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首页> 外文期刊>VirusDisease >Inducible expression of magnesium protoporphyrin chelatase subunit I (CHLI)-amiRNA provides insights into cucumber mosaic virus Y satellite RNA-induced chlorosis symptoms
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Inducible expression of magnesium protoporphyrin chelatase subunit I (CHLI)-amiRNA provides insights into cucumber mosaic virus Y satellite RNA-induced chlorosis symptoms

机译:镁原卟啉螯合酶亚基I(CHLI)-amiRNA的诱导表达提供了对黄瓜花叶病毒Y卫星RNA诱导的萎黄症状的见解

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Recent studies with Y satellite RNA (Y-sat) of cucumber mosaic virus have demonstrated that Y-sat modifies the disease symptoms in specific host plants through the silencing of the magnesium protoporphyrin chelatase I subunit (CHLI), which is directed by the Y-sat derived siRNA. Along with the development of peculiar yellow phenotypes, a drastic decrease in CHLI-transcripts and a higher accumulation of Y-sat derived siRNA were observed. To investigate the molecular mechanisms underlying the Y-sat—induced chlorosis, especially whether or not the reduced expression of CHLI causes the chlorosis simply through the reduced production of chlorophyll or it triggers some other mechanisms leading to the chlorosis, we have established a new experimental system with an inducible silencing mechanism. This system involves the expression of artificial microRNAs targeting of Nicotiana tabacum CHLI gene under the control of chemically inducible promoter. The CHLI mRNA levels and total chlorophyll content decreased significantly in 2?days, enabling us to analyze early events in induced chlorosis and temporary changes therein. This study revealed that the silencing of CHLI did not only result in the decreased chlorophyll content but also lead to the downregulation of chloroplast and photosynthesis-related genes expression and the upregulation of defense-related genes. Based on these results, we propose that the reduced expression of CHLI could activate unidentified signaling pathways that lead plants to chlorosis.
机译:最近对黄瓜花叶病毒的Y卫星RNA(Y-sat)进行的研究表明,Y-sat通过沉默原卟啉镁螯合酶I亚基(CHLI)来修饰特定宿主植物的病害症状。 sat衍生的siRNA。伴随着独特的黄色表型的发展,观察到CHLI转录物急剧下降,Y-sat衍生的siRNA积累更高。为了研究Y卫星诱导的萎黄病的潜在分子机制,特别是CHLI的表达降低是否仅通过减少叶绿素的产量而导致了萎黄病,还是引发了其他导致萎黄病的机制,我们建立了一个新的实验具有诱导沉默机制的系统。该系统涉及在化学诱导型启动子的控制下表达靶向烟草CHLI基因的人工微小RNA。在2天之内,CHLI mRNA水平和总叶绿素含量显着下降,这使我们能够分析诱导性萎黄病的早期事件及其中的暂时变化。这项研究揭示了CHLI的沉默不仅导致叶绿素含量降低,而且导致叶绿体和光合作用相关基因表达的下调以及防御相关基因的上调。基于这些结果,我们建议减少CHLI的表达可以激活导致植物萎黄病的未知信号通路。

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