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Boucher F, Moutroifi Y, Peba B, Ali M, Moindjie Y, Ruget AS, Abdouroihamane S, Madi Kassim A, Soulé M, Charafouddine O, Cêtre-Sossah C, Cardinale E. Tick-borne diseases in the Union of the Comoros are a hindrance to livestock development: Circulation and associated risk factors. Ticks Tick Borne Dis 2019; 11:101283. [PMID: 31519420 DOI: 10.1016/j.ttbdis.2019.101283] [Citation(s) in RCA: 2] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/13/2018] [Revised: 08/20/2019] [Accepted: 08/24/2019] [Indexed: 10/26/2022]
Abstract
Tick-borne diseases (TBD) occur in many temperate countries and are economically important in most tropical and subtropical areas, affecting dairy and beef cattle, as well as small ruminants. Four major tick-borne diseases have been detected in eastern and southern Africa: East Coast fever (ECF) caused by Theileria parva, Theiler 1904, anaplasmosis caused by either Anaplasma marginale, Theiler 1910, Anaplasma centrale, Theiler 1911, or Anaplasma ovis, Bevan 1912, babesiosis caused by Babesia bovis, Babes 1988 and Babesia bigemina, Smith & Kilborne 1893, and heartwater caused by Ehrlichia ruminantium Cowdry 1925. A cross-sectional survey was undertaken to determine the antibody prevalence of these TBDs and to identify the risk factors for TBD infections in the Union of the Comoros. In 2016 and 2017, 903 individual animal serum samples were collected from 429 separate farms, where the farmers answered individual questionnaires. The antibody prevalence of anaplasmosis, babesiosis (B. bigemina) and heartwater was determined by enzyme-linked immunosorbent assays (ELISA) and the antibody prevalence of ECF was assessed using an immunofluorescence antibody test (IFAT). The relationship between TBD seropositivity and livestock-related variables was assessed by multivariate analyses with standard logistic regression models. The results showed that these four TBDs were present in the Union of the Comoros with a global antibody prevalence of 15% (95% CI [12.7%; 17.3%]) for anaplasmosis, 9.2% (95% CI [6.5%, 11.9%]) for B. bigemina babesiosis, 5.3% (95% CI [3.2%, 7.4%]) for ECF and 4.6% (95% CI [3.2%, 6%]) for heartwater. We compared these findings with the abundance and distribution of several tick species known to be TBD vectors and we found a significant correlation between Rhipicephalus appendiculatus and ECF, and between Amblyomma variegatum and heartwater. We also found that two major variables were significantly correlated with B. bigemina antibody prevalence ("island" and "breeding area"), four variables were significantly correlated with anaplasmosis antibody seroprevalence ("island", "number of cattle per farmer", "number of farmers per village" and "breeding area"), two were significantly correlated with ECF antibody prevalence ("number of farmers in village" and "presence of ticks"), and three were significantly correlated with heartwater ("island", "number of cattle per farmer" and "number of farmers in the village"). Our findings confirmed livestock exposure to the four targeted TBDs of major concern for livestock development. Consequently, raising farmers' awareness and setting up a period of quarantine should be considered a priority.
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Affiliation(s)
- F Boucher
- CIRAD, UMR ASTRE, Sainte Clotilde, La Réunion, France; ASTRE, Univ Montpellier (I-MUSE), CIRAD, INRA, Montpellier, France; Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - Y Moutroifi
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - B Peba
- Onderstepoort Veterinary Institute, 100 Old Soutpan Road, Private Bag X5, 0110 Onderstepoort, South Africa
| | - M Ali
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - Y Moindjie
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - A-S Ruget
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - S Abdouroihamane
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - A Madi Kassim
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - M Soulé
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - O Charafouddine
- Direction nationale de l'élevage, Direction nationale des stratégies agricoles et de l'élevage, Vice-présidence en charge du ministère de l'agriculture, de la pêche, de l'environnement de l'aménagement du territoire et de l'urbanisme, Mdé, Bambao, Comoros
| | - C Cêtre-Sossah
- CIRAD, UMR ASTRE, Sainte Clotilde, La Réunion, France; ASTRE, Univ Montpellier (I-MUSE), CIRAD, INRA, Montpellier, France
| | - E Cardinale
- CIRAD, UMR ASTRE, Sainte Clotilde, La Réunion, France; ASTRE, Univ Montpellier (I-MUSE), CIRAD, INRA, Montpellier, France.
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Ringo AE, Adjou Moumouni PF, Lee SH, Liu M, Khamis YH, Gao Y, Guo H, Zheng W, Efstratiou A, Galon EM, Li J, Tiwananthagorn S, Inoue N, Suzuki H, Thekisoe O, Xuan X. Molecular detection and characterization of tick-borne protozoan and rickettsial pathogens isolated from cattle on Pemba Island, Tanzania. Ticks Tick Borne Dis 2018; 9:1437-1445. [DOI: 10.1016/j.ttbdis.2018.06.014] [Citation(s) in RCA: 21] [Impact Index Per Article: 3.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/22/2018] [Revised: 06/22/2018] [Accepted: 06/27/2018] [Indexed: 01/16/2023]
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Mdladla K, Dzomba EF, Muchadeyi FC. Seroprevalence of Ehrlichia ruminantium antibodies and its associated risk factors in indigenous goats of South Africa. Prev Vet Med 2016; 125:99-105. [PMID: 26829905 DOI: 10.1016/j.prevetmed.2016.01.014] [Citation(s) in RCA: 9] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/21/2015] [Revised: 01/13/2016] [Accepted: 01/14/2016] [Indexed: 10/22/2022]
Abstract
The present study investigated the seroprevalence of antibodies to Ehrlichia ruminantium and the associated risk factors in goats from five different farming provinces of South Africa. Sera collected from 686 goats of the commercial meat type (n=179), mohair type (n=9), non-descript indigenous goats from Eastern Cape (n=56), KwaZulu-Natal (n=209), Limpopo (n=111), North West (n=61) and Northern Cape (n=11) provinces and a feral Tankwa goat (n=50) were tested for the presence of immunoglobulin G (IgG) antibodies to antigens of E. ruminantium using the indirect fluorescent-antibody test (IFAT). Fifty two percent of these goats had ticks. The overall seroprevalence of antibodies to E. ruminantium was 64.87% (445/686) with the highest seroprevalence reported for Limpopo (95.50%) and lowest for Northern Cape (20.29%). Highest seroprevalence for antibodies to E. ruminantium was observed in goats from endemic regions (76.09%), and from smallholder production systems (89.54%). High seroprevalence was also observed in non-descript indigenous goats (85.04%), adult goat (69.62%), in does (67.46%) and goats infested with ticks (85.79%). The logistic model showed a gradient of increasing risk for commercial meat type Savanna (OR=3.681; CI=1.335-10.149) and non-descript indigenous (OR=3.466; CI=1.57-7.645) compared to Boer goats and for goats from the smallholder production system (OR=2.582; CI=1.182-5.639) and those with ticks (OR=3.587; CI=2.105-6.112). Results from this study showed that E. ruminantium infections were prevalent but were widely and unevenly distributed throughout South Africa. Findings from the study facilitate identification and mapping of risk areas for heartwater and its endeminicity in South Africa and should be taken into consideration for future disease control strategies and local goat improvement programs.
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Affiliation(s)
- Khanyisile Mdladla
- Agricultural Research Council, Biotechnology Platform, Private Bag X5, Onderstepoort 0110, South Africa; Discipline of Genetics, School of Life Sciences, University of KwaZulu-Natal, Private Bag X01, Scottsville 3209, South Africa.
| | - Edgar F Dzomba
- Discipline of Genetics, School of Life Sciences, University of KwaZulu-Natal, Private Bag X01, Scottsville 3209, South Africa.
| | - Farai C Muchadeyi
- Agricultural Research Council, Biotechnology Platform, Private Bag X5, Onderstepoort 0110, South Africa.
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Sayler KA, Loftis AD, Mahan SM, Barbet AF. Development of a Quantitative PCR Assay for Differentiating the Agent of Heartwater Disease, Ehrlichia ruminantium, from the Panola Mountain Ehrlichia. Transbound Emerg Dis 2015; 63:e260-e269. [PMID: 25807955 DOI: 10.1111/tbed.12339] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/10/2014] [Indexed: 12/19/2022]
Abstract
Panola Mountain Ehrlichia (PME) is an emerging Ehrlichia sp. reported in ten US states. Based on the sequence homology of all known genes, PME is closely related to Ehrlichia ruminantium (ER), the causative agent of heartwater. Heartwater is an economically important tick-borne disease of cattle, sheep and goats responsible for stock losses in sub-Saharan Africa. Unfortunately, ER was imported to the Caribbean islands in the 19th century, and the presence of this foreign animal disease in the Caribbean poses a threat to the US mainland. If introduced, a heartwater outbreak would cause massive losses of naïve livestock. The serologic assay of choice to diagnose heartwater is cross-reactive with Ehrlichia spp., including PME, as we demonstrate here, which would confound disease surveillance in the event of a heartwater outbreak. The purpose of this study was to develop a diagnostic assay capable of rapidly distinguishing between these pathogens. Using synthetic MAP-1B peptides for ER and PME, we tested the cross-reactivity of this assay using sera from infected livestock. The MAP-1B ELISA cannot distinguish between animals infected with PME and ER. Therefore, a dual-plex Taqman™ qPCR assay targeting the groEL gene of PME and ER was developed and validated. Primers were designed that are conserved among all known strains of ER, allowing for the amplification of strains from the Caribbean and Africa. The assay is highly sensitive (10 copies of DNA) and specific. This assay distinguishes between infection with PME and ER and will be a valuable tool in the event of heartwater outbreak on the US mainland, or for epidemiological studies involving either disease-causing organism.
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Affiliation(s)
- K A Sayler
- Department of Physiological Sciences, College of Veterinary Medicine, University of Florida, Gainesville, FL, USA. .,Department of Infectious Diseases and Pathology, College of Veterinary Medicine, University of Florida, Gainesville, FL, USA.
| | - A D Loftis
- Department of Microbiology and Immunology, Midwestern University, Glendale, AZ, USA
| | - S M Mahan
- Department of Infectious Diseases and Pathology, College of Veterinary Medicine, University of Florida, Gainesville, FL, USA.,Zoetis, Kalamazoo, MI, USA
| | - A F Barbet
- Department of Infectious Diseases and Pathology, College of Veterinary Medicine, University of Florida, Gainesville, FL, USA
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