Re-annotation of the Theileria parva genome refines 53% of the proteome and uncovers essential components of N-glycosylation, a conserved pathway in many organisms

Author:

Tretina Kyle,Pelle Roger,Orvis Joshua,Gotia Hanzel T.,Ifeonu Olukemi O.,Kumari Priti,Palmateer Nicholas C.,Iqbal Shaikh B. A.,Fry Lindsay M.,Nene Vishvanath M.,Daubenberger Claudia A.,Bishop Richard P.,Silva Joana C.ORCID

Abstract

Abstract Background The apicomplexan parasite Theileria parva causes a livestock disease called East coast fever (ECF), with millions of animals at risk in sub-Saharan East and Southern Africa, the geographic distribution of T. parva. Over a million bovines die each year of ECF, with a tremendous economic burden to pastoralists in endemic countries. Comprehensive, accurate parasite genome annotation can facilitate the discovery of novel chemotherapeutic targets for disease treatment, as well as elucidate the biology of the parasite. However, genome annotation remains a significant challenge because of limitations in the quality and quantity of the data being used to inform the location and function of protein-coding genes and, when RNA data are used, the underlying biological complexity of the processes involved in gene expression. Here, we apply our recently published RNAseq dataset derived from the schizont life-cycle stage of T. parva to update structural and functional gene annotations across the entire nuclear genome. Results The re-annotation effort lead to evidence-supported updates in over half of all protein-coding sequence (CDS) predictions, including exon changes, gene merges and gene splitting, an increase in average CDS length of approximately 50 base pairs, and the identification of 128 new genes. Among the new genes identified were those involved in N-glycosylation, a process previously thought not to exist in this organism and a potentially new chemotherapeutic target pathway for treating ECF. Alternatively-spliced genes were identified, and antisense and multi-gene family transcription were extensively characterized. Conclusions The process of re-annotation led to novel insights into the organization and expression profiles of protein-coding sequences in this parasite, and uncovered a minimal N-glycosylation pathway that changes our current understanding of the evolution of this post-translational modification in apicomplexan parasites.

Funder

National Institute of Allergy and Infectious Diseases

Bill and Melinda Gates Foundation

Agricultural Research Service

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Biotechnology

Reference81 articles.

1. Spielman DJ. XVI public-private partnerships and pro-poor livestock research: the search for an East Coast fever vaccine, vol. 1. Washington, D.C.: The National Academies Press; 2009.

2. Herrero M, Thornton PK, Notenbaert AM, Wood S, Msangi S, Freeman HA, Bossio D, Dixon J, Peters M, van de Steeg J, et al. Smart investments in sustainable food production: revisiting mixed crop-livestock systems. Science. 2010;327(5967):822–5.

3. Nkedianye D, Radeny M, Kristjanson P, Herrero M. Assessing returns to land and changing livelihood strategies in Kitengela. In: Homewood K, Kristjanson P, Chevenix Trench P, editors. Staying Maasai? Livelihoods, conservation and development in East African Rangelands. Dordrecht: Springer; 2009. p. 115–50.

4. Baldwin CL, Black SJ, Brown WC, Conrad PA, Goddeeris BM, Kinuthia SW, Lalor PA, MacHugh ND, Morrison WI, Morzaria SP, et al. Bovine T cells, B cells, and null cells are transformed by the protozoan parasite Theileria parva. Infect Immun. 1988;56(2):462–7.

5. Tindih HS, Geysen D, Goddeeris BM, Awino E, Dobbelaere DA, Naessens J. A Theileria parva isolate of low virulence infects a subpopulation of lymphocytes. Infect Immun. 2012;80(3):1267–73.

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