The introduction of Iberian cattle in the Americas after Columbus' arrival imposed high selection pressures on a limited number of animals over a brief period of time. Knowledge of the genomic regions selected during this process may help in enhancing climatic resilience and sustainable animal production. We first determined taurine and indicine contributions to the genomic structure of modern Creole cattle. Second, we inferred their demographic history using approximate Bayesian computation (ABC), linkage disequilibrium (LD) and Slope (NeS) analysis. Third, we performed whole genome scans for selection signatures based on cross-population extended haplotype homozygosity (XP-EHH) and population differentiation ( ) to disentangle the genetic mechanisms involved in adaptation and phenotypic change by a rapid and major environmental transition. To tackle these questions, we combined SNP array data (~54,000 SNPs) in Creole breeds with their modern putative Iberian ancestors. Reconstruction of the population history of Creoles from the end of the 15th century indicated a major demographic expansion until the introduction of zebu and commercial breeds into the Americas ~180 years ago, coinciding with a drastic contraction. NeS analysis provided insights into short-term complexity in population change and depicted a decrease/expansion episode at the end of the ABC-inferred expansion, as well as several additional fluctuations in with the attainment of the current small only towards the end of the 20th century. Selection signatures for tropical adaptation pinpointed the thermoregulatory slick hair coat region, identifying a new candidate gene (), as well as novel candidate regions involved in immune function, behavioural processes, iron metabolism and adaptation to new feeding conditions. The outcomes from this study will help in future-proofing farm animal genetic resources (FAnGR) by providing molecular tools that allow selection for improved cattle performance, resilience and welfare under climate change.
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http://dx.doi.org/10.1111/eva.12641 | DOI Listing |
Trop Anim Health Prod
September 2024
Facultad de Ciencias Veterinarias, Instituto de Genética Veterinaria "Ing. Fernando Noel Dulout" (IGEVET, UNLP-CONICET LA PLATA), Universidad Nacional de La Plata, La Plata (B1904), Buenos Aires, Argentina.
The common cattle tick Rhipicephalus microplus causes severe limitations to livestock production. Bovine genetics could be a decisive component for the success or failure of control programs for ticks and diseases transmitted. The objective of this work was to detect chromosomal regions associated with host resistance to R.
View Article and Find Full Text PDFVet World
August 2024
Colombian Agricultural Research Corporation - AGROSAVIA, Obonuco Research Center, Pasto, Colombia.
Background And Aim: In the Caribbean region of Colombia, the concomitance of endemic infectious agents is a common problem, and coinfections are possible, increasing the complexity of cattle herds' sanitary, reproductive, and productive problems. This study aimed to estimate the seroprevalence of bovine leukemia virus and its association with bovine infectious abortion in grazing Creole breeds from tropical herds in the Colombian Caribbean.
Materials And Methods: For the determination of bovine leukemia virus (BLV), bovine viral diarrhea virus (BVDV), bovine herpes virus-1 (BoHV-1), and (NC), the enzyme-linked immunosorbent assay technique was used.
Vet Immunol Immunopathol
October 2024
College of Agricultural Sciences, National University of Mar Del Plata, Balcarce 7620, Argentina; Institute of Innovation for Agricultural Production and Sustainable Development (IPADS), Argentina. Electronic address:
Protozoan parasite Neospora caninum causes abortion in infected cattle while others remain asymptomatic. Host immunity plays a critical role in the outcome of bovine neosporosis. Despite extensive research, there is a critical gap in therapeutic and preventive measures, and no effective vaccines are available.
View Article and Find Full Text PDFTrop Anim Health Prod
September 2024
Grupo de Investigación en Biodiversidad y Genética Molecular (BIOGEM), Universidad Nacional de Colombia, sede Medellín, Colombia.
PLoS One
August 2024
INRAE, ASSET, 97170, Petit-Bourg, France.
Structural variants play an important role in evolutionary processes. Besides, they constitute a large source of inter individual genetic variation that might represent a major factor in the aetiology of complex, multifactorial traits. Their importance in adaptation is becoming increasingly evident in literature.
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