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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >An optimized TRV-based virus-induced gene silencing protocol for Malus crabapple
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An optimized TRV-based virus-induced gene silencing protocol for Malus crabapple

机译:一种基于TRV的优化的海棠海棠病毒诱导的基因沉默方案

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摘要

Virus-induced gene silencing (VIGS) is a valuable reverse genetics tool to study gene function in a broad range of plants. As the efficiency of apple stable transformation is very low and it is still not easy to produce a large number of apple transgenic plants for most laboratories. Here, we developed an easy and effective transient transformation method of agro-inoculation for virus-induced gene silencing based on vacuum infiltration in genus of apples, the crabapple. The entire young tissue cultured crabapple plantlets were used as the plant material for infiltration, and a -90 kPa vacuum pressure and 19 A degrees C day/18 A degrees C night cultivation temperature were shown to result in highest VIGS efficiency. Infiltration with tobacco rattle virus containing a fragment of the transcription factor gene McMYB10, which regulates the synthesis of anthocyanin pigments, resulted in low levels of McMYB10 transcripts and characteristic faded red leaves. In addition, the expression of several anthocyanin biosynthetic genes was down-regulated in the transformed leaves. The results of this study indicate that the MYB10 gene represents a useful reporter gene for VIGS in crabapple and that the VIGS technique can be successfully applied to crabapple, thereby providing a platform for functional genetic studies in this and likely other Malus species.
机译:病毒诱导的基因沉默(VIGS)是一种有价值的反向遗传学工具,可用于研究多种植物的基因功能。由于苹果稳定转化的效率非常低,并且对于大多数实验室而言,生产大量苹果转基因植物仍然不容易。在这里,我们开发了一种简单有效的农业接种瞬时转化方法,用于基于苹果属海棠属的真空浸润进行病毒诱导的基因沉默。将整个组织培养的海棠幼苗全部用作渗透的植物材料,并且显示了-90 kPa真空压力和19 A白天/ 18 A夜间培养温度可实现最高的VIGS效率。含有转录因子基因McMYB10片段的烟草拨浪鼓病毒的浸润可调节花色苷色素的合成,从而导致McMYB10转录物水平低和特征性的红叶褪色。此外,几种花色苷生物合成基因的表达在转化的叶片中被下调。这项研究的结果表明,MYB10基因代表了海棠VIGS的有用报告基因,并且VIGS技术可以成功地应用于海棠,从而为该海棠和其他海棠属的功能遗传研究提供了一个平台。

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