Literature DB >> 21655818

Insights into the transcriptome of oenocytes from Aedes aegypti pupae.

Gustavo Ferreira Martins1, José Marcelo Ramalho-Ortigão, Neil Francis Lobo, David William Severson, Mary Ann McDowell, Paulo Filemon Paolucci Pimenta.   

Abstract

Oenocytes are ectodermic cells present in the fat body of several insect species and these cells are considered to be analogous to the mammalian liver, based on their role in lipid storage, metabolism and secretion. Although oenocytes were identified over a century ago, little is known about their messenger RNA expression profiles. In this study, we investigated the transcriptome of Aedes aegypti oenocytes. We constructed a cDNA library from Ae. aegypti MOYO-R strain oenocytes collected from pupae and randomly sequenced 687 clones. After sequences editing and assembly, 326 high-quality contigs were generated. The most abundant transcripts identified corresponded to the cytochrome P450 superfamily, whose members have roles primarily related to detoxification and lipid metabolism. In addition, we identified 18 other transcripts with putative functions associated with lipid metabolism. One such transcript, a fatty acid synthase, is highly represented in the cDNA library of oenocytes. Moreover, oenocytes expressed several immunity-related genes and the majority of these genes were lysozymes. The transcriptional profile suggests that oenocytes play diverse roles, such as detoxification and lipid metabolism, and increase our understanding of the importance of oenocytes in Ae. aegypti homeostasis and immune competence.

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Year:  2011        PMID: 21655818     DOI: 10.1590/s0074-02762011000300009

Source DB:  PubMed          Journal:  Mem Inst Oswaldo Cruz        ISSN: 0074-0276            Impact factor:   2.743


  7 in total

Review 1.  The development and functions of oenocytes.

Authors:  Rami Makki; Einat Cinnamon; Alex P Gould
Journal:  Annu Rev Entomol       Date:  2014       Impact factor: 22.682

2.  Insights into the Melipona scutellaris (Hymenoptera, Apidae, Meliponini) fat body transcriptome.

Authors:  Cristina Soares de Sousa; José Eduardo Serrão; Ana Maria Bonetti; Isabel Marques Rodrigues Amaral; Warwick Estevam Kerr; Andréa Queiroz Maranhão; Carlos Ueira-Vieira
Journal:  Genet Mol Biol       Date:  2013-06-22       Impact factor: 1.771

3.  The metabolism and role of free fatty acids in key physiological processes in insects of medical, veterinary and forensic importance.

Authors:  Agata Kaczmarek; Mieczysława Boguś
Journal:  PeerJ       Date:  2021-12-22       Impact factor: 3.061

4.  Sulfakinins influence lipid composition and insulin-like peptides level in oenocytes of Zophobas atratus beetles.

Authors:  M Szymczak-Cendlak; M Gołębiowski; S Chowański; J Pacholska-Bogalska; P Marciniak; G Rosiński; M Słocińska
Journal:  J Comp Physiol B       Date:  2021-08-20       Impact factor: 2.200

5.  Drosophila melanogaster Acetyl-CoA-carboxylase sustains a fatty acid-dependent remote signal to waterproof the respiratory system.

Authors:  Jean-Philippe Parvy; Laura Napal; Thomas Rubin; Mickael Poidevin; Laurent Perrin; Claude Wicker-Thomas; Jacques Montagne
Journal:  PLoS Genet       Date:  2012-08-30       Impact factor: 5.917

6.  LmCYP4G102: An oenocyte-specific cytochrome P450 gene required for cuticular waterproofing in the migratory locust, Locusta migratoria.

Authors:  Zhitao Yu; Xueyao Zhang; Yiwen Wang; Bernard Moussian; Kun Yan Zhu; Sheng Li; Enbo Ma; Jianzhen Zhang
Journal:  Sci Rep       Date:  2016-07-22       Impact factor: 4.379

7.  Isolation and transcriptomic analysis of Anopheles gambiae oenocytes enables the delineation of hydrocarbon biosynthesis.

Authors:  Linda Grigoraki; Xavier Grau-Bové; Henrietta Carrington Yates; Gareth J Lycett; Hilary Ranson
Journal:  Elife       Date:  2020-06-15       Impact factor: 8.140

  7 in total

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