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在可变的非生物和生物条件下,通过强大的RNA沉默介导的对李痘病毒的抗性。

Robust RNA silencing-mediated resistance to Plum pox virus under variable abiotic and biotic conditions.

作者信息

Di Nicola Elisa, Tavazza Mario, Lucioli Alessandra, Salandri Laura, Ilardi Vincenza

出版信息

Mol Plant Pathol. 2014 Oct;15(8):841-7. doi: 10.1111/mpp.12132.

Abstract

Some abiotic and biotic conditions are known to have a negative impact on post-transcriptional gene silencing (PTGS), thus representing a potential concern for the production of stable engineered virus resistance traits. However, depending on the strategy followed to achieve PTGS of the transgene, different responses to external conditions can be expected. In the present study, we utilized the Nicotiana benthamiana–Plum pox virus (PPV) pathosystem to evaluate in detail the stability of intron-hairpin(ihp)-mediated virus resistance under conditions known to adversely affect PTGS. The ihp plants grown at low or high temperatures were fully resistant to multiple PPV challenges, different PPV inoculum concentrations and even to a PPV isolate differing from the ihp construct by more than 28% at the nucleotide level. In addition, infections of ihp plants with viruses belonging to Cucumovirus, Potyvirus or Tombusvirus, all known to affect PTGS at different steps, were not able to defeat PPV resistance. Low temperatures did not affect the accumulation of transgenic small interfering RNAs (siRNAs), whereas a clear increase in the amount of siRNAs was observed during infections sustained by Cucumber mosaic virus and Potato virus Y. Our results show that the above stress factors do not represent an important concern for the production,through ihp-PTGS technology, of transgenic plants having robust virus resistance traits.

摘要

已知一些非生物和生物条件会对转录后基因沉默(PTGS)产生负面影响,因此这对稳定的工程病毒抗性性状的产生可能是一个潜在问题。然而,根据实现转基因PTGS所采用的策略,预计对外部条件会有不同的反应。在本研究中,我们利用本氏烟草-李痘病毒(PPV)病理系统,在已知会对PTGS产生不利影响的条件下,详细评估内含子发夹(ihp)介导的病毒抗性的稳定性。在低温或高温下生长的ihp植株对多次PPV攻击、不同的PPV接种浓度甚至对与ihp构建体在核苷酸水平上差异超过28%的PPV分离株均具有完全抗性。此外,用已知在不同步骤影响PTGS的黄瓜花叶病毒、马铃薯Y病毒或番茄丛矮病毒感染ihp植株,均无法克服PPV抗性。低温不影响转基因小干扰RNA(siRNA)的积累,而在黄瓜花叶病毒和马铃薯Y病毒持续感染期间,观察到siRNA的量明显增加。我们的结果表明,上述胁迫因素对于通过ihp-PTGS技术生产具有强大病毒抗性性状的转基因植物来说,并不是一个重要问题。

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