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Titlebook: Non-coding RNAs and Inter-kingdom Communication; Ana Lúcia Leitão,Francisco J. Enguita Book 2016 Springer International Publishing Switzer

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书目名称Non-coding RNAs and Inter-kingdom Communication
编辑Ana Lúcia Leitão,Francisco J. Enguita
视频video
概述Highlights new mechanisms involved in inter-organism communication and mediated by non-coding RNAs.Enriches readers’ understanding of the interactions between organisms belonging to different kingdoms
图书封面Titlebook: Non-coding RNAs and Inter-kingdom Communication;  Ana Lúcia Leitão,Francisco J. Enguita Book 2016 Springer International Publishing Switzer
描述This book presents a state-of-the-art compilation of articles on the role of non-coding RNAs as pivotal molecules for establishing functional relationships between different organisms. It also describes how non-coding RNA molecules can act as dynamic communication devices and how they modulate the interaction between different kingdoms. It describes examples including viruses, bacteria, fungi, and higher organisms such as protozoa that are involved in pathogenic or symbiotic interactions, and the roles of different families of non-coding RNAs within these relationships. Each chapter provides readers molecular and functional insights, breaking down the subjacent mechanisms and exploring their functional implications and future applications. More than sixty years after the foundation of the “RNA tie club” by George Gamow, new roles for non-coding RNA molecules are starting to be revealed..
出版日期Book 2016
关键词Bacterial Communication; Cell Interaction; Cell to Cell Communication; Eukaryotic Cells; Host-pathogen I
版次1
doihttps://doi.org/10.1007/978-3-319-39496-1
isbn_softcover978-3-319-81899-3
isbn_ebook978-3-319-39496-1
copyrightSpringer International Publishing Switzerland 2016
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Interplays Between Gut Microbiota and Gene Expression Regulation by miRNAs: Towards a Symbiotic Visises. Recently, microRNAs have emerged as important gene expression regulators in many conditions. A dysregulated microRNA expression is a common feature of various human diseases, such as cancer, developmental abnormalities, muscular and cardiovascular disorders, and inflammatory diseases. Moreover,
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Role of Small RNAs in ,-Mosquito Interactionsanipulations of their host, some strains may confer fitness advantages to their host, including protection from virus infection. As a consequence, utilization of . to suppress transmission of vector-borne viruses and other pathogens has attracted immense interest in recent years. In particular, tran
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Uptake and Reaction of , to Environmental RNAsn recent decades, . has been extensively used as a model organism for studying host–microbiota interactions. As dsRNAs expressed in . ., which is the laboratory food of ., can trigger RNAi in the worm, it is possible that bacteria could use their own RNAs to affect the physiology of .. The recent st
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Rapid Evolution of Mosquito Anti-viral ncRNA Pathway Componentsajor anti-viral pathway in mosquitoes is the RNA interference (RNAi) pathway. Using high throughput sequencing (HTS) data, population genetics analysis was performed on major RNAi components from natural populations of the dengue and zika virus vector, . .. Pairwise comparisons of four geographicall
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Differential Expression of , MicroRNAs in Murine and Human Hoststeria to plants. It has become clear that some cross-kingdom regulation is possible especially between viruses and their hosts. We hypothesized that intracellular parasites, like . ., similar to viruses would be able to modulate their host’s gene expression. We were able to show that . produces many
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