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Artificial TALE as a Convenient Protein Platform for Engineering Broad-Spectrum Resistance to Begomoviruses

机译:人工TALE作为方便蛋白平台,可用于工程化对寄主病毒的广谱抗药性

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Transcription activator–like effectors (TALEs) are a class of sequence-specific DNA-binding proteins that utilize a simple and predictable modality to recognize target DNA. This unique characteristic allows for the rapid assembly of artificial TALEs, with high DNA binding specificity, to any target DNA sequences for the creation of customizable sequence-specific nucleases used in genome engineering. Here, we report the use of an artificial TALE protein as a convenient platform for designing broad-spectrum resistance to begomoviruses, one of the most destructive plant virus groups, which cause tremendous losses worldwide. We showed that artificial TALEs, which were assembled based on conserved sequence motifs within begomovirus genomes, could confer partial resistance in transgenic Nicotiana benthamiana to all three begomoviruses tested. Furthermore, the resistance was maintained even in the presence of their betasatellite. These results shed new light on the development of broad-spectrum resistance against DNA viruses, such as begomoviruses.
机译:转录激活因子样效应物(TALE)是一类序列特异性DNA结合蛋白,利用简单且可预测的方式识别靶DNA。这种独特的特性可以将具有高DNA结合特异性的人工TALE快速组装到任何目标DNA序列,以创建用于基因组工程的可定制序列特异性核酸酶。在这里,我们报道了使用人工TALE蛋白作为便捷的平台来设计对Begomoviruses的广谱抗性的方法,Begomoviruses是最具破坏性的植物病毒之一,在全球范围内造成巨大损失。我们显示,基于T.begomovirus基因组中保守序列基序组装的人工TALE,可以赋予转基因烟草本生烟草对所有三种测试的Begomovirus病毒部分抗性。此外,即使存在其β卫星,也能保持抵抗力。这些结果为广谱抗DNA病毒(如begomoviruses)的发展提供了新的思路。

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