Literature DB >> 34174320

The transcriptome of anal papillae of Aedes aegypti reveals their importance in xenobiotic detoxification and adds significant knowledge on ion, water and ammonia transport mechanisms.

Andrea C Durant1, Elia Grieco Guardian1, Dennis Kolosov2, Andrew Donini3.   

Abstract

The anal papillae of mosquito larvae are osmoregulatory organs in direct contact with the external aquatic environment that actively sequester ions and take up water in dilute freshwater. In the disease vector Aedes aegypti mechanisms of ion, water and ammonia transport have only been partially resolved. Furthermore, A. aegypti larvae are known to reside in high ammonia sewage and high salt brackish waters, and understanding of anal papillae function in these conditions is in its infancy. The objective of this study was to identify the complement of ion and water transport genes expressed by the anal papillae of freshwater larvae by sequencing their transcriptome, and comparing their expression in anal papillae of larvae abruptly transferred to brackish water for 24 h. Results identified a number of ion and water transport proteins, ammonia detoxifying enzymes, a full suite of xenobiotic detoxifying enzymes and transporters, and G-protein coupled receptors of specific hormones. We identified a marked increase in transcript and protein abundance of aquaporin AaAQP2 in the anal papillae with abrupt transfer to brackish water. We present an updated and more comprehensive model for ion and water transport with additional putative transporters for Na+ and Cl- uptake in the anal papillae. These are organs which are actively engaged in Na+, Cl- and water uptake and regulation when the aquatic larvae encounter fluctuating salinities over the course of their development. Furthermore the transcriptome of the anal papillae includes a full set of xenobiotic detoxification genes suggesting that these are important detoxification organs which is particularly important when larvae reside in polluted water.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  G protein coupled receptor; Mosquito; Salinity

Year:  2021        PMID: 34174320     DOI: 10.1016/j.jinsphys.2021.104269

Source DB:  PubMed          Journal:  J Insect Physiol        ISSN: 0022-1910            Impact factor:   2.354


  2 in total

1.  Armigeres subalbatus is a potential vector for Zika virus but not dengue virus.

Authors:  Wenqiang Yang; Siyu Zhao; Yugu Xie; Tong Liu; Ling Kong; Yijia Guo; Zhensheng Xie; Peiwen Liu; Xiao-Guang Chen
Journal:  Infect Dis Poverty       Date:  2022-06-04       Impact factor: 10.485

2.  Sequence analysis and function of mosquito aeCCC2 and Drosophila Ncc83 orthologs.

Authors:  Phu C Duong; Tobias C McCabe; Grace F Riley; Heather L Holmes; Peter M Piermarini; Michael F Romero; Christopher M Gillen
Journal:  Insect Biochem Mol Biol       Date:  2022-02-09       Impact factor: 4.421

  2 in total

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