首页> 外文期刊>Non-coding RNA Research >Green pesticide: Tapping to the promising roles of plant secreted small RNAs and responses towards extracellular DNA
【24h】

Green pesticide: Tapping to the promising roles of plant secreted small RNAs and responses towards extracellular DNA

机译:绿色农药:攻丝植物分泌的小RNA的有前途的作用和对细胞外DNA的反应

获取原文
           

摘要

The diverse roles of non-coding RNA and DNA in cross-species communication is yet to be revealed. Once thought to only involve intra-specifically in regulating gene expression, the evidence that these genetic materials can also modulate gene expression between species that belong to different kingdoms is accumulating. Plants send small RNAs to the pathogen or parasite when they are being attacked, targeting essential mRNAs for infection or parasitism of the hosts. However, the same survival mechanism is also deployed by the pathogen or parasite to destabilize plant immune responses. In plants, it is suggested that exposure to extracellular self-DNA impedes growth, while to extracellular non-self-DNA induces the modulation of reactive oxygen species, expression of resistance related genes, epigenetic mechanism, or suppression of disease severity. Exploring the potential of secreted RNA and extracellular DNA as a green pesticide could be a promising alternative if we are to provide food for the future global population without further damaging the environment. Hence, some studies on plant secreted RNA and responses towards extracellular DNA are discussed in this review. The precise mode of action of entry and the following cascade of signaling once the plant cell is exposed to secreted RNA or extracellular DNA could be an interesting topic for future research.
机译:非编码RNA和DNA在交叉物种通信中的不同作用尚未揭示。一旦认为只涉及局部内容调节基因表达,这些遗传物质也可以调节属于不同王国的物种之间的基因表达的证据。植物在受到攻击时向病原体或寄生虫发送小RNA,靶向宿主的感染或寄生的必要mRNA。然而,同样的存活机制也由病原体或寄生虫展开以使植物免疫应答稳定。在植物中,建议暴露于细胞外自我DNA阻碍生长,而细胞外非自我DNA诱导反应性氧物种的调节,抗性相关基因的表达,表述机制或抑制疾病严重程度。如果我们要为未来的全球人群提供食物,则探索分泌的RNA和细胞外DNA作为绿色农药的潜力可能是一个有希望的替代方案,而无需进一步损害环境。因此,在本综述中讨论了对植物分泌的RNA的一些研究和对细胞外DNA的反应。一旦植物细胞暴露于分泌的RNA或细胞外DNA,就进入的精确动作和以下信号传导的级联可能是一个有趣的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号