Sugawara Teppei, Trifonova Ekaterina A, Kochetov Alex V, Kanayama Yoshinori
Graduate School of Agricultural Science, Tohoku University, Sendai, 981-8555, Japan.
Institute of Cytology and Genetics, SB RAS, Novosibirsk, 630090, Russia.
BMC Plant Biol. 2016 Nov 16;16(Suppl 3):246. doi: 10.1186/s12870-016-0928-8.
The apoplast plays an important role in plant defense against pathogens. Some extracellular PR-4 proteins possess ribonuclease activity and may directly inhibit the growth of pathogenic fungi. It is likely that extracellular RNases can also protect plants against some viruses with RNA genomes. However, many plant RNases are multifunctional and the direct link between their ribonucleolytic activity and antiviral defense still needs to be clarified. In this study, we evaluated the resistance of Nicotiana tabacum plants expressing a non-plant single-strand-specific extracellular RNase against Cucumber mosaic virus.
Severe mosaic symptoms and shrinkage were observed in the control non-transgenic plants 10 days after inoculation with Cucumber mosaic virus (CMV), whereas such disease symptoms were suppressed in the transgenic plants expressing the RNase gene. In a Western blot analysis, viral proliferation was observed in the uninoculated upper leaves of control plants, whereas virus levels were very low in those of transgenic plants. These results suggest that resistance against CMV was increased by the expression of the heterologous RNase gene.
We have previously shown that tobacco plants expressing heterologous RNases are characterized by high resistance to Tobacco mosaic virus. In this study, we demonstrated that elevated levels of extracellular RNase activity resulted in increased resistance to a virus with a different genome organization and life cycle. Thus, we conclude that the pathogen-induced expression of plant apoplastic RNases may increase non-specific resistance against viruses with RNA genomes.
质外体在植物抵御病原体过程中发挥重要作用。一些细胞外PR - 4蛋白具有核糖核酸酶活性,可能直接抑制致病真菌的生长。细胞外核糖核酸酶也可能保护植物抵御一些具有RNA基因组的病毒。然而,许多植物核糖核酸酶具有多种功能,其核糖核酸水解活性与抗病毒防御之间的直接联系仍有待阐明。在本研究中,我们评估了表达非植物单链特异性细胞外核糖核酸酶的烟草植株对黄瓜花叶病毒的抗性。
接种黄瓜花叶病毒(CMV)10天后,对照非转基因植株出现严重花叶症状和萎缩,而在表达核糖核酸酶基因的转基因植株中,此类病害症状受到抑制。在蛋白质免疫印迹分析中,对照植株未接种的上部叶片中观察到病毒增殖,而转基因植株的病毒水平非常低。这些结果表明,异源核糖核酸酶基因的表达增强了对CMV的抗性。
我们之前已经表明,表达异源核糖核酸酶的烟草植株对烟草花叶病毒具有高抗性。在本研究中,我们证明细胞外核糖核酸酶活性水平的提高导致对具有不同基因组结构和生命周期的病毒的抗性增强。因此,我们得出结论,病原体诱导的植物质外体核糖核酸酶表达可能增强对具有RNA基因组的病毒的非特异性抗性。