植物中的DNA甲基化

A. Altaf, A. Zada
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引用次数: 0

摘要

共同DNA甲基化控制基因表达并保持基因组完整性。甲基化异常会导致植物发育异常。多种酶进行从头甲基化、甲基化维持和活性去甲基化在特定的DNA甲基化状态下达到高潮。新一代测序技术的进步和数据分析的计算方法。以模式植物拟南芥(Arabidopsis thaliana)为研究对象,研究DNA甲基化模式、表观遗传和植物甲基化。植物DNA甲基化研究揭示了甲基化模式并描述了植物组织中的变化。确定不同植物组织中DNA甲基化的动力学也是一个新的领域。然而,了解调控和发展决策并利用植物模式物种开发新的经济作物至关重要;它们更能抵抗压力,产量也更高。有几种方法可用于评估DNA甲基化数据。几种技术的性能在拟南芥中进行了评估,拟南芥的基因组比六倍体面包小麦小。关键词:DNA甲基化;植物;工艺
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DNA METHYLATION IN PLANTS
Common DNA methylation controls gene expression and preserves genomic integrity. Mal methylation can cause developmental abnormalities in the plants. Multiple enzymes carrying out de novo methylation, methylation maintenance, and active demethylation culminate in a particular DNA methylation state. Next-generation sequencing advances and computational methods to analyze the data. The model plant Arabidopsis thaliana was used to study DNA methylation patterns, epigenetic inheritance, and plant methylation. Plant DNA methylation research reveals methylation patterns and describing variations in plant tissues. Determining the kinetics of DNA methylation in diverse plant tissues is also a new field. However, it is vital to understand regulatory and developmental decisions and use plant model species to develop new commercial crops; that are more resistant to stress and yield more. There are several methods available for assessing DNA methylation data. The performance of several techniques is assessed in A. thaliana, which has a smaller genome than hexaploid bread wheat. Keywords: DNA methylation, plants, process, use and benefits
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