Literature DB >> 33419731

A mosquito small RNA genomics resource reveals dynamic evolution and host responses to viruses and transposons.

Qicheng Ma1, Satyam P Srivastav1, Stephanie Gamez2, Gargi Dayama1, Fabiana Feitosa-Suntheimer3, Edward I Patterson4, Rebecca M Johnson5, Erik M Matson1, Alexander S Gold3, Douglas E Brackney6, John H Connor3, Tonya M Colpitts3, Grant L Hughes4, Jason L Rasgon5, Tony Nolan4, Omar S Akbari2, Nelson C Lau1,7.   

Abstract

Although mosquitoes are major transmission vectors for pathogenic arboviruses, viral infection has little impact on mosquito health. This immunity is caused in part by mosquito RNA interference (RNAi) pathways that generate antiviral small interfering RNAs (siRNAs) and Piwi-interacting RNAs (piRNAs). RNAi also maintains genome integrity by potently repressing mosquito transposon activity in the germline and soma. However, viral and transposon small RNA regulatory pathways have not been systematically examined together in mosquitoes. Therefore, we developed an integrated mosquito small RNA genomics (MSRG) resource that analyzes the transposon and virus small RNA profiles in mosquito cell cultures and somatic and gonadal tissues across four medically important mosquito species. Our resource captures both somatic and gonadal small RNA expression profiles within mosquito cell cultures, and we report the evolutionary dynamics of a novel Mosquito-Conserved piRNA Cluster Locus (MCpiRCL) made up of satellite DNA repeats. In the larger culicine mosquito genomes we detected highly regular periodicity in piRNA biogenesis patterns coinciding with the expansion of Piwi pathway genes. Finally, our resource enables detection of cross talk between piRNA and siRNA populations in mosquito cells during a response to virus infection. The MSRG resource will aid efforts to dissect and combat the capacity of mosquitoes to tolerate and spread arboviruses.
© 2021 Ma et al.; Published by Cold Spring Harbor Laboratory Press.

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Year:  2021        PMID: 33419731      PMCID: PMC7919454          DOI: 10.1101/gr.265157.120

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  137 in total

1.  Automated de novo identification of repeat sequence families in sequenced genomes.

Authors:  Zhirong Bao; Sean R Eddy
Journal:  Genome Res       Date:  2002-08       Impact factor: 9.043

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Journal:  Exp Parasitol       Date:  1994-11       Impact factor: 2.011

3.  Adaptive regulation of testis gene expression and control of male fertility by the Drosophila hairpin RNA pathway. [Corrected].

Authors:  Jiayu Wen; Hong Duan; Fernando Bejarano; Katsutomo Okamura; Lacramioara Fabian; Julie A Brill; Diane Bortolamiol-Becet; Raquel Martin; J Graham Ruby; Eric C Lai
Journal:  Mol Cell       Date:  2014-12-24       Impact factor: 17.970

4.  Abundant primary piRNAs, endo-siRNAs, and microRNAs in a Drosophila ovary cell line.

Authors:  Nelson C Lau; Nicolas Robine; Raquel Martin; Wei-Jen Chung; Yuzo Niki; Eugene Berezikov; Eric C Lai
Journal:  Genome Res       Date:  2009-06-18       Impact factor: 9.043

5.  Dicing of viral replication intermediates during silencing of latent Drosophila viruses.

Authors:  Alex Flynt; Na Liu; Raquel Martin; Eric C Lai
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-27       Impact factor: 11.205

6.  C6/36 Aedes albopictus cells have a dysfunctional antiviral RNA interference response.

Authors:  Doug E Brackney; Jaclyn C Scott; Fumihiko Sagawa; Jimmy E Woodward; Neil A Miller; Faye D Schilkey; Joann Mudge; Jeffrey Wilusz; Ken E Olson; Carol D Blair; Gregory D Ebel
Journal:  PLoS Negl Trop Dis       Date:  2010-10-26

7.  ViPR: an open bioinformatics database and analysis resource for virology research.

Authors:  Brett E Pickett; Eva L Sadat; Yun Zhang; Jyothi M Noronha; R Burke Squires; Victoria Hunt; Mengya Liu; Sanjeev Kumar; Sam Zaremba; Zhiping Gu; Liwei Zhou; Christopher N Larson; Jonathan Dietrich; Edward B Klem; Richard H Scheuermann
Journal:  Nucleic Acids Res       Date:  2011-10-17       Impact factor: 16.971

8.  Characterization of the Zika virus induced small RNA response in Aedes aegypti cells.

Authors:  Margus Varjak; Claire L Donald; Timothy J Mottram; Vattipally B Sreenu; Andres Merits; Kevin Maringer; Esther Schnettler; Alain Kohl
Journal:  PLoS Negl Trop Dis       Date:  2017-10-17

9.  A single unidirectional piRNA cluster similar to the flamenco locus is the major source of EVE-derived transcription and small RNAs in Aedes aegypti mosquitoes.

Authors:  Eric Roberto Guimarães Rocha Aguiar; João Paulo Pereira de Almeida; Lucio Rezende Queiroz; Liliane Santana Oliveira; Roenick Proveti Olmo; Isaque João da Silva de Faria; Jean-Luc Imler; Arthur Gruber; Benjamin J Matthews; João Trindade Marques
Journal:  RNA       Date:  2020-01-29       Impact factor: 4.942

10.  The Developmental Transcriptome of Aedes albopictus, a Major Worldwide Human Disease Vector.

Authors:  Stephanie Gamez; Igor Antoshechkin; Stelia C Mendez-Sanchez; Omar S Akbari
Journal:  G3 (Bethesda)       Date:  2020-03-05       Impact factor: 3.154

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  10 in total

1.  Extending and Running the Mosquito Small RNA Genomics Resource Pipeline.

Authors:  Gargi Dayama; Katia Bulekova; Nelson C Lau
Journal:  Methods Mol Biol       Date:  2022

2.  Transcriptomic and small RNA response to Mayaro virus infection in Anopheles stephensi mosquitoes.

Authors:  Cory Henderson; Marco Brustolin; Shivanand Hegde; Gargi Dayama; Nelson Lau; Grant L Hughes; Christina Bergey; Jason L Rasgon
Journal:  PLoS Negl Trop Dis       Date:  2022-06-28

3.  Vertical and Horizontal Transmission of Cell Fusing Agent Virus in Aedes aegypti.

Authors:  Rhiannon A E Logan; Shannon Quek; Joseph N Muthoni; Anneliese von Eicken; Laura E Brettell; Enyia R Anderson; Marcus E N Villena; Shivanand Hegde; Grace T Patterson; Eva Heinz; Grant L Hughes; Edward I Patterson
Journal:  Appl Environ Microbiol       Date:  2022-08-29       Impact factor: 5.005

4.  MeShClust v3.0: high-quality clustering of DNA sequences using the mean shift algorithm and alignment-free identity scores.

Authors:  Hani Z Girgis
Journal:  BMC Genomics       Date:  2022-06-06       Impact factor: 4.547

5.  Leaning Into the Bite: The piRNA Pathway as an Exemplar for the Genetic Engineering Need in Mosquitoes.

Authors:  Vanessa M Macias; Umberto Palatini; Mariangela Bonizzoni; Jason L Rasgon
Journal:  Front Cell Infect Microbiol       Date:  2021-01-14       Impact factor: 5.293

6.  Small RNA Response to Infection of the Insect-Specific Lammi Virus and Hanko Virus in an Aedes albopictus Cell Line.

Authors:  Pontus Öhlund; Juliette Hayer; Jenny C Hesson; Anne-Lie Blomström
Journal:  Viruses       Date:  2021-10-29       Impact factor: 5.048

7.  Aedes aegypti Piwi4 Structural Features Are Necessary for RNA Binding and Nuclear Localization.

Authors:  Adeline E Williams; Gaurav Shrivastava; Apostolos G Gittis; Sundar Ganesan; Ines Martin-Martin; Paola Carolina Valenzuela Leon; Ken E Olson; Eric Calvo
Journal:  Int J Mol Sci       Date:  2021-11-25       Impact factor: 5.923

8.  Bioinformatic and cell-based tools for pooled CRISPR knockout screening in mosquitos.

Authors:  Raghuvir Viswanatha; Enzo Mameli; Jonathan Rodiger; Pierre Merckaert; Fabiana Feitosa-Suntheimer; Tonya M Colpitts; Stephanie E Mohr; Yanhui Hu; Norbert Perrimon
Journal:  Nat Commun       Date:  2021-11-24       Impact factor: 14.919

Review 9.  VectorBase.org updates: bioinformatic resources for invertebrate vectors of human pathogens and related organisms.

Authors:  Gloria I Giraldo-Calderón; Omar S Harb; Sarah A Kelly; Samuel Sc Rund; David S Roos; Mary Ann McDowell
Journal:  Curr Opin Insect Sci       Date:  2021-12-03       Impact factor: 5.254

10.  Argonaute-CLIP delineates versatile, functional RNAi networks in Aedes aegypti, a major vector of human viruses.

Authors:  Kathryn Rozen-Gagnon; Meigang Gu; Joseph M Luna; Ji-Dung Luo; Soon Yi; Sasha Novack; Eliana Jacobson; Wei Wang; Matthew R Paul; Troels K H Scheel; Thomas Carroll; Charles M Rice
Journal:  Cell Host Microbe       Date:  2021-03-31       Impact factor: 21.023

  10 in total

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