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探索表观转录组学在作物改良和环境胁迫耐受方面的应用。

Exploring epitranscriptomics for crop improvement and environmental stress tolerance.

机构信息

College of Agriculture, Jilin Agricultural Science and Technology University, Jilin, 132101, PR China.

Department of Biotechnology, Modern College of Arts, Science and Commerce, Savitribai Phule Pune University, Ganeshkhind, Pune, 411016, India.

出版信息

Plant Physiol Biochem. 2022 Jul 15;183:56-71. doi: 10.1016/j.plaphy.2022.04.031. Epub 2022 May 7.

Abstract

Climate change and stressful environmental conditions severely hamper crop growth, development and yield. Plants respond to environmental perturbations, through their plasticity provided by key-genes, governed at post-/transcriptional levels. Gene-regulation in plants is a multilevel process controlled by diverse cellular entities that includes transcription factors (TF), epigenetic regulators and non-coding RNAs beside others. There are successful studies confirming the role of epigenetic modifications (DNA-methylation/histone-modifications) in gene expression. Recent years have witnessed emergence of a highly specialized field the "Epitranscriptomics". Epitranscriptomics deals with investigating post-transcriptional RNA chemical-modifications present across the life forms that change structural, functional and biological characters of RNA. However, deeper insights on of epitranscriptomic modifications, with >140 types known so far, are to be understood fully. Researchers have identified epitranscriptome marks (writers, erasers and readers) and mapped the site-specific RNA modifications (m6A, mC, 3' uridylation, etc.) responsible for fine-tuning gene expression in plants. Simultaneous advancement in sequencing platforms, upgraded bioinformatic tools and pipelines along with conventional labelled techniques have further given a statistical picture of these epitranscriptomic modifications leading to their potential applicability in crop improvement and developing climate-smart crops. We present herein the insights on epitranscriptomic machinery in plants and how epitranscriptome and epitranscriptomic modifications underlying plant growth, development and environmental stress responses/adaptations. Third-generation sequencing technology, advanced bioinformatics tools and databases being used in plant epitranscriptomics are also discussed. Emphasis is given on potential exploration of epitranscriptome engineering for crop-improvement and developing environmental stress tolerant plants covering current status, challenges and future directions.

摘要

气候变化和紧张的环境条件严重阻碍了作物的生长、发育和产量。植物通过其关键基因提供的可塑性来应对环境干扰,这些可塑性受转录后水平的调控。植物中的基因调控是一个多层次的过程,由多种细胞实体控制,包括转录因子(TF)、表观遗传调节剂和非编码 RNA 等。有成功的研究证实了表观遗传修饰(DNA 甲基化/组蛋白修饰)在基因表达中的作用。近年来,出现了一个高度专业化的领域,即“表观转录组学”。表观转录组学研究的是存在于生命形式中的转录后 RNA 化学修饰,这些修饰改变了 RNA 的结构、功能和生物学特性。然而,对于目前已知的 140 多种表观转录组修饰,还需要更深入的了解。研究人员已经确定了表观转录组标记(writer、eraser 和 reader),并绘制了负责微调植物基因表达的特定于位点的 RNA 修饰(m6A、mC、3'尿苷酸化等)。同时,测序平台、升级的生物信息学工具和管道以及传统标记技术的同步进步,进一步描绘了这些表观转录组修饰的统计图景,为其在作物改良和开发气候智能作物中的潜在应用提供了依据。本文介绍了植物中表观转录组机制的研究进展,以及表观转录组和表观转录组修饰如何影响植物的生长、发育以及对环境胁迫的响应和适应。还讨论了在植物表观转录组学中使用的第三代测序技术、先进的生物信息学工具和数据库。重点探讨了表观转录组工程在作物改良和开发环境胁迫耐受植物方面的潜在探索,涵盖了当前的现状、挑战和未来的方向。

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