For the past 21 years, the J. Craig Venter Institute (JCVI) has applied leading edge genomics approaches to diverse problems in biology. Through significant changes in sequencing technology, an emphasis has been maintained on establishing a robust sample and data handling infrastructure and computational analysis tools to take advantage of increasingly large and complex genomic and transcriptomic datasets. The JCVI Genomic Center for Infectious Diseases (GCID) is built around a central theme - the application of innovative genomics-based approaches to study pathogens and determinants of their virulence, drug-resistance, immune-evasion, and interactions with the host and the host microbiome. The JCVI GCID will address critical issues in pathogen biology including (among others), the evolutionary dynamics of viruses in human hosts and animal reservoirs, the dissemination of antibiotic resistance in bacteria, the search for novel antifungal drug targets, and the basis for immunity to malaria infection by Plasmodium falciparum. The hypothesis-driven Research Projects will be supported by a Technology Core and a Data Management and Analysis and Resource Dissemination (DMARD) Core. An Administrative Core will assure effective management and integration of the Program components so as to take best advantage of shared approaches, samples, and insights. An outreach program will be established to promote the use of genomics in other institutions and countries. All of the data, software tools, and strain resources will rapidly be made publicly available to support the broadest use by the scientific community. The impact of the JCVI Program will prove to be very high as it addresses the basic science issues that will underpin solutions to some of the major problems and challenges in the prevention and management of infectious diseases today.

Public Health Relevance

; The threat to public health by infectious diseases is increasing due to rapid emergence of drug resistance, and evolving pathogens, an aging population, and the threat of the use of infectious disease agents as bioweapons. The JCVI Genomic Center for infectious diseases will apply innovative genomic technologies to develop Infectious Diseases biology to meet the major problems and challenges in the prevention and management of infectious diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19AI110819-05
Application #
9452875
Study Section
Special Emphasis Panel (ZAI1)
Program Officer
Lee, Eun MI
Project Start
2014-04-04
Project End
2019-03-31
Budget Start
2018-04-01
Budget End
2019-03-31
Support Year
5
Fiscal Year
2018
Total Cost
Indirect Cost
Name
J. Craig Venter Institute, Inc.
Department
Type
DUNS #
076364392
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Oldfield, Lauren M; Fedorova, Nadia; Puri, Vinita et al. (2018) Sequences of Zika Virus Genomes from a Pediatric Cohort in Nicaragua. Genome Announc 6:
Marino, Nicole D; Panas, Michael W; Franco, Magdalena et al. (2018) Identification of a novel protein complex essential for effector translocation across the parasitophorous vacuole membrane of Toxoplasma gondii. PLoS Pathog 14:e1006828
Tan, Yi; Tsan-Yuk Lam, Tommy; Heberlein-Larson, Lea A et al. (2018) Large scale complete genome sequencing and phylodynamic analysis of eastern equine encephalitis virus reveal source-sink transmission dynamics in the United States. J Virol :
Nyaga, Martin M; Tan, Yi; Seheri, Mapaseka L et al. (2018) Whole-genome sequencing and analyses identify high genetic heterogeneity, diversity and endemicity of rotavirus genotype P[6] strains circulating in Africa. Infect Genet Evol 63:79-88
Clarke, Thomas H; Brinkac, Lauren M; Inman, Jason M et al. (2018) PanACEA: a bioinformatics tool for the exploration and visualization of bacterial pan-chromosomes. BMC Bioinformatics 19:246
Ogden, Kristen M; Tan, Yi; Akopov, Asmik et al. (2018) Multiple introductions and antigenic mismatch with vaccines may contribute to increased predominance of G12P[8] rotaviruses in the United States. J Virol :
Ismail, Ashrafali M; Cui, Tiange; Dommaraju, Kalpana et al. (2018) Genomic analysis of a large set of currently-and historically-important human adenovirus pathogens. Emerg Microbes Infect 7:10
Tan, Yi; Pickett, Brett E; Shrivastava, Susmita et al. (2018) Differing epidemiological dynamics of Chikungunya virus in the Americas during the 2014-2015 epidemic. PLoS Negl Trop Dis 12:e0006670
Moser, Lindsey A; Oldfield, Lauren M; Fedorova, Nadia et al. (2018) Whole-Genome Sequences of Zika Virus FLR Strains after Passage in Vero or C6/36 Cells. Genome Announc 6:
Moser, Lindsey A; Boylan, Brendan T; Moreira, Fernando R et al. (2018) Growth and adaptation of Zika virus in mammalian and mosquito cells. PLoS Negl Trop Dis 12:e0006880

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