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评估RNA干扰在玉米功能基因组学中的效率。

Assessing the efficiency of RNA interference for maize functional genomics.

作者信息

McGinnis Karen, Murphy Nick, Carlson Alvar R, Akula Anisha, Akula Chakradhar, Basinger Heather, Carlson Michelle, Hermanson Peter, Kovacevic Nives, McGill M Annie, Seshadri Vishwas, Yoyokie Jessica, Cone Karen, Kaeppler Heidi F, Kaeppler Shawn M, Springer Nathan M

机构信息

Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Plant Physiol. 2007 Apr;143(4):1441-51. doi: 10.1104/pp.106.094334. Epub 2007 Feb 16.

Abstract

A large-scale functional genomics project was initiated to study the function of chromatin-related genes in maize (Zea mays). Transgenic lines containing short gene segments in inverted repeat orientation designed to reduce expression of target genes by RNA interference (RNAi) were isolated, propagated, and analyzed in a variety of assays. Analysis of the selectable marker expression over multiple generations revealed that most transgenes were transmitted faithfully, whereas some displayed reduced transmission or transgene silencing. A range of target-gene silencing efficiencies, from nondetectable silencing to nearly complete silencing, was revealed by semiquantitative reverse transcription-PCR analysis of transcript abundance for the target gene. In some cases, the RNAi construct was able to cause a reduction in the steady-state RNA levels of not only the target gene, but also another closely related gene. Correlation of silencing efficiency with expression level of the target gene and sequence features of the inverted repeat did not reveal any factors capable of predicting the silencing success of a particular RNAi-inducing construct. The frequencies of success of this large-scale project in maize, together with parameters for optimization at various steps, should serve as a useful framework for designing future RNAi-based functional genomics projects in crop plants.

摘要

启动了一个大规模功能基因组学项目,以研究玉米(Zea mays)中与染色质相关基因的功能。分离出含有反向重复序列短基因片段的转基因系,这些片段旨在通过RNA干扰(RNAi)降低靶基因的表达,并进行繁殖,然后通过多种试验进行分析。对多代可选择标记表达的分析表明,大多数转基因能够稳定遗传,而有些则表现出遗传传递率降低或转基因沉默。通过对靶基因转录本丰度进行半定量逆转录PCR分析,发现了一系列靶基因沉默效率,从无法检测到的沉默到几乎完全沉默。在某些情况下,RNAi构建体不仅能够使靶基因的稳态RNA水平降低,还能使另一个密切相关的基因的稳态RNA水平降低。沉默效率与靶基因表达水平以及反向重复序列的序列特征之间的相关性分析,未发现任何能够预测特定RNAi诱导构建体沉默成功与否的因素。该玉米大规模项目的成功频率以及各个步骤的优化参数,应为设计未来基于RNAi的作物功能基因组学项目提供有用的框架。

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