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Gregor Gorjanc

Explore the profile of Gregor Gorjanc including associated specialties, affiliations and a list of published articles. Areas
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Articles 86
Citations 1218
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Recent Articles
1.
Vanvanhossou S, Yin T, Gorjanc G, Konig S
Genet Sel Evol . 2025 Feb; 57(1):6. PMID: 39979829
Background: Crossbreeding is successfully implemented worldwide to improve animal productivity and adaptability. However, recurrent failures of crossbreeding programmes in African countries imply the need to design effective strategies for the...
2.
Brajkovic V, Pocrnic I, Kaps M, Spehar M, Cubric-Curik V, Ristov S, et al.
J Dairy Sci . 2024 Oct; 108(1):664-678. PMID: 39414016
Substantial advances in livestock traits have been achieved primarily through selection strategies targeting variation in the nuclear genome, with little attention given to mitogenome variation. We analyzed the influence of...
3.
Wong Y, Ignatieva A, Koskela J, Gorjanc G, Wohns A, Kelleher J
Genetics . 2024 Jul; 228(1). PMID: 39013109
As a result of recombination, adjacent nucleotides can have different paths of genetic inheritance and therefore the genealogical trees for a sample of DNA sequences vary along the genome. The...
4.
Tumas H, Ilska J, Gerardi S, Laroche J, AHara S, Boyle B, et al.
G3 (Bethesda) . 2024 Feb; 14(4). PMID: 38366548
In species with large and complex genomes such as conifers, dense linkage maps are a useful resource for supporting genome assembly and laying the genomic groundwork at the structural, populational,...
5.
Bancic J, Odeny D, Ojulong H, Josiah S, Buntjer J, Gaynor R, et al.
Plant Genome . 2023 Nov; 17(1):e20392. PMID: 37986545
Advances in sequencing technologies mean that insights into crop diversification can now be explored in crops beyond major staples. We use a genome assembly of finger millet, an allotetraploid orphan...
6.
Wong Y, Ignatieva A, Koskela J, Gorjanc G, Wohns A, Kelleher J
bioRxiv . 2023 Nov; PMID: 37961279
As a result of recombination, adjacent nucleotides can have different paths of genetic inheritance and therefore the genealogical trees for a sample of DNA sequences vary along the genome. The...
7.
Tolhurst D, Gaynor R, Gardunia B, Hickey J, Gorjanc G
Theor Appl Genet . 2023 Aug; 136(8):178. PMID: 37542182
No abstract available.
8.
Lauterbur M, Cavassim M, Gladstein A, Gower G, Pope N, Tsambos G, et al.
Elife . 2023 Jun; 12. PMID: 37342968
Simulation is a key tool in population genetics for both methods development and empirical research, but producing simulations that recapitulate the main features of genomic datasets remains a major obstacle....
9.
Desire S, Johnsson M, Ros-Freixedes R, Chen C, Holl J, Herring W, et al.
Genet Sel Evol . 2023 Jun; 55(1):42. PMID: 37322449
Background: Genome-wide association studies (GWAS) aim at identifying genomic regions involved in phenotype expression, but identifying causative variants is difficult. Pig Combined Annotation Dependent Depletion (pCADD) scores provide a measure...
10.
Oliveira T, Obsteter J, Pocrnic I, Heslot N, Gorjanc G
Genet Sel Evol . 2023 Jun; 55(1):36. PMID: 37268883
Background: In breeding programmes, the observed genetic change is a sum of the contributions of different selection paths represented by groups of individuals. Quantifying these sources of genetic change is...