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601por Werner, Scott J., DeLiberto, Shelagh T., McLean, Hailey E., Horak, Katherine E., VerCauteren, Kurt C.“…We also assessed the non-target hazard of an experimental formulation of SN that is being developed as a toxicant for invasive wild pigs (Sus scrofa L.). In gavage experiments with European starlings, we identified a lowest observed adverse effect level (LOAEL) for mortality of 2.40% technical SN (w/v; 120 mg SN/kg body mass) and a no observed adverse effect level (NOAEL) for mortality of 1.30% technical SN (65 mg/kg). …”
Publicado 2021
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602por Cortez Nunes, Francisco, Letra Mateus, Teresa, Teixeira, Sílvia, Barradas, Patrícia, de Witte, Chloë, Haesebrouck, Freddy, Amorim, Irina, Gärtner, Fátima“…Since close interactions between domestic animals, wildlife, and humans can increase bacterial transmission risk between species, samples of gastric tissue of 14 free range wild boars (Sus scrofa) were evaluated for the presence of H. pylori and H. suis using PCR. …”
Publicado 2021
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603por Jemeršić, Lorena, Lojkić, Ivana, Krešić, Nina, Keros, Tomislav, Zelenika, Tajana Amšel, Jurinović, Luka, Skok, Damir, Bata, Ingeborg, Boras, Jadranko, Habrun, Boris, Brnić, Dragan“…In total, from June 2020 until February 2021, we tested blood, muscle extract and fecal samples of 422 free-living wild boars (Sus scrofa), red foxes (Vulpes vulpes) and jackals (Canis aureus); blood and cloacal swabs of 111 yellow-legged gulls (Larus michahellis) and fecal samples of 32 zoo animals. …”
Publicado 2021
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604“…During the 2013–2014 hunting season, a total of 40 samples were collected from wild boars (Sus scrofa ferus) in the area of Western Mediterranean Turkey. …”
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605por Zhang, Shuai, Wang, Rui, Zhu, Xiaojing, Jin, Jiaxin, Lu, Wenlong, Zhao, Xuyang, Wan, Bo, Liao, Yifei, Zhao, Qin, Netherton, Christopher L., Zhuang, Guoqing, Sun, Aijun, Zhang, Gaiping“…Interestingly, 8F6 mAb specifically recognized ASFV dUTPase but not Sus scrofa dUTPase, which may be due to structural differences in the amino acids of F151, R153, and F154 in the motif V region. …”
Publicado 2021
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606por Soler, Vicente, Casas, Encarna, Closa‐Sebastià, Francesc, Sanz, Albert, Martorell, Jaume“…METHODS: Two‐hundred and eleven miniature pigs (Sus scrofa) were included in the study. Their origin, age, sex, housing conditions and diet were recorded. …”
Publicado 2021
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607por Auer, Angelika, Schweitzer, Lea, Kübber-Heiss, Anna, Posautz, Annika, Dimmel, Katharina, Seitz, Kerstin, Beiglböck, Christoph, Riedel, Christiane, Rümenapf, Till“…During the annual hunt in a privately owned Austrian game population in fall 2019 and 2020, 64 red deer (Cervus elaphus), 5 fallow deer (Dama dama), 6 mouflon (Ovis gmelini musimon), and 95 wild boars (Sus scrofa) were shot and sampled for PCR testing. Pools of spleen, lung, and tonsillar swabs were screened for specific nucleic acids of porcine circoviruses. …”
Publicado 2022
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608por Tomljanović, Kristijan, Grubešić, Marijan, Medić, Helga, Potočnik, Hubert, Topolovčan, Tomislav, Kelava Ugarković, Nikolina, Marušić Radovčić, Nives“…During one hunting year on free-ranging red deer (Cervus elaphus) (RD), roe deer (Capreolus capreolus) (RoD), and wild boar (Sus scrofa) (WB), the effect of time from shot to death on final pH, water-holding capacity (WHC), water content, and colour (L*, a*, b*) was investigated. …”
Publicado 2022
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609por Liu, Langqing, Megens, Hendrik-Jan, Crooijmans, Richard P.M.A., Bosse, Mirte, Huang, Qitong, van Sonsbeek, Linda, Groenen, Martien A.M., Madsen, Ole“…Comparing the genome sequences and chromatin contact maps of the Visayan warty pig (Sus cebifrons) and domestic pig (Sus scrofa), we characterized the dynamics of chromosomal structure evolution during Sus speciation, revealing the similar chromosome conformation as the potential biological mechanism of frequent postdivergence hybridization among Suidae. …”
Publicado 2022
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610por Lee, Shinyoung, Fan, Peixin, Liu, Ting, Yang, Anni, Boughton, Raoul K., Pepin, Kim M., Miller, Ryan S., Jeong, Kwangcheol Casey“…This study investigated the potential transmission of ARMs and antibiotic resistance genes (ARGs) between cattle and wildlife by comparing gut microbiota and ARG profiles of feral swine (Sus scrofa), coyotes (Canis latrans), cattle (Bos taurus), and environmental microbiota. …”
Publicado 2022
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611“…European megafauna, such as wild boars (Sus scrofa), have experienced severe climatic and size fluctuations that have shaped their genetic variation. …”
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612por Rossetti, Cristina, Genualdo, Viviana, Incarnato, Domenico, Mottola, Filomena, Perucatti, Angela, Pauciullo, Alfredo“…The loci reported in MSY and PAR were respectively: 18 and 25 in Bos taurus, 5 and 7 in Bubalus bubalis, 5 and 24 in Ovis aries, 5 and 19 in Capra hircus, 10 and 16 in Sus scrofa, 46 and 18 in Equus caballus. While in Vicugna pacos only 10 loci are reported in the PAR region. …”
Publicado 2022
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613por Evin, Allowen, David, Loïc, Souron, Antoine, Mennecart, Bastien, Orliac, Maeva, Lebrun, Renaud“…We studied a total of 63 petrosal bones belonging to wild boar (Sus scrofa, two populations) and domestic pigs (extensively and intensively reared specimens) that were µCT‐scanned and from which the size and the shape of the inner ear were quantified through geometric morphometrics, analyzing the 3D coordinates of 6 landmarks and 60 sliding semilandmarks localized on the SCC and the common crus. …”
Publicado 2022
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614por Cuadrado‐Matías, Raúl, Baz‐Flores, Sara, Peralbo‐Moreno, Alfonso, Herrero‐García, Gloria, Risalde, María A., Barroso, Patricia, Jiménez‐Ruiz, Saúl, Ruiz‐Rodriguez, Carmen, Ruiz‐Fons, Francisco“…With this goal, we designed a longitudinal survey of two wild ungulate species, the red deer (Cervus elaphus) and the Eurasian wild boar (Sus scrofa), in Doñana National Park, a protected Mediterranean biodiversity hotspot with high ungulate and CCHFV vector abundance, and which is also one of the main stopover sites for migratory birds between Africa and western Europe. …”
Publicado 2022
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615por Pant, Bindu, Sharma, Hari Prasad, Dahal, Bhagawan Raj, Regmi, Sandeep, Belant, Jerrold L.“…Nineteen people were attacked by wildlife, primarily wild boar (Sus scrofa). Ninety-two livestock were killed by leopard (Panthera pardus), and among these most were sheep or goats killed near ShNP during summer. …”
Publicado 2023
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616“…One of the factors facilitating the expansion and proliferation of wild boar Sus scrofa is the plasticity of its reproductive biology. …”
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617“…The size of the skull, particularly related to skull length parameters, increased consistently with the increase of the wild boar proportion in the hybrids. However, the Sus scrofa genotype did not affect the skull height. …”
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618“…Herein, we determined the crystal structure of the Sus scrofa SLFN11 N-terminal domain (NTD) to 2.69 Å resolution. sSLFN11-NTD is a pincer-shaped molecule that shares an overall fold with other SLFN-NTDs but exhibits distinct biochemical characteristics. sSLFN11-NTD is a potent RNase cleaving type I and II tRNAs and rRNAs, and with preference to type II tRNAs. …”
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619por Carlos, González-Crespo, Beatriz, Martínez-López, Carles, Conejero, Raquel, Castillo-Contreras, Emmanuel, Serrano, Josep Maria, López-Martín, Jordi, Serra-Cobo, Santiago, Lavín, Jorge Ramón, López-Olvera“…Wild boar (WB, Sus scrofa) populations are increasing in urban areas, posing an epidemiological risk for zoonotic pathogens such as hepatitis E virus (HEV) and antimicrobial-resistant Campylobacter (AMR-CAMP), as well as non-zoonotic pathogens such as African swine fever virus (ASFV). …”
Publicado 2023
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620por Carrera-Faja, Laura, Espunyes, Johan, Cardells, Jesús, Fernández Aguilar, Xavier, Pailler-García, Lola, Napp, Sebastian, Cabezón, Oscar“…This is the case for a Crimean-Congo hemorrhagic fever virus (CCHFV) hotspot in north-eastern Spain, where Iberian ibex (Capra pyrenaica) and wild boar (Sus scrofa) are involved, but their roles in disease transmission are unclear. …”
Publicado 2023
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