glossy 基因共表达的 DE 基因参与表皮蜡的积累。受 GCN 数据启发的正向遗传学方法克隆了 gl14 基因,该基因编码一个假定的膜相关蛋白。我们的研究结果加深了对参与表皮蜡积累的基因转录调控的理解,并提供了两个玉米 glossy 基因和一些候选基因进行进一步表征。