Department of Plant Pathology, Kansas State University, Manhattan, KS 66506, USA.
Department of Plant Pathology, University of Florida, Gainesville, FL 32611, USA.
Plant Cell. 2023 Aug 2;35(8):2736-2749. doi: 10.1093/plcell/koad155.
Understanding gene regulatory networks is essential to elucidate developmental processes and environmental responses. Here, we studied regulation of a maize (Zea mays) transcription factor gene using designer transcription activator-like effectors (dTALes), which are synthetic Type III TALes of the bacterial genus Xanthomonas and serve as inducers of disease susceptibility gene transcription in host cells. The maize pathogen Xanthomonas vasicola pv. vasculorum was used to introduce 2 independent dTALes into maize cells to induced expression of the gene glossy3 (gl3), which encodes a MYB transcription factor involved in biosynthesis of cuticular wax. RNA-seq analysis of leaf samples identified, in addition to gl3, 146 genes altered in expression by the 2 dTALes. Nine of the 10 genes known to be involved in cuticular wax biosynthesis were upregulated by at least 1 of the 2 dTALes. A gene previously unknown to be associated with gl3, Zm00001d017418, which encodes aldehyde dehydrogenase, was also expressed in a dTALe-dependent manner. A chemically induced mutant and a CRISPR-Cas9 mutant of Zm00001d017418 both exhibited glossy leaf phenotypes, indicating that Zm00001d017418 is involved in biosynthesis of cuticular waxes. Bacterial protein delivery of dTALes proved to be a straightforward and practical approach for the analysis and discovery of pathway-specific genes in maize.
理解基因调控网络对于阐明发育过程和环境响应至关重要。在这里,我们使用设计的转录激活子样效应物(dTALes)研究了玉米(Zea mays)转录因子基因的调控,dTALes 是黄单胞菌属细菌的合成型 III TALes,可作为宿主细胞中易感病基因转录的诱导物。玉米病原体黄单胞菌 pv.vasiculorum 被用于将 2 个独立的 dTALes 引入玉米细胞中,诱导编码参与角质层蜡生物合成的 MYB 转录因子的基因 glossy3(gl3)的表达。叶片样本的 RNA-seq 分析除了 gl3 之外,还鉴定出 146 个基因的表达受到 2 个 dTALes 的改变。已知参与角质层蜡生物合成的 10 个基因中有 9 个至少被 2 个 dTALes 之一上调。一个先前与 gl3 相关的基因 Zm00001d017418,编码醛脱氢酶,也以 dTALe 依赖的方式表达。Zm00001d017418 的化学诱导突变体和 CRISPR-Cas9 突变体都表现出光滑叶表型,表明 Zm00001d017418 参与角质层蜡的生物合成。dTALes 的细菌蛋白传递被证明是一种简单实用的方法,可用于分析和发现玉米中特定途径的基因。