Literature DB >> 26801744

Comprehensive annotation of Glossina pallidipes salivary gland hypertrophy virus from Ethiopian tsetse flies: a proteogenomics approach.

Adly M M Abd-Alla1, Henry M Kariithi1,2,3, François Cousserans4, Nicolas J Parker5, İkbal Agah İnce6, Erin D Scully7, Sjef Boeren8, Scott M Geib9, Solomon Mekonnen10, Just M Vlak3, Andrew G Parker1, Marc J B Vreysen1, Max Bergoin4.   

Abstract

Glossina pallidipes salivary gland hypertrophy virus (GpSGHV; family Hytrosaviridae) can establish asymptomatic and symptomatic infection in its tsetse fly host. Here, we present a comprehensive annotation of the genome of an Ethiopian GpSGHV isolate (GpSGHV-Eth) compared with the reference Ugandan GpSGHV isolate (GpSGHV-Uga; GenBank accession number EF568108). GpSGHV-Eth has higher salivary gland hypertrophy syndrome prevalence than GpSGHV-Uga. We show that the GpSGHV-Eth genome has 190 291 nt, a low G+C content (27.9 %) and encodes 174 putative ORFs. Using proteogenomic and transcriptome mapping, 141 and 86 ORFs were mapped by transcripts and peptides, respectively. Furthermore, of the 174 ORFs, 132 had putative transcriptional signals [TATA-like box and poly(A) signals]. Sixty ORFs had both TATA-like box promoter and poly(A) signals, and mapped by both transcripts and peptides, implying that these ORFs encode functional proteins. Of the 60 ORFs, 10 ORFs are homologues to baculovirus and nudivirus core genes, including three per os infectivity factors and four RNA polymerase subunits (LEF4, 5, 8 and 9). Whereas GpSGHV-Eth and GpSGHV-Uga are 98.1 % similar at the nucleotide level, 37 ORFs in the GpSGHV-Eth genome had nucleotide insertions (n = 17) and deletions (n = 20) compared with their homologues in GpSGHV-Uga. Furthermore, compared with the GpSGHV-Uga genome, 11 and 24 GpSGHV ORFs were deleted and novel, respectively. Further, 13 GpSGHV-Eth ORFs were non-canonical; they had either CTG or TTG start codons instead of ATG. Taken together, these data suggest that GpSGHV-Eth and GpSGHV-Uga represent two different lineages of the same virus. Genetic differences combined with host and environmental factors possibly explain the differential GpSGHV pathogenesis observed in different G. pallidipes colonies.

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Year:  2016        PMID: 26801744      PMCID: PMC4854362          DOI: 10.1099/jgv.0.000409

Source DB:  PubMed          Journal:  J Gen Virol        ISSN: 0022-1317            Impact factor:   3.891


  65 in total

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3.  Baculovirus resistance in codling moth (Cydia pomonella L.) caused by early block of virus replication.

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Journal:  J Gen Virol       Date:  2009-02       Impact factor: 3.891

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7.  Comparative Analysis of Salivary Gland Proteomes of Two Glossina Species that Exhibit Differential Hytrosavirus Pathologies.

Authors:  Henry M Kariithi; İkbal Agah İnce; Sjef Boeren; Edwin K Murungi; Irene K Meki; Everlyne A Otieno; Steven R G Nyanjom; Monique M van Oers; Just M Vlak; Adly M M Abd-Alla
Journal:  Front Microbiol       Date:  2016-02-09       Impact factor: 5.640

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Journal:  Nucleic Acids Res       Date:  2014-11-26       Impact factor: 16.971

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  13 in total

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2.  Shrinking of repeating unit length in leucine-rich repeats from double-stranded DNA viruses.

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Review 3.  Proteomics and integrative omic approaches for understanding host-pathogen interactions and infectious diseases.

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4.  Responses of the Housefly, Musca domestica, to the Hytrosavirus Replication: Impacts on Host's Vitellogenesis and Immunity.

Authors:  Henry M Kariithi; Xu Yao; Fahong Yu; Peter E Teal; Chelsea P Verhoeven; Drion G Boucias
Journal:  Front Microbiol       Date:  2017-04-05       Impact factor: 5.640

5.  Susceptibility of Tsetse Species to Glossina pallidipes Salivary Gland Hypertrophy Virus (GpSGHV).

Authors:  Güler Demirbas-Uzel; Henry M Kariithi; Andrew G Parker; Marc J B Vreysen; Robert L Mach; Adly M M Abd-Alla
Journal:  Front Microbiol       Date:  2018-04-09       Impact factor: 5.640

Review 6.  Proteomic Applications in Antimicrobial Resistance and Clinical Microbiology Studies.

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7.  Hytrosavirus genetic diversity and eco-regional spread in Glossina species.

Authors:  Irene K Meki; Henry M Kariithi; Mehrdad Ahmadi; Andrew G Parker; Marc J B Vreysen; Just M Vlak; Monique M van Oers; Adly M M Abd-Alla
Journal:  BMC Microbiol       Date:  2018-11-23       Impact factor: 3.605

8.  Enhancing vector refractoriness to trypanosome infection: achievements, challenges and perspectives.

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Review 9.  Coevolution of hytrosaviruses and host immune responses.

Authors:  Henry M Kariithi; Drion G Boucias; Edwin K Murungi; Irene K Meki; Güler Demirbaş-Uzel; Monique M van Oers; Marc J B Vreysen; Adly M M Abd-Alla; Just M Vlak
Journal:  BMC Microbiol       Date:  2018-11-23       Impact factor: 3.605

10.  Proteogenomic Identification of a Novel Protein-Encoding Gene in Bovine Herpesvirus 1 That Is Expressed during Productive Infection.

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