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Anilkumar, T. V.

Publications and source records attributed to Anilkumar, T. V..

2 recordsLinked to original sources

European taurine vs Indian indicine cattle: a comparative genomic study reveals regions of differentiation during evolution and selection during crossbreeding

Cattle are broadly classified into two subspecies: Bos taurus, adapted to temperate climates, and Bos indicus, adapted to tropical environments. Indicine cattle show better heat tolerance and stronger disease resistance, whereas taurine cattle are known for higher milk yield and better meat quality. Improving milk yield while maintaining resistance to heat stress and infectious diseases is an important objective in cattle breeding. Marker-assisted selection is an effective approach for improving economically important traits, highlighting the need to understand genetic differences between taurine and indicine cattle. However, genome-wide comparisons between European taurine and Indian indicine cattle remain limited. To address this gap, whole-genome sequencing of 48 Indian indicine cattle was performed and combined with publicly available data. This enabled a comparative genomic analysis of 74 Indian indicine and 83 European taurine individuals to identify genes involved in heat tolerance and immune response. Genome-wide analyses using Fst and XP-CLR identified 4,343 and 1,457 differentiated genes, respectively, with 826 genes common to both methods. These genes were mainly associated with immune response, protein stability, and cytoskeletal structure. Strong selection signals were observed in three heat shock protein genes (DNAJC11, DNAJC5, and DNAJB11) and 229 immune-related genes. To examine the inheritance of these genes through crossbreeding, a haplotype-resolved genome assembly was generated for the Indian crossbreed Sunandini, which showed predominantly taurine ancestry (69.13-96.04%), with a smaller indicine contribution (1.22-1.87%). Several genes related to heat tolerance and immune response were inherited exclusively from indicine cattle, highlighting their importance for environmental adaptation and future breeding programs.

genomics↗

Hybrid de novo and haplotype resolved genome assembly of Vechur cattle - elucidating genetic varaiation

Cattle contribute to the nutritional needs and economy of a place. Performance and fitness depends on the response and adaptation to local climatic conditions. Genomic and genetic studies are important for advancing cattle breeding and availability of relevant reference genomes are essential. In the present study, the genome of a Vechur calf was sequenced on both short-read illumina and long-read nanopore platforms. Hybrid de novo assembly approach was deployed to obtain an average contigs length of 1.97 Mbp and N50 of 4.94 Mbp. Using a short-read genome sequence of the corresponding sire and dam, a haplotype-resolved genome was also assembled. In comparison to the taurine reference genome, we found 28982 autosomal structural variants, 16926990 SNVs with 883544 SNVs homozygous in the trio samples suggesting high prevalence of these SNPs in the population. Many of these SNPs have been reported to be associated with various QTLs including growth, milk yield and milk fat content which are crucial determinants of cattle production. Further, population genotype data analysis indicated that the present sample belongs to an Indian cattle breed forming a unique cluster of Bos indicus. Subsequent FST analysis revealed differentiation of Vechur cattle genome at multiple loci, especially those regions related to whole body growth and cell division especially IGF1, HMGA2, RRM2 and CD68 loci suggesting a possible role of these genes in its small stature and better disease resistance capabilities in comparison with the local crossbreeds. This provides an opportunity to select and engineer cattle breeds optimized for local conditions.

genomics↗