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Aliy, A.

Publications and source records attributed to Aliy, A..

2 recordsLinked to original sources

Population structure and transmission of Mycobacterium bovis in Ethiopia

Bovine tuberculosis (bTB) is endemic in cattle in Ethiopia, a country that hosts the largest national cattle herd in Africa. The intensive dairy sector, most of which is peri-urban, has the highest prevalence of disease. Previous studies in Ethiopia have demonstrated that the main cause is Mycobacterium bovis (M. bovis), which has been investigated using conventional molecular tools including deletion typing, spoligotyping and Mycobacterial interspersed repetitive unit-variable number tandem repeat (MIRU-VNTR). Here we use whole genome sequencing (WGS) to examine the population structure of M. bovis in Ethiopia. A total of 134 M. bovis isolates were sequenced including 128 genomes from 85 mainly dairy cattle and six genomes isolated from humans, originating from 12 study sites across Ethiopia. These genomes provided a good representation of the previously described population structure of M. bovis, based on spoligotyping and demonstrated that the population is dominated by the clonal complexes African 2 (Af2) and European 3 (Eu3). A range of within-host diversity was observed amongst the isolates and evidence was found for both short- and long-distance transmission. Detailed analysis of available genomes from the Eu3 clonal complex combined with previously published genomes revealed two distinct introductions of this clonal complex into Ethiopia between 1950 and 1987, likely from Europe. This work is important to help better understand bTB transmission in cattle in Ethiopia and can potentially inform national strategies for bTB control in Ethiopia and beyond.

genomics↗

Cross Sectional Study Of Middle East Respiratory Syndrome (MERS-CoV Infection) In Camels At Selected Sites Of Amibara District, Afar Region, Ethiopia

BackgroundA Cross sectional study of Middle East Respiratory Syndrome Corona virus (MERS-CoV) in Camel was conducted between February 2018 to April 2019 in three selected sites of Amibara district of Afar region, Northeast Ethiopia. The study was aimed to observe the current sero-prevalence status of MERS-CoV, assess the presence of active cases through detection RNA Viral particle and investigate possible risk factors of MERS-CoV in camels. A total of 589 sera were collected and tested with indirect Enzyme linked ImmunoSorbent Assay (iELISA). ResultThe overall seroprevalance of MERS-CoV was 87.3% (n=514/589, 95% CI: 84.5-89.9). Association of different risk factors with seroprevalance revealed that origin (X2=13.39,P=0.001), sex (X2=4.5 P=0.034), age ((X2=185.7, P=0.001) season (X2=41.7, P=0.000) and reproduction status (X2=96.1, P=0.001) displayed a statistical significant difference among the groups (P<0.05) while herd size did not show a Significant difference among groups (p>0.05). In multivariable logistic regression analysis, age (OR=7.39, 95% CI:3.43-15.91), season (OR=4.83, 95% CI:-2.14-10.90), and in adult female camel reproduction status (OR=7.39,95% C I:3.43-15.91) showed statistically significant difference among the groups for MERS CoV antibody detection while risk factors of origin, animal sex and herd size difference were statistically insignificant. A total of 857 nasal swab samples were collected for the detection of MERS-CoV RNA particle. However, all swab samples tested by Real-time reverse transcription polymerase chain reaction (RT-PCR) technique were Negative for the virus. ConclusionIn conclusion, the present study revealed a high seroprevalance of MERS CoV in adult camels. However, in spite of high seroprevalance the lack of any RNA viral particle in the study suggests the need for further in depth longitudinal study to detect the circulating virus focusing on juveniles and young camels whereby seroprevalance of antibody is low when compared with adult camel in order to get the active virus before the camel develop antibody. Moreover, the zoonotic significance and potential transmission routes of MERS CoV to pastoral communities should also be investigated and design strategy for the preparedness in control of the diseases in Ethiopia.

microbiology↗