Araştırma Makalesi
BibTex RIS Kaynak Göster

Genetics of nematode resistance in pasture-raised Central Anatolian Merino lambs

Yıl 2026, Cilt: 31 Sayı: 1, 59 - 69, 11.03.2026
https://doi.org/10.37908/mkutbd.1738163
https://izlik.org/JA53KY93GJ

Öz

Gastrointestinal nematode infections are among the most economically significant health challenges in small ruminant production, particularly under extensive management systems. The genetic basis of host resistance offers a sustainable alternative to chemical control, which is increasingly limited due to rising anthelmintic resistance. In this study, we conducted a genome-wide association analysis (GWAS) to identify genomic regions associated with faecal egg count (FEC) as a proxy for nematode burden in 226 Central Anatolian Merino lambs raised on pasture. FEC exhibited moderate genomic heritability (h² = 0.22 ± 0.04), supporting the potential for genetic improvement. GWAS identified two SNPs that exceeded the genome-wide significance threshold and five additional loci at the chromosome-wide level. Notably, candidate genes including PLCL1, TCF7L2, ADRB1, GRIP1, VAC14, and TXNDC16 were located near significant SNPs. These genes are involved in immune signalling, epithelial barrier function, and redox regulation—mechanisms essential for helminth defence. Several regions overlapped with those previously reported for resistance to Eimeria and Moniezia spp., suggesting shared genetic pathways for gastrointestinal parasite resistance. These findings contribute to the understanding of the genetic architecture of nematode resistance and provide a foundation for the development of genomic selection strategies in native sheep breeds.

Etik Beyan

All animal procedures in the study were conducted under the oversight of the Animal Experiments Local Ethics Committee of Erciyes University, Kayseri, Türkiye (Approval Number: 22/191), under the ARRIVE guidelines.

Destekleyen Kurum

Erciyes Üniversitesi, BAP Koordinatörlüğü

Proje Numarası

FBAÜ-2023-12523

Teşekkür

The authors thank the Betül-Ziya Eren Genome and Stem Cell Center (GENKÖK) of Erciyes University for providing laboratory facilities. The animals were under the National Community-based Small Ruminant Breeding Program. Therefore, the authors kindly acknowledge the contribution of the General Directorate of Agricultural Research and Policies (Ministry of Agriculture and Forestry) of the Republic of Turkiye, who fund and run the National Community-based Small Ruminant Breeding Program. Furthermore, the authors are also grateful to the Genetic Laboratory of the International Center for Livestock Research and Training (ICLRT), where the laboratory analyses were implemented.

Kaynakça

  • Arzik, Y., Kizilaslan, M., Behrem, S., Piel, L. M. W., White, S. N. & Çınar, M. U. (2025). Exploring Genetic Factors Associated with Moniezia spp. Tapeworm Resistance in Central Anatolian Merino Sheep via GWAS Approach. Animals : An Open Access Journal from MDPI, 15(6). https://doi.org/10.3390/ani15060812
  • Arzik, Y., Kizilaslan, M., White, S. N., Piel, L. M. W. & Cinar, M. U. (2022). Estimates of genomic heritability and genome-wide association studies for blood parameters in Akkaraman sheep. Scientific Reports, 12(1), 18477. https://doi.org/10.1038/s41598-022-22966-8
  • Arzik, Y., Kizilaslan, M., White, S. N., Piel, L. M. W. & Çınar, M. U. (2022). Genomic Analysis of Gastrointestinal Parasite Resistance in Akkaraman Sheep. Genes, 13(12), 2177.
  • Arzık, Y., Kızılaslan, M., Behrem, S. & Çınar, M. U. (2025). Identification of Candidate Genes Associated with Eimeria spp. Oocyst Load in Central Anatolian Merino Sheep. Livestock Studies, 65(1), 33–39. https://doi.org/10.46897/livestockstudies.1728916
  • Atlija, M., Arranz, J.-J., Martinez-Valladares, M. & Gutiérrez-Gil, B. (2016). Detection and replication of QTL underlying resistance to gastrointestinal nematodes in adult sheep using the ovine 50K SNP array. Genetics Selection Evolution, 48(1), 1–16.
  • Aulchenko, Y. S., Ripke, S., Isaacs, A. & van Duijn, C. M. (2007). GenABEL: an R library for genome-wide association analysis. Bioinformatics, 23(10), 1294–1296. https://doi.org/10.1093/bioinformatics/btm108
  • Behrem, S. (2025). Unveiling the Pre-Weaning Growth Performance and Some Reproductive Characteristics of Akkaraman and Central Anatolian Merino Sheep. Veterinary Medicine and Science, 11(2), e70221. https://doi.org/https://doi.org/10.1002/vms3.70221
  • Behrem, S., Arzık, Y., Kızılaslan, M., Tütenk Doğdaş, S. & Yıldız, Ç. (2024). The Environmental Impact on Economically Significant Traits in Central Anatolian Merino Sheep. Black Sea Journal of Agriculture, 7(3), 327–334. https://doi.org/10.47115/bsagriculture.1454613
  • Behrem, S. & Gül, S. (2022). Effects of age and body region on wool characteristics of Merino sheep crossbreds in Turkey. Turkish Journal of Veterinary & Animal Sciences, 46(2), 235–247.
  • Coles, G. C., Rhodes, A. C. & Wolstenholme, A. J. (2005). Rapid selection for ivermectin resistance in Haemonchus contortus. Veterinary Parasitology, 129(3–4), 345–347. https://doi.org/10.1016/j.vetpar.2005.02.002
  • Committee for Medicinal Products for Veterinary Use (CVMP). (2017). Reflection paper on anthelmintic resistance.
  • Coppo, M., Chinenov, Y., Sacta, M. A. & Rogatsky, I. (2016). The transcriptional coregulator GRIP1 controls macrophage polarization and metabolic homeostasis. Nature Communications, 7, 12254. https://doi.org/10.1038/ncomms12254
  • Deochand, D. K., Dacic, M., Bale, M. J., Daman, A. W., Chaudhary, V., Josefowicz, S. Z., Oliver, D., Chinenov, Y. & Rogatsky, I. (2024). Mechanisms of epigenomic and functional convergence between glucocorticoid- and IL4-driven macrophage programming. Nature Communications, 15(1), 9000. https://doi.org/10.1038/s41467-024-52942-x
  • Devlin, B. & Roeder, K. (1999). Genomic control for association studies. Biometrics, 55(4), 997–1004. https://doi.org/10.1111/j.0006-341X.1999.00997.x
  • Geary TG, Hosking BC, Skuce, PJ, Von Samson-Himmelstjerna G, Maeder S, Holdsworth WP, V. J. (2012). (2012). WAAVP Guideline on anthelmintic combination products targeting nematode infections of ruminants and horses. In Vet Parasitol (Vol. 190, Issue 1).
  • Jin, T. (2016). Current Understanding on Role of the Wnt Signaling Pathway Effector TCF7L2 in Glucose Homeostasis. Endocrine Reviews, 37(3), 254–277. https://doi.org/10.1210/er.2015-1146
  • Kijas, J. W., Lenstra, J. A., Hayes, B., Boitard, S., Neto, L. R. P., San, M., Servin, B., Mcculloch, R., Whan, V., Gietzen, K., Paiva, S., Barendse, W., Ciani, E., Raadsma, H., Mcewan, J. & Dalrymple, B. (2012). Genome-Wide Analysis of the World ’ s Sheep Breeds Reveals High Levels of Historic Mixture and Strong Recent Selection. 10(2). https://doi.org/10.1371/journal.pbio.1001258
  • Kizilaslan, M., Arzik, Y. & Behrem, S. (2024). Genetic parameters for ewe lifetime productivity traits in Central Anatolian Merino sheep. Small Ruminant Research, 233, 107235. https://doi.org/https://doi.org/10.1016/j.smallrumres.2024.107235
  • Kizilaslan, M., Arzik, Y., Behrem, S., White, S. N. & Cinar, M. U. (2023). Comparative genomic characterization of indigenous fat-tailed Akkaraman sheep with local and transboundary sheep breeds. Food and Energy Security, September, 1–13. https://doi.org/10.1002/fes3.508
  • Kizilaslan, M., Arzik, Y., Behrem, S., Yavuz, E., White, S. N. & Cinar, M. U. (2024). Unravelling the Genetic Architecture of Serum Biochemical Indicators in Sheep. In Genes (Vol. 15, Issue 8). https://doi.org/10.3390/genes15080990
  • Kizilaslan, M., Arzik, Y., White, S. N., Piel, L. M. W. & Cinar, M. U. (2022). Genetic Parameters and Genomic Regions Underlying Growth and Linear Type Traits in Akkaraman Sheep. Genes, 13(8), 1414.
  • Luo, S., Li, X.-F., Yang, Y.-L., Song, B., Wu, S., Niu, X.-N., Wu, Y.-Y., Shi, W., Huang, C. & Li, J. (2022). PLCL1 regulates fibroblast-like synoviocytes inflammation via NLRP3 inflammasomes in rheumatoid arthritis. Advances in Rheumatology, 62(1), 25. https://doi.org/10.1186/s42358-022-00252-5
  • MAFF. (1986). Manual of Veterinary Parasitological Techniques.
  • McCarthy, M. I., Abecasis, G. R., Cardon, L. R., Goldstein, D. B., Little, J., Ioannidis, J. P. A. & Hirschhorn, J. N. (2008). Genome-wide association studies for complex traits: Consensus, uncertainty and challenges. Nature Reviews Genetics, 9(5), 356–369. https://doi.org/10.1038/nrg2344
  • Pacheco, A., McNeilly, T. N., Banos, G. & Conington, J. (2021a). Genetic parameters of animal traits associated with coccidian and nematode parasite load and growth in Scottish Blackface sheep. Animal, 15(4), 100185.
  • Pacheco, A., McNeilly, T. N., Banos, G. & Conington, J. (2021b). Genetic parameters of animal traits associated with coccidian and nematode parasite load and growth in Scottish Blackface sheep. Animal, 15(4), 100185. https://doi.org/10.1016/j.animal.2021.100185
  • Purcell, S., Neale, B., Todd-Brown, K., Thomas, L., Ferreira, M. A. R., Bender, D., Maller, J., Sklar, P., de Bakker, P. I. W., Daly, M. J. & Sham, P. C. (2007). PLINK: A Tool Set for Whole-Genome Association and Population-Based Linkage Analyses. The American Journal of Human Genetics, 81(3), 559–575. https://doi.org/10.1086/519795
  • Ruan, W., Liu, R., Yang, H., Ren, J. & Liu, Y. (2022). Genetic Loci in Phospholipase C-Like 1 (PLCL1) are Protective Factors for Allergic Rhinitis in Han Population of Northern Shaanxi, China. Journal of Asthma and Allergy, 15, 1321–1335. https://doi.org/10.2147/JAA.S372314
  • Schulze, U., Vollenbröker, B., Braun, D. A., Van Le, T., Granado, D., Kremerskothen, J., Fränzel, B., Klosowski, R., Barth, J., Fufezan, C., Wolters, D. A., Pavenstädt, H. & Weide, T. (2014). The Vac14-interaction network is linked to regulators of the endolysosomal and autophagic pathway. Molecular & Cellular Proteomics : MCP, 13(6), 1397–1411. https://doi.org/10.1074/mcp.M113.034108
  • Sechi, S., Salaris, S., Scala, A., Rupp, R., Moreno, C., Bishop, S. & Casu, S. (2009). Estimation of (co) variance components of nematode parasites resistance and somatic cell count in dairy sheep. Italian Journal of Animal Science, 8(sup2), 156–158.
  • Team, R. C. (2020). R: A language and environment for statistical computing. In R Foundation for Statistical Computing, Vienna, Austria.
  • Tuncer, S. S., Behrem, S., Arzık, Y. & Kızılaslan, M. (2022). Some Morphologic Characteristics of Central Anatolian Merino Sheep. Turkish Journal of Agriculture - Food Science and Technology, 10(12 SE-Research Paper), 2410–2414. https://doi.org/10.24925/turjaf.v10i12.2410-2414.5293
  • Yaman, Y., Önaldi, A. T., Doğan, Ş., Kirbaş, M., Behrem, S. & Kal, Y. (2025). Exploring the polygenic landscape of wool traits in Turkish Merinos through multi-locus GWAS approaches: middle Anatolian Merino. Scientific Reports, 15(1), 10611. https://doi.org/10.1038/s41598-025-95099-3
  • Zito, E., Guarrera, L. & Janssen-Heininger, Y. M. W. (2024). Fingerprint of the oxido-reductase ERO1: A protein disulfide bond producer and supporter of cancer. Biochimica et Biophysica Acta. Reviews on Cancer, 1879(1), 189027. https://doi.org/10.1016/j.bbcan.2023.189027
  • Zvinorova, P. I., Halimani, T. E., Muchadeyi, F. C., Matika, O., Riggio, V. & Dzama, K. (2016). Prevalence and risk factors of gastrointestinal parasitic infections in goats in low-input low-output farming systems in Zimbabwe. Small Ruminant Research, 143, 75–83.

Merada yetiştirilen Orta Anadolu Merinosu kuzularında nematod direncinin genetiği

Yıl 2026, Cilt: 31 Sayı: 1, 59 - 69, 11.03.2026
https://doi.org/10.37908/mkutbd.1738163
https://izlik.org/JA53KY93GJ

Öz

Gastrointestinal nematod enfeksiyonları, özellikle ekstansif yetiştiricilik sistemlerinde küçükbaş hayvancılığın karşılaştığı en önemli ekonomik sağlık sorunlarından biridir. Konak hayvanın direnç mekanizmasının genetik temeli, artan antihelmintik direnci nedeniyle giderek sınırlanan kimyasal kontrol yöntemlerine karşı sürdürülebilir bir alternatif sunmaktadır. Bu çalışmada, merada yetiştirilen 226 Orta Anadolu Merinosu kuzusunda nematod yükünün göstergesi olarak kullanılan dışkı yumurta sayısı (FEC) ile ilişkili genomik bölgeleri belirlemek amacıyla bir genom çapında ilişkilendirme analizi (GWAS) gerçekleştirilmiştir. FEC için hesaplanan genomik kalıtım derecesi orta düzeyde bulunmuştur (h² = 0.22 ± 0.04) ve bu durum, genetik iyileştirme potansiyelini desteklemektedir. GWAS sonucunda, iki SNP genom çapında anlamlılık eşiğini aşarken, beş ek bölge kromozom çapında anlamlı bulunmuştur. Anlamlı SNP'lerin yakınında bulunan aday genler arasında PLCL1, TCF7L2, ADRB1, GRIP1, VAC14 ve TXNDC16 yer almakta olup, bu genler bağışıklık sinyal iletimi, epitel bariyer fonksiyonu ve redoks düzenlemesi gibi helmint savunmasında temel rol oynayan mekanizmalarla ilişkilidir. Ayrıca, bazı genomik bölgeler daha önce Eimeria ve Moniezia spp. direnç çalışmalarıyla da örtüşmektedir; bu durum, gastrointestinal parazit direnci için ortak genetik yolların varlığını düşündürmektedir. Elde edilen bulgular, nematod direncinin genetik yapısını daha iyi anlamamıza katkı sağlamakta ve yerli koyun ırklarında genomik seleksiyon stratejilerinin geliştirilmesi için sağlam bir temel oluşturmaktadır.

Proje Numarası

FBAÜ-2023-12523

Kaynakça

  • Arzik, Y., Kizilaslan, M., Behrem, S., Piel, L. M. W., White, S. N. & Çınar, M. U. (2025). Exploring Genetic Factors Associated with Moniezia spp. Tapeworm Resistance in Central Anatolian Merino Sheep via GWAS Approach. Animals : An Open Access Journal from MDPI, 15(6). https://doi.org/10.3390/ani15060812
  • Arzik, Y., Kizilaslan, M., White, S. N., Piel, L. M. W. & Cinar, M. U. (2022). Estimates of genomic heritability and genome-wide association studies for blood parameters in Akkaraman sheep. Scientific Reports, 12(1), 18477. https://doi.org/10.1038/s41598-022-22966-8
  • Arzik, Y., Kizilaslan, M., White, S. N., Piel, L. M. W. & Çınar, M. U. (2022). Genomic Analysis of Gastrointestinal Parasite Resistance in Akkaraman Sheep. Genes, 13(12), 2177.
  • Arzık, Y., Kızılaslan, M., Behrem, S. & Çınar, M. U. (2025). Identification of Candidate Genes Associated with Eimeria spp. Oocyst Load in Central Anatolian Merino Sheep. Livestock Studies, 65(1), 33–39. https://doi.org/10.46897/livestockstudies.1728916
  • Atlija, M., Arranz, J.-J., Martinez-Valladares, M. & Gutiérrez-Gil, B. (2016). Detection and replication of QTL underlying resistance to gastrointestinal nematodes in adult sheep using the ovine 50K SNP array. Genetics Selection Evolution, 48(1), 1–16.
  • Aulchenko, Y. S., Ripke, S., Isaacs, A. & van Duijn, C. M. (2007). GenABEL: an R library for genome-wide association analysis. Bioinformatics, 23(10), 1294–1296. https://doi.org/10.1093/bioinformatics/btm108
  • Behrem, S. (2025). Unveiling the Pre-Weaning Growth Performance and Some Reproductive Characteristics of Akkaraman and Central Anatolian Merino Sheep. Veterinary Medicine and Science, 11(2), e70221. https://doi.org/https://doi.org/10.1002/vms3.70221
  • Behrem, S., Arzık, Y., Kızılaslan, M., Tütenk Doğdaş, S. & Yıldız, Ç. (2024). The Environmental Impact on Economically Significant Traits in Central Anatolian Merino Sheep. Black Sea Journal of Agriculture, 7(3), 327–334. https://doi.org/10.47115/bsagriculture.1454613
  • Behrem, S. & Gül, S. (2022). Effects of age and body region on wool characteristics of Merino sheep crossbreds in Turkey. Turkish Journal of Veterinary & Animal Sciences, 46(2), 235–247.
  • Coles, G. C., Rhodes, A. C. & Wolstenholme, A. J. (2005). Rapid selection for ivermectin resistance in Haemonchus contortus. Veterinary Parasitology, 129(3–4), 345–347. https://doi.org/10.1016/j.vetpar.2005.02.002
  • Committee for Medicinal Products for Veterinary Use (CVMP). (2017). Reflection paper on anthelmintic resistance.
  • Coppo, M., Chinenov, Y., Sacta, M. A. & Rogatsky, I. (2016). The transcriptional coregulator GRIP1 controls macrophage polarization and metabolic homeostasis. Nature Communications, 7, 12254. https://doi.org/10.1038/ncomms12254
  • Deochand, D. K., Dacic, M., Bale, M. J., Daman, A. W., Chaudhary, V., Josefowicz, S. Z., Oliver, D., Chinenov, Y. & Rogatsky, I. (2024). Mechanisms of epigenomic and functional convergence between glucocorticoid- and IL4-driven macrophage programming. Nature Communications, 15(1), 9000. https://doi.org/10.1038/s41467-024-52942-x
  • Devlin, B. & Roeder, K. (1999). Genomic control for association studies. Biometrics, 55(4), 997–1004. https://doi.org/10.1111/j.0006-341X.1999.00997.x
  • Geary TG, Hosking BC, Skuce, PJ, Von Samson-Himmelstjerna G, Maeder S, Holdsworth WP, V. J. (2012). (2012). WAAVP Guideline on anthelmintic combination products targeting nematode infections of ruminants and horses. In Vet Parasitol (Vol. 190, Issue 1).
  • Jin, T. (2016). Current Understanding on Role of the Wnt Signaling Pathway Effector TCF7L2 in Glucose Homeostasis. Endocrine Reviews, 37(3), 254–277. https://doi.org/10.1210/er.2015-1146
  • Kijas, J. W., Lenstra, J. A., Hayes, B., Boitard, S., Neto, L. R. P., San, M., Servin, B., Mcculloch, R., Whan, V., Gietzen, K., Paiva, S., Barendse, W., Ciani, E., Raadsma, H., Mcewan, J. & Dalrymple, B. (2012). Genome-Wide Analysis of the World ’ s Sheep Breeds Reveals High Levels of Historic Mixture and Strong Recent Selection. 10(2). https://doi.org/10.1371/journal.pbio.1001258
  • Kizilaslan, M., Arzik, Y. & Behrem, S. (2024). Genetic parameters for ewe lifetime productivity traits in Central Anatolian Merino sheep. Small Ruminant Research, 233, 107235. https://doi.org/https://doi.org/10.1016/j.smallrumres.2024.107235
  • Kizilaslan, M., Arzik, Y., Behrem, S., White, S. N. & Cinar, M. U. (2023). Comparative genomic characterization of indigenous fat-tailed Akkaraman sheep with local and transboundary sheep breeds. Food and Energy Security, September, 1–13. https://doi.org/10.1002/fes3.508
  • Kizilaslan, M., Arzik, Y., Behrem, S., Yavuz, E., White, S. N. & Cinar, M. U. (2024). Unravelling the Genetic Architecture of Serum Biochemical Indicators in Sheep. In Genes (Vol. 15, Issue 8). https://doi.org/10.3390/genes15080990
  • Kizilaslan, M., Arzik, Y., White, S. N., Piel, L. M. W. & Cinar, M. U. (2022). Genetic Parameters and Genomic Regions Underlying Growth and Linear Type Traits in Akkaraman Sheep. Genes, 13(8), 1414.
  • Luo, S., Li, X.-F., Yang, Y.-L., Song, B., Wu, S., Niu, X.-N., Wu, Y.-Y., Shi, W., Huang, C. & Li, J. (2022). PLCL1 regulates fibroblast-like synoviocytes inflammation via NLRP3 inflammasomes in rheumatoid arthritis. Advances in Rheumatology, 62(1), 25. https://doi.org/10.1186/s42358-022-00252-5
  • MAFF. (1986). Manual of Veterinary Parasitological Techniques.
  • McCarthy, M. I., Abecasis, G. R., Cardon, L. R., Goldstein, D. B., Little, J., Ioannidis, J. P. A. & Hirschhorn, J. N. (2008). Genome-wide association studies for complex traits: Consensus, uncertainty and challenges. Nature Reviews Genetics, 9(5), 356–369. https://doi.org/10.1038/nrg2344
  • Pacheco, A., McNeilly, T. N., Banos, G. & Conington, J. (2021a). Genetic parameters of animal traits associated with coccidian and nematode parasite load and growth in Scottish Blackface sheep. Animal, 15(4), 100185.
  • Pacheco, A., McNeilly, T. N., Banos, G. & Conington, J. (2021b). Genetic parameters of animal traits associated with coccidian and nematode parasite load and growth in Scottish Blackface sheep. Animal, 15(4), 100185. https://doi.org/10.1016/j.animal.2021.100185
  • Purcell, S., Neale, B., Todd-Brown, K., Thomas, L., Ferreira, M. A. R., Bender, D., Maller, J., Sklar, P., de Bakker, P. I. W., Daly, M. J. & Sham, P. C. (2007). PLINK: A Tool Set for Whole-Genome Association and Population-Based Linkage Analyses. The American Journal of Human Genetics, 81(3), 559–575. https://doi.org/10.1086/519795
  • Ruan, W., Liu, R., Yang, H., Ren, J. & Liu, Y. (2022). Genetic Loci in Phospholipase C-Like 1 (PLCL1) are Protective Factors for Allergic Rhinitis in Han Population of Northern Shaanxi, China. Journal of Asthma and Allergy, 15, 1321–1335. https://doi.org/10.2147/JAA.S372314
  • Schulze, U., Vollenbröker, B., Braun, D. A., Van Le, T., Granado, D., Kremerskothen, J., Fränzel, B., Klosowski, R., Barth, J., Fufezan, C., Wolters, D. A., Pavenstädt, H. & Weide, T. (2014). The Vac14-interaction network is linked to regulators of the endolysosomal and autophagic pathway. Molecular & Cellular Proteomics : MCP, 13(6), 1397–1411. https://doi.org/10.1074/mcp.M113.034108
  • Sechi, S., Salaris, S., Scala, A., Rupp, R., Moreno, C., Bishop, S. & Casu, S. (2009). Estimation of (co) variance components of nematode parasites resistance and somatic cell count in dairy sheep. Italian Journal of Animal Science, 8(sup2), 156–158.
  • Team, R. C. (2020). R: A language and environment for statistical computing. In R Foundation for Statistical Computing, Vienna, Austria.
  • Tuncer, S. S., Behrem, S., Arzık, Y. & Kızılaslan, M. (2022). Some Morphologic Characteristics of Central Anatolian Merino Sheep. Turkish Journal of Agriculture - Food Science and Technology, 10(12 SE-Research Paper), 2410–2414. https://doi.org/10.24925/turjaf.v10i12.2410-2414.5293
  • Yaman, Y., Önaldi, A. T., Doğan, Ş., Kirbaş, M., Behrem, S. & Kal, Y. (2025). Exploring the polygenic landscape of wool traits in Turkish Merinos through multi-locus GWAS approaches: middle Anatolian Merino. Scientific Reports, 15(1), 10611. https://doi.org/10.1038/s41598-025-95099-3
  • Zito, E., Guarrera, L. & Janssen-Heininger, Y. M. W. (2024). Fingerprint of the oxido-reductase ERO1: A protein disulfide bond producer and supporter of cancer. Biochimica et Biophysica Acta. Reviews on Cancer, 1879(1), 189027. https://doi.org/10.1016/j.bbcan.2023.189027
  • Zvinorova, P. I., Halimani, T. E., Muchadeyi, F. C., Matika, O., Riggio, V. & Dzama, K. (2016). Prevalence and risk factors of gastrointestinal parasitic infections in goats in low-input low-output farming systems in Zimbabwe. Small Ruminant Research, 143, 75–83.
Toplam 35 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hayvansal Üretim (Diğer)
Bölüm Araştırma Makalesi
Yazarlar

Yunus Arzık 0000-0002-3068-8155

Mehmet Kızılaslan 0000-0001-6305-8742

Sedat Behrem 0000-0002-7351-1229

Mehmet Ulaş Çınar 0000-0001-5894-5072

Proje Numarası FBAÜ-2023-12523
Gönderilme Tarihi 9 Temmuz 2025
Kabul Tarihi 10 Eylül 2025
Yayımlanma Tarihi 11 Mart 2026
DOI https://doi.org/10.37908/mkutbd.1738163
IZ https://izlik.org/JA53KY93GJ
Yayımlandığı Sayı Yıl 2026 Cilt: 31 Sayı: 1

Kaynak Göster

APA Arzık, Y., Kızılaslan, M., Behrem, S., & Çınar, M. U. (2026). Genetics of nematode resistance in pasture-raised Central Anatolian Merino lambs. Mustafa Kemal Üniversitesi Tarım Bilimleri Dergisi, 31(1), 59-69. https://doi.org/10.37908/mkutbd.1738163

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