Evaluation of Pakistani goat breeds for genetic resistance to Haemonchus contortus

نویسندگان

  • Masroor Ellahi Babar
  • Tanveer Hussain
  • Muhammad Sarfraz Ahmad
  • Akhtar Ali
  • Kamran Abbas
  • Muhammad Muddassir Ali
چکیده

This study aimed to evaluate the genetic resistance of Pakistani goat breeds (Beetal, Teddy, Angora, Nachi) against Haemonchus contortus. In total, 13 animals of each breed, irrespective of sex, were selected. Following artificial infection with 5000 L3 (third stage) larvae of Haemonchus contortus to each animal, susceptibility and resistance of each breed was then assessed on the basis of body weight, feacal egg counts, packed cell volume and FAMACHA system on days 0, 28, 35, and 42. Variation in response of all goat breeds to H. contortus was observed. Better resistance was observed in Teddy and Beetal breeds (P < 0.05) followed by Nachi and Angora breeds. Genetic diversity was noted among these four goat breeds which could be explored further to minimize the use of anthelmintics and to exploit the genetic potential of the different goat breeds. Genetic variability, FAMACHA, Beetal goat, packed cell volume Developing countries are rich in goat genetic resources. China, India, and Pakistan are top goat meat producing countries in the world. The goat population in Pakistan is 53.8 million, ranking third in the world (Khan et al. 2008). Good quality meat is exported in most of the Middle East and other Asian countries from Pakistan thus contributing an important role in the country’s economy. However, parasitic infestation in goats impedes better production and growth of goats. Among the many parasites, Haemonchus contortus is of major concern as it is a voracious blood sucker. This parasite causes anaemia, low packed cell volume (PCV), internal fluid accumulation, and diarrhea dehydration by sucking the blood from abomasum, and may even lead to death in heavy infestation. Consequently, H. contortus plays an integral role in reduction of the overall productivity and profitability of an animal (Terri l l et al. 2011). Strategies should be designed to cut down this problem. One of the sustainable options is the selection of goat breeds resistant to H. contortus. This strategy will provide animals with better resistance against gastrointestinal (GI) parasites and anthelmintic resistance, thus having overall better growth and performance (Baker et al. 2001). Recent studies have focused on the finding of genetic resistance against H. contortus at the molecular level in different goat breeds in advanced countries (Alberti 2012; Corley and Jarmon 2012a; Corley and Jarmon 2012b). Some developing countries have started this approach (Chiejina and Behnke 2011). But most developing countries, including Pakistan, are lacking in adopting this approach even at the phenotypic level for finding the native resistant goat breeds. This paper provides substantial evidence on the genetic variation for resistance to GI nematode parasites (especially H. contortus) in four goat breeds of Pakistan. ACTA VET. BRNO 2015, 84: 231–235; doi:10.2754/avb201584030231 Address for correspondence: Masroor Ellahi Babar Department of Bioinformatics Virtual University of Pakistan Lahore, 54000, Pakistan Phone: +92 334 426 1313 E-mail: [email protected] http://actavet.vfu.cz/ Materials and Methods Location and climate The study was conducted at the Angora Goat Farm, Rakh Khairewala, District Layyah (Pakistan’s largest small ruminant farm with 14,472 acres of land) under the Directorate of Small Ruminants. The climate is warm temperate with mean maximum and minimum temperatures, daily relative humidity, and mean annual rainfall of 45 °C and 12 °C, 80% (max) and 54% (min), and 135 cm, respectively. Animal characteristics and management Four goat breeds Beetal, Teddy, Angora, Nachi were selected. The locality of all breeds was Punjab districts except for Teddy, which is also found in Azad Jammu and Kashmir (AJK). Beetal and Teddy are used for meat and milk purposes, Angora is raised mainly for hair, while Nachi serves for meat, milk and hair production. All selected breeds were kept under uniform management conditions. Animals were not allowed to go out for open grazing to minimize the chances of getting the internal nematodes infestation from field and all were offered total mixed ration (TMR) at 3% body weight daily. TMR consisted of corn silage, wheat straw, and mineral mixture. All selected animals were dewormed by administering albendazole at the dose of 10 mg/kg orally (Albenzole granules; Selmore Agency, Pakistan). Experimental design and indicators In total, 13 animals of each breed at the age between 5 to 8 months were selected. Out of 13 animals of each breed, two animals of each breed were kept as control. Larvae 3 of H. contortus were produced and used as challenge to the selected animals with controlled dosage. Ethical permission was taken from the Ethics Committee of the University of Veterinary and Animal Sciences Lahore, Pakistan prior to start the experiment. Haemonchus contortus was obtained from the positive field sample from goats after faecal egg count using a microscope. The eggs were cultured in the laboratory up to stage L3. On day 0 the initial readings were taken and doses of 5 000 L3 were administered to the animals. Data were recorded for evaluating the susceptibility and resistance of each breed against H. contortus by body weight, feacal egg counts (FEC), and packed cell volume (PCV) by Wintrobe’s method (Maxwell and Wintrobe 1929) and FAMACHA on days 0, 28, 35, and 42. Faecal samples were collected directly from rectum and microscopic examination was carried out to count the eggs by using McMaster technique. Blood samples with anti-coagulant (ethylene diamine tetraacetic acid; EDTA) were taken from the jugular vein. Packed cell volume percentage was determined by the microhaematocrit method. FAMACHA system was used to determine the level of anaemia. The eye was examined in the sunlight and the colour was compared with the FAMACHA card as per instructions. The highest value (5) showed highly anaemic animals whereas the lowest value (1) indicated healthier animals. Statistical analysis For differences among breeds in terms of FEC, PCV, and body weight, FAMACHA was performed using the SAS version 6 (SAS Institute Inc., 1996). ANOVA was used to determine the difference among breed data. Differences were considered significant at P ≤ 0.05.

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تاریخ انتشار 2015