The_Human_Animal_Environmental_interfaces_in_infectious_diarrhea_and_the_spread_of_antibiotic_resistance. The_Human_Animal_Environmental_interfaces_in_infectious_diarrhea_and_the_spread_of_antibiotic_resistance
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”Diarrheal disease is a leading cause of child mortality and morbidity in the world” (WHO, 2017), where enterotoxigenic Escherichia coli (ETEC) accounts for a majority of cases worldwide due to contaminated food or water which contain human or animal feces. The proposed project aims to better understand the population structure of ETEC isolated from humans, animals and from environemntal sources, such as water and sediment. Using whole genome sequencing, short and long read, of a large set of ETEC strains from various sources we will gain key insights on how ETEC has evolved over time and across different hosts. This data is part of a pre-publication release. For information on the proper use of pre-publication data shared by the Wellcome Trust Sanger Institute (including details of any publication moratoria), please see http://www.sanger.ac.uk/datasharing/



