wild pigs
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2022 ◽  
Vol 8 ◽  
Author(s):  
Genevieve V. Weaver ◽  
Neil Anderson ◽  
Kayla Garrett ◽  
Alec T. Thompson ◽  
Michael J. Yabsley

Background: Guam, a United States of America (USA) island territory in the Pacific Ocean, is known to have large populations of ticks; however, it is unclear what the risk is to wildlife and humans living on the island. Dog (Canis familiaris), cat (Felis catus), and wild pig (Sus scrofa) sentinels were examined for ticks, and environmental sampling was conducted to determine the ticks present in Guam and the prevalence of tick-borne pathogens in hosts.Methods and Results: From March 2019-November 2020, ticks were collected from environmental sampling, dogs, cats, and wild pigs. Blood samples were also taken from a subset of animals. A total of 99 ticks were collected from 27 environmental samples and all were Rhipicephalus sanguineus, the brown dog tick. Most ticks were collected during the dry season with an overall sampling success rate of 63% (95% CI: 42.4–80.6). 6,614 dogs were examined, and 12.6% (95% CI: 11.8–13.4) were infested with at least one tick. One thousand one hundred twelve cats were examined, and six (0.54%; 95% CI: 0.20–1.1) were found with ticks. Sixty-four wild pigs were examined and 17.2% (95% CI: 9.5–27.8) had ticks. In total, 1,956 ticks were collected and 97.4% of ticks were R. sanguineus. A subset of R. sanguineus were determined to be the tropical lineage. The other tick species found were Rhipicephalus microplus (0.77%), Amblyomma breviscutatum (0.77 %), and a Haemaphysalis sp. (0.51%). Blood samples from 136 dogs, four cats, and 64 wild pigs were tested using polymerase chain reaction (PCR) and DNA sequencing methods. Five different tick-borne pathogens with the following prevalences were found in dogs: Anaplasma phagocytophilum 5.9% (95% CI: 2.6–11.3); Anaplasma platys 19.1% (95% CI: 12.9–26.7); Babesia canis vogeli 8.8% (95% CI: 4.6–14.9); Ehrlichia canis 12.5% (95% CI: 7.5–19.3); Hepatozoon canis 14.7% (95% CI: 9.2–28.8). E. canis was detected in one cat, and no tick-borne pathogens were detected in wild pigs. Overall, 43.4% (95% CI: 34.9–52.1) of dogs had at least one tick-borne pathogen. Serological testing for antibodies against Ehrlichia spp. and Anaplasma spp. showed prevalences of 14.7% (95% CI: 9.2–28.8) and 31.6% (95% CI: 23.9–40), respectively.Conclusion: Four different tick species were found in Guam to include a Haemaphysalis sp., which is a previously unreported genus for Guam. Dogs with ticks have a high prevalence of tick-borne pathogens which makes them useful sentinels.


2021 ◽  
Vol 23 (104) ◽  
pp. 18-22
Author(s):  
Ye. O. Dudnyk

The article presents the results of the analysis of the epizootic situation in Ukraine regarding African swine fever among domestic and wild pigs from 2012 to 2020 and identifies the main sources of virus spread as well as weak links in the biological safety system of farms. When studying the statistical material of the Food and Agriculture Organization of the United Nations (FAO) and the State Service of Ukraine on Food Safety and Consumer Protection regarding animal morbidity, revealed a territorial pattern between the outbreaks of African swine fever among wild boars and domestic pigs of private farms and pig-breeding complexes, and proved the involvement of the European boar in the epizootic process as a natural reservoir and mobile focus of infection. Calculated the number of outbreaks of African swine fever among wild boars and domestic pigs within the same region and district, and studied the sequence of the emergence of foci on limited territories. Analyzed the natural focality of the disease, the probability of infection transmission to the domestic pig farm sector, and the role of infected objects in the spread of the virus among wild animal populations. From 2012 to 2020 inclusive, according to FAO statistics, 537 cases of African swine fever were recorded in Ukraine, 21.7 % of which were associated with wild boars. In 2017 and 2018, the role of the European wild boar in the epizootic process is best reflected, when 10.9 % (2017) and 20.4 % (2018) of outbreaks of African swine fever among domestic animals recorded in the same administrative districts, where during a year this desiase was detected among wild pigs. When analyzing statistical data of the recent years, the effectiveness of introducing more detailed monitoring of African swine fever among wild boars using modern laboratory methods and improving biosafety measures in the private sector and directly on hunting grounds has been proved. Further research is based on predicting the dynamics of the spread of African swine fever in Ukraine and the role of wild boar in this epizootic process. In addition, the role of wild boar in the spread of African swine fever in other countries and the most effective foreign methods of disease control and prevention will be analyzed.


Viruses ◽  
2021 ◽  
Vol 13 (12) ◽  
pp. 2552
Author(s):  
Yuanjia Liu ◽  
Xinheng Zhang ◽  
Wenbao Qi ◽  
Yaozhi Yang ◽  
Zexin Liu ◽  
...  

African swine fever (ASF) is a devastating disease in domestic and wild pigs. Since the first outbreak of ASF in August 2018 in China, the disease has spread throughout the country with an unprecedented speed, causing heavy losses to the pig and related industries. As a result, strategies for managing the disease are urgently needed. This paper summarizes the important aspects of three key elements about African swine fever virus (ASFV) transmission, including the sources of infection, transmission routes, and susceptible animals. It overviews the relevant prevention and control strategies, focusing on the research progress of ASFV vaccines, anti-ASFV drugs, ASFV-resistant pigs, efficient disinfection, and pig farm biosecurity. We then reviewed the key technical points concerning pig farm repopulation, which is critical to the pork industry. We hope to not only provide a theoretical basis but also practical strategies for effective dealing with the ASF epidemic and restoration of pig production.


2021 ◽  
Author(s):  
Ryan S Miller ◽  
Michael Tabak ◽  
Christopher L Burdett ◽  
David W Wolfson

Invasion of nonindigenous species is considered one of the most urgent problems affecting native ecosystems and agricultural systems. Mechanistic models that account for short-term population dynamics can improve prediction because they incorporate differing demographic processes that link the environmental conditions of a spatial location explicitly with the invasion process. Yet short-term population dynamics are rarely accounted for in spatial models of invasive species spread. Accounting for transient population dynamics, we predict the population growth rate and establishment probability of wild pigs following introduction into any location in North America. We compared predicted population growth rate with observed geographic rates of spread and found significant relationships between the annual rate of spread and population growth rates. We used geospatial data on the distribution of mast producing tree species (a principle forage resource of wild pigs) and agricultural crops that can replace mast in their diets to predict population dynamics using transient population simulations. We simulated populations under different initial population sizes (i.e. number of introduced individuals, often termed propagule size) and for different amounts of time following introduction. By varying the initial population size and simulation time, we were able to identify areas in North America with high probability for establishment of wild pigs if introduced. Our findings can be used to inform surveillance and removal efforts to reduce the potential for establishment and spread of wild pigs.


2021 ◽  
Vol 19 (suplemento) ◽  
Author(s):  
M F Bono Battistoni

Trichinellosis in a zoonotic parasitism of worldwide distribution caused by nematodes of the genus Trichinella. Argentina is considered an endemic country for this zoonosis and so far four species have been identified, spiralis, patagoniensis, britovi and pseudospiralis. It can affect both domestic animals such as pigs, dogs, horses, or wild animals such as cougars, armadillos, wild boars, and wild pigs. With the aim of knowing if any species of Trichinella circulates among the wild fauna of the province of Santa Fe, 22 samples of muscle from pigs between wild and wild boars were analyzed by Artificial Digestion, five from aguará guazú (Chrysocyon brachiurus), one of cat wild (Leopardus geoffroyi), one of weasel (Didelphis albiventris) and one of an equine (Equus caballus). All samples were negative.


2021 ◽  
Author(s):  
Christopher J. O’Bryan ◽  
Nicholas R. Patton ◽  
Jim Hone ◽  
Jesse S. Lewis ◽  
Violeta Berdejo‐Espinola ◽  
...  

2021 ◽  
Vol 22 (11) ◽  
Author(s):  
Dede Mulyanto ◽  
Oekan Soekotjo Abdoellah ◽  
Johan Iskandar ◽  
Budhi Gunawan

Abstract. Mulyanto D, Abdoellah OS, Iskandar J, Gunawan B. 2021. Ethnozoological study of the wild pig (Sus spp.) hunting among Sundanese in Upper Citarum Watershed area, West Java, Indonesia. Biodiversitas 22: 4930-4939. In the past, wild pigs had a high population in the rural ecosystem of West Java. However, the population of wild pigs, particularly Javan warty pig, decreases due to forest destructions and intensive hunting. This study aimed to elucidate the local knowledge on wild pigs, the mode of hunting, and diverse aspects of wild pig hunting. We conducted qualitative methods with ethnozoological approach, including participant observation and in-depth interview. The results showed that based on the local people the wild pig can be divided into four “races”, while based on zoology, two species of wild pig are documented in Java. During hunts all members get specific key roles. Thus, hunting success is increased by division of labor. Hunting wild pigs played an important role in socio-economic and cultural function for the village community. Due to intensive hunting of wild pigs, the population of these animals, particularly the Javan warty pig are decreased, and consequently the socio-economy of this animal in rural ecosystem may decrease ot even disappear.


The flood is one of the natural calamities that are the outcome of anthropogenic activities by humans. It is largely defined as the overflow of water on normally dry ground. The most common reasons are overflowing of river in short span of time, breaking of dam, or heavy rainfall. The most deadly flood that occurred in the history of Panapur is the flood of 2020 which worsened the condition of the native inhabitants. The most fragile section of society was pregnant women, elderly people, children and animals. The local inhabitants experienced fear of death from very close, submerging of houses in water, rampant rainfall, snake biting, lack of drinking water and food worked as the catalyst in worsening the condition. There was the rampant destruction not only of infrastructure but also of the wildlife. Large chunk of population lost their animals in the furious flood. Dear, pig, snake, and many other wild animals washed away from the forests of Nepal to Panapur block during flood. Many wild animals lost their lives in this nature’s fury, villagers somehow managed to save lives of eight floating dear and 32 wild pigs. People left from different corona infected state to take shelter in native village in month of April and May were left disillusioned due to the flood of July 2020. As officially reported eight people washed away and died during flood. The further unrest came when the prices of fodder surged up to 14/kg. This paper studies the impact of flood on inhabitants of Panapur block, Saran district, Bihar, India. This study is based on primary survey using sampling techniques. Six villages have been selected for survey. Result have been analysed and it was found that people lost their economy, crop, shelter, pet animals, forest, dignity and humanity. They are left under the utter disillusionment. They became homeless, helpless, hopeless and health less.


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