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Retrotransposon vectors for gene delivery in plants

机译:用于植物基因传递的逆转座子载体

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Background Retrotransposons are abundant components of plant genomes, and although some plant retrotransposons have been used as insertional mutagens, these mobile genetic elements have not been widely exploited for plant genome manipulation. In vertebrates and yeast, retrotransposons and retroviruses are routinely altered to carry additional genes that are copied into complementary (c)DNA through reverse transcription. Integration of cDNA results in gene delivery; recombination of cDNA with homologous chromosomal sequences can create targeted gene modifications. Plant retrotransposon-based vectors, therefore, may provide new opportunities for plant genome engineering. Results A retrotransposon vector system was developed for gene delivery in plants based on the Tnt1 element from Nicotiana tabacum. Mini-Tnt1 transfer vectors were constructed that lack coding sequences yet retain the 5' and 3' long terminal repeats (LTRs) and adjacent cis sequences required for reverse transcription. The internal coding region of Tnt1 was replaced with a neomycin phosphotransferase gene to monitor replication by reverse transcription. Two different mini-Tnt1 s were developed: one with the native 5' LTR and the other with a chimeric 5' LTR that had the first 233 bp replaced by the CaMV 35 S promoter. After transfer into tobacco protoplasts, both vectors undergo retrotransposition using GAG and POL proteins provided in trans by endogenous Tnt1 elements. The transposition frequencies of mini-Tnt1 vectors are comparable with native Tnt1 elements, and like the native elements, insertion sites are within or near coding sequences. In this paper, we provide evidence that template switching occurs during mini-Tnt1 reverse transcription, indicating that multiple copies of Tnt1 mRNA are packaged into virus-like particles. Conclusions Our data demonstrate that mini-Tnt1 vectors can replicate efficiently in tobacco cells using GAG and POL proteins provided in trans by native Tnt1 elements. This suggests that helper Tnt1 constructs can be developed to enable a Tnt1-based two-component vector system that could be used in other plant species. Such a vector system may prove useful for gene delivery or the production of cDNA that can serve as a donor molecule for gene modification through homologous recombination.
机译:背景技术逆转录转座子是植物基因组的丰富组成部分,尽管一些植物逆转座子已被用作插入诱变剂,但这些可移动的遗传元件尚未广泛用于植物基因组操作。在脊椎动物和酵母菌中,逆转录转座子和逆转录病毒通常会进行改变,以携带通过逆转录复制到互补(c)DNA中的其他基因。 cDNA的整合导致基因的传递; cDNA与同源染色体序列的重组可产生靶向的基因修饰。因此,基于植物逆转座子的载体可能为植物基因组工程提供新的机会。结果开发了基于烟草的Tnt1元件的反转录转座子载体系统,用于植物中的基因传递。构建的Mini-Tnt1转移载体缺乏编码序列,但保留了5'和3'长的末端重复序列(LTR)和逆转录所需的相邻顺式序列。 Tnt1的内部编码区被新霉素磷酸转移酶基因取代,以通过逆转录监测复制。开发了两种不同的mini-Tnt1:一种具有天然5'LTR,另一种具有嵌合5'LTR,该嵌合5'LTR的前233 bp被CaMV 35 S启动子取代。转移到烟草原生质体中后,两个载体都使用内源性Tnt1元件反式提供的GAG和POL蛋白进行逆转座。 mini-Tnt1载体的转座频率与天然Tnt1元件相当,并且与天然元件一样,插入位点在编码序列之内或附近。在本文中,我们提供了证据表明mini-Tnt1逆转录过程中发生了模板切换,这表明Tnt1 mRNA的多个副本被包装到病毒样颗粒中。结论我们的数据表明,使用天然Tnt1元件反式提供的GAG和POL蛋白,mini-Tnt1载体可以在烟草细胞中高效复制。这表明可以开发辅助性Tnt1构建体以实现基于Tnt1的两组分载体系统,该系统可用于其他植物物种。这样的载体系统可证明可用于基因递送或cDNA的生产,所述cDNA可用作通过同源重组进行基因修饰的供体分子。

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