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转基因植物中的表观遗传沉默

Epigenetic silencing in transgenic plants.

作者信息

Rajeevkumar Sarma, Anunanthini Pushpanathan, Sathishkumar Ramalingam

机构信息

Molecular Plant Biology and Biotechnology Division, Central Institute of Medicinal and Aromatic Plants Research Centre, Bangalore India.

Plant Genetic Engineering Laboratory, Department of Biotechnology, Bharathiar University, Coimbatore India.

出版信息

Front Plant Sci. 2015 Sep 10;6:693. doi: 10.3389/fpls.2015.00693. eCollection 2015.

Abstract

Epigenetic silencing is a natural phenomenon in which the expression of genes is regulated through modifications of DNA, RNA, or histone proteins. It is a mechanism for defending host genomes against the effects of transposable elements and viral infection, and acts as a modulator of expression of duplicated gene family members and as a silencer of transgenes. A major breakthrough in understanding the mechanism of epigenetic silencing was the discovery of silencing in transgenic tobacco plants due to the interaction between two homologous promoters. The molecular mechanism of epigenetic mechanism is highly complicated and it is not completely understood yet. Two different molecular routes have been proposed for this, that is, transcriptional gene silencing, which is associated with heavy methylation of promoter regions and blocks the transcription of transgenes, and post-transcriptional gene silencing (PTGS), the basic mechanism is degradation of the cytosolic mRNA of transgenes or endogenous genes. Undesired transgene silencing is of major concern in the transgenic technologies used in crop improvement. A complete understanding of this phenomenon will be very useful for transgenic applications, where silencing of specific genes is required. The current status of epigenetic silencing in transgenic technology is discussed and summarized in this mini-review.

摘要

表观遗传沉默是一种自然现象,其中基因表达通过DNA、RNA或组蛋白的修饰来调控。它是一种保护宿主基因组免受转座元件和病毒感染影响的机制,并且作为重复基因家族成员表达的调节剂以及转基因的沉默子发挥作用。理解表观遗传沉默机制的一个重大突破是在转基因烟草植物中发现由于两个同源启动子之间的相互作用而导致的沉默。表观遗传机制的分子机制非常复杂,目前尚未完全了解。对此提出了两种不同的分子途径,即转录基因沉默,它与启动子区域的高度甲基化相关并阻断转基因的转录,以及转录后基因沉默(PTGS),其基本机制是转基因或内源基因的胞质mRNA的降解。在作物改良中使用的转基因技术中,不期望的转基因沉默是主要关注的问题。对这一现象的全面理解对于需要特定基因沉默的转基因应用将非常有用。本综述讨论并总结了转基因技术中表观遗传沉默的现状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89a5/4564723/8fd62365ca8f/fpls-06-00693-g001.jpg

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