Suppr超能文献

人工反式作用小干扰RNA:一种用于植物生物学研究和作物改良的工具。

Artificial trans-acting small interfering RNA: a tool for plant biology study and crop improvements.

作者信息

Zhang Zhanyuan J

机构信息

Plant Transformation Core Facility, Division of Plant Sciences, University of Missouri, 1-33 Agriculture Building, Columbia, MO, 65211, USA,

出版信息

Planta. 2014 Jun;239(6):1139-46. doi: 10.1007/s00425-014-2054-x. Epub 2014 Mar 19.

Abstract

Completion of whole genome sequencing in many plant species including economically important crop species not only opens up new opportunities but also imposes challenges for plant science research community. Functional validation and utilization of these enormous DNA sequences necessitate new or improved tools with high accuracy and efficiency. Of various tools, small RNA-mediated gene silencing platform plays an important and unique role in functional verification of plant genes and trait improvements. Artificial trans-acting small interfering RNA (atasiRNA) has emerged as a potent and specific gene silencing platform which overcomes major limitations of other small RNA silencing approaches including double-stranded RNA, artificial microRNA (amiRNA), and microRNA-induced gene silencing. To best utilize atasiRNA platform, it is essential to be able to test candidate atasiRNAs efficiently through either in vivo or in vitro validation approach. Very recently, a breakthrough has been made in developing a new method for in vitro screen of amiRNA candidates, named "epitope-tagged protein-based amiRNA screens". Such a screen can be readily employed to validate atasiRNA candidates and thus accelerate the deployment of atasiRNA technology. Therefore, atasiRNA as an emerging tool shall accelerate both plant biology study and crop genetic improvements including trait stacking.

摘要

包括经济上重要的作物物种在内的许多植物物种全基因组测序的完成,不仅为植物科学研究界带来了新机遇,也带来了挑战。对这些海量DNA序列进行功能验证和利用,需要高精度和高效率的新工具或改进工具。在各种工具中,小RNA介导的基因沉默平台在植物基因功能验证和性状改良中发挥着重要且独特的作用。人工反式作用小干扰RNA(atasiRNA)已成为一种强大且特异的基因沉默平台,它克服了其他小RNA沉默方法(包括双链RNA、人工微小RNA(amiRNA)和微小RNA诱导的基因沉默)的主要局限性。为了充分利用atasiRNA平台,必须能够通过体内或体外验证方法高效地测试候选atasiRNA。最近,在开发一种新的体外筛选amiRNA候选物的方法(称为“基于表位标签蛋白的amiRNA筛选”)方面取得了突破。这样的筛选可以很容易地用于验证候选atasiRNA,从而加速atasiRNA技术的应用。因此,atasiRNA作为一种新兴工具,将加速植物生物学研究和作物遗传改良,包括性状叠加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验