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在异源六倍体小麦中,一个 Pin 基因的 RNA 介导沉默会同时降低另一个基因的表达,并增加籽粒硬度。

The RNA-mediated silencing of one of the Pin genes in allohexaploid wheat simultaneously decreases the expression of the other, and increases grain hardness.

机构信息

Plant Transformation and Cell Engineering Department, Plant Breeding and Acclimatization Institute-National Research Institute, Radzikow, 05-870 Blonie, Poland.

出版信息

J Exp Bot. 2011 Jul;62(11):4025-36. doi: 10.1093/jxb/err103. Epub 2011 Apr 18.

DOI:10.1093/jxb/err103
PMID:21504879
Abstract

The RNAi-mediated silencing of Pina and Pinb, the two genes responsible for the grain texture of allohexaploid wheat, was induced and analysed in two wheat cultivars, Kontesa and Torka. A characterization of the two genes in non-transgenic plants revealed that Pinb carries a point mutation, designated Pinb-D1c in both cultivars. This mutation does not influence transcript abundance or protein content. Two silencing cassettes of the hpRNA type were constructed and used for stable transformation via Agrobacterium. In total, 43 transgenic lines representing the two cultivars were obtained, transformed with the silencing cassettes for Pina or for Pinb or co-transformed with both cassettes. The relative transcript levels of the two genes in the same progeny plant were found to be similar, independent of the silencing cassette used. The reduction in the Pina and Pinb transcript levels in the segregating T(1) progeny of Kontesa and Torka transformed with one of the silencing cassettes exceeded 80%. Co-transformation with the silencing cassettes for both genes resulted in a reduction of over 91% of Pina and Pinb transcripts in some segregating T(1) progeny of Kontesa. The silencing was transmitted to the T(4) kernel generation of the T(3) lines. A significant reduction or lack of both puroindoline proteins in the silenced lines correlated with an essential increase in grain hardness. The discussion covers some new insights into the function of the Pin genes, including the simultaneous silencing of both, independent of the siRNA signal.

摘要

利用 RNAi 技术沉默导致异源六倍体小麦粒质的两个基因 Pina 和 Pinb,在两个小麦品种 Kontesa 和 Torka 中进行了诱导和分析。对非转基因植株中这两个基因的特征分析表明,Pinb 在两个品种中都携带一个点突变,命名为 Pinb-D1c。该突变不影响转录丰度或蛋白质含量。构建了两种 hpRNA 类型的沉默盒,并通过农杆菌用于稳定转化。总共获得了代表两个品种的 43 个转基因系,转化了针对 Pina 或 Pinb 的沉默盒或同时转化了两个沉默盒。在同一后代植物中,两个基因的相对转录水平相似,与使用的沉默盒无关。与 Kontesa 和 Torka 的转化体中一个沉默盒转化的 T(1)分离后代中 Pina 和 Pinb 转录本的减少超过 80%。用两个基因的沉默盒共转化导致 Kontesa 的一些分离 T(1)后代中 Pina 和 Pinb 转录本的减少超过 91%。沉默被传递到 T(3)系的 T(4)核代。在沉默系中,puroindoline 蛋白的显著减少或缺乏与谷物硬度的显著增加相关。讨论涵盖了对 Pin 基因功能的一些新见解,包括在不依赖 siRNA 信号的情况下同时沉默两个基因。

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