State key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, PR China; Institute of Pure and Applied Biology, Bahauddin Zakariya University, Multan 60800, Pakistan; Jamil-ur-Rahman Center for Genome Research, International Center for Chemical and Biological Sciences, University of Karachi, Karachi 75270, Pakistan.
Institute of Pure and Applied Biology, Bahauddin Zakariya University, Multan 60800, Pakistan.
Gene. 2019 Nov 15;718:144018. doi: 10.1016/j.gene.2019.144018. Epub 2019 Aug 24.
Cytosine DNA methylation (5mC) is an epigenetic mark that regulates gene expression in plant responses to environmental stresses. Zinc-finger protein (ZFP) is the largest family of DNA-binding transcription factors that also plays an essential role in eukaryote. In plant we have already identified and characterized different useful ZFP-genes. While, the main objective of this research was to observe and identify more targeted stress responsive genes of ZFPs epigenetically throughout genome in rice for the first time. A comprehensive correlation analysis was performed through methylated DNA immunoprecipitation (MeDIP)-chip hybridization in rice under salt and osmotic stresses. High salinity and drought are two major abiotic hazards that are destroying the crop world-wide. As a result, Through-out genome 14 unique stress responsive transcription factors of ZFP-genes with varying level of methylation and expression under two conditions (control vs. stress) were isolated. All the identified genes were confirmed from different databases for their specific structure, cis-regulatory elements, phylogenetic analysis, and synteny analysis. Moreover, the tissue-specific expression patterns, and expression under abiotic and phytohormones stresses were also investigated. Phylogenetically all the genes were divided into 6 distinct subgroups with Arabidopsis and orthologous proteins were find-out through synteny analysis. Available RNA-seq data in response to various phytohormones provided hormone inducible gene expression profile. Through Reverse Transcriptase qPCR (RT-qPCR) analysis tissue-specific expression in shoot and root over various time points against salt and osmotic stresses exhibited the diverse expression patterns of identified genes. Overall, the present study providing a foundation for in-depth characterization of identified genes and to further understand the epigenetic role of DNA methylation for genes expression and environmental stresses regulation in higher plant.
胞嘧啶 DNA 甲基化 (5mC) 是一种表观遗传标记,可调节植物对环境胁迫的基因表达。锌指蛋白 (ZFP) 是最大的 DNA 结合转录因子家族之一,在真核生物中也发挥着重要作用。在植物中,我们已经鉴定和表征了不同的有用的 ZFP 基因。而本研究的主要目的是首次在水稻中观察和鉴定更多靶向的受 ZFP 基因调控的与应激相关的基因,这些基因在全基因组范围内受到表观遗传调控。通过在盐和渗透胁迫下进行甲基化 DNA 免疫沉淀 (MeDIP)-芯片杂交,对水稻中的 ZFP 基因进行了全面的相关性分析。高盐和干旱是两种主要的非生物胁迫,正在破坏全球的作物。因此,通过全基因组分析,在两种条件(对照与胁迫)下,共分离出 14 个具有不同甲基化和表达水平的独特的应激响应转录因子 ZFP 基因。所有鉴定出的基因都通过不同的数据库进行了特异性结构、顺式调控元件、系统发育分析和基因同线性分析的验证。此外,还研究了组织特异性表达模式以及在非生物和植物激素胁迫下的表达情况。系统发育分析表明,所有基因分为 6 个不同的亚群,通过基因同线性分析找到了拟南芥和同源蛋白。根据各种植物激素的可用 RNA-seq 数据,提供了激素诱导基因表达谱。通过逆转录 qPCR (RT-qPCR) 分析,在不同时间点针对盐和渗透胁迫在茎和根中的组织特异性表达,显示了鉴定基因的不同表达模式。总的来说,本研究为深入研究鉴定基因提供了基础,并进一步了解 DNA 甲基化在高等植物中对基因表达和环境胁迫调控的表观遗传作用。