首页> 外文期刊>BMC Plant Biology >HC-Pro silencing suppressor significantly alters the gene expression profile in tobacco leaves and flowers
【24h】

HC-Pro silencing suppressor significantly alters the gene expression profile in tobacco leaves and flowers

机译:HC-Pro沉默抑制剂可显着改变烟草叶片和花朵中的基因表达谱

获取原文
           

摘要

Background RNA silencing is used in plants as a major defence mechanism against invasive nucleic acids, such as viruses. Accordingly, plant viruses have evolved to produce counter defensive RNA-silencing suppressors (RSSs). These factors interfere in various ways with the RNA silencing machinery in cells, and thereby disturb the microRNA (miRNA) mediated endogene regulation and induce developmental and morphological changes in plants. In this study we have explored these effects using previously characterized transgenic tobacco plants which constitutively express (under CaMV 35S promoter) the helper component-proteinase (HC-Pro) derived from a potyviral genome. The transcript levels of leaves and flowers of these plants were analysed using microarray techniques (Tobacco 4 × 44 k, Agilent). Results Over expression of HC-Pro RSS induced clear phenotypic changes both in growth rate and in leaf and flower morphology of the tobacco plants. The expression of 748 and 332 genes was significantly changed in the leaves and flowers, respectively, in the HC-Pro expressing transgenic plants. Interestingly, these transcriptome alterations in the HC-Pro expressing tobacco plants were similar as those previously detected in plants infected with ssRNA-viruses. Particularly, many defense-related and hormone-responsive genes (e.g. ethylene responsive transcription factor 1, ERF1) were differentially regulated in these plants. Also the expression of several stress-related genes, and genes related to cell wall modifications, protein processing, transcriptional regulation and photosynthesis were strongly altered. Moreover, genes regulating circadian cycle and flowering time were significantly altered, which may have induced a late flowering phenotype in HC-Pro expressing plants. The results also suggest that photosynthetic oxygen evolution, sugar metabolism and energy levels were significantly changed in these transgenic plants. Transcript levels of S-adenosyl-L-methionine (SAM) were also decreased in these plants, apparently leading to decreased transmethylation capacity. The proteome analysis using 2D-PAGE indicated significantly altered proteome profile, which may have been both due to altered transcript levels, decreased translation, and increased proteosomal/protease activity. Conclusion Expression of the HC-Pro RSS mimics transcriptional changes previously shown to occur in plants infected with intact viruses (e.g. Tobacco etch virus, TEV). The results indicate that the HC-Pro RSS contributes a significant part of virus-plant interactions by changing the levels of multiple cellular RNAs and proteins.
机译:背景技术RNA沉默在植物中用作对入侵性核酸(例如病毒)的主要防御机制。因此,植物病毒已经进化为产生反防御RNA沉默抑制剂(RSS)。这些因素以各种方式干扰细胞中的RNA沉默机制,从而干扰microRNA(miRNA)介导的内源基因调控,并诱导植物的发育和形态变化。在这项研究中,我们已经使用先前表征的转基因烟草植物(在CaMV 35S启动子下)组成性表达了一种来自盆病毒基因组的辅助成分蛋白酶(HC-Pro),探索了这些作用。使用微阵列技术(烟草4×44 k,安捷伦)分析了这些植物的叶和花的转录水平。结果HC-Pro RSS的过度表达诱导了烟草植物的生长速率以及叶片和花朵形态的明显表型变化。在表达HC-Pro的转基因植物中,叶子和花朵中748和332基因的表达发生了显着变化。有趣的是,表达HC-Pro的烟草植物中的这些转录组改变与先前在被ssRNA-病毒感染的植物中检测到的相似。特别地,在这些植物中,许多防御相关和激素反应性基因(例如,乙烯反应性转录因子1,ERF1)受到差异调节。同样,一些与压力有关的基因的表达,以及与细胞壁修饰,蛋白质加工,转录调控和光合作用有关的基因都发生了强烈变化。此外,调节昼夜节律周期和开花时间的基因发生了显着改变,这可能已在表达HC-Pro的植物中诱导了晚期开花表型。结果还表明,在这些转基因植物中光合作用的氧气释放,糖代谢和能量水平发生了显着变化。在这些植物中,S-腺苷-L-甲硫氨酸(SAM)的转录水平也降低了,显然导致甲基化能力下降。使用2D-PAGE进行的蛋白质组分析表明蛋白质组图谱发生了显着变化,这可能是由于转录水平变化,翻译减少和蛋白质组/蛋白酶活性增加所致。结论HC-Pro RSS的表达模仿了先前被完整病毒(例如,烟草蚀刻病毒,TEV)感染的植物中发生的转录变化。结果表明,HC-Pro RSS通过改变多种细胞RNA和蛋白质的水平,在病毒-植物相互作用中发挥了重要作用。

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