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14
result(s) for
"Kristjansson, Thorvaldur"
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Genetic diversity and signatures of selection in Icelandic horses and Exmoor ponies
by
Lindgren, Gabriella
,
Sigurðardóttir, Heiðrún
,
Ablondi, Michela
in
20th century
,
Adaptation
,
Agricultural and Veterinary Sciences
2024
Background
The Icelandic horse and Exmoor pony are ancient, native breeds, adapted to harsh environmental conditions and they have both undergone severe historic bottlenecks. However, in modern days, the selection pressures on these breeds differ substantially. The aim of this study was to assess genetic diversity in both breeds through expected (H
E
) and observed heterozygosity (H
O
) and effective population size (Ne). Furthermore, we aimed to identify runs of homozygosity (ROH) to estimate and compare genomic inbreeding and signatures of selection in the breeds.
Results
H
O
was estimated at 0.34 and 0.33 in the Icelandic horse and Exmoor pony, respectively, aligning closely with H
E
of 0.34 for both breeds. Based on genomic data, the Ne for the last generation was calculated to be 125 individuals for Icelandic horses and 42 for Exmoor ponies. Genomic inbreeding coefficient (F
ROH
) ranged from 0.08 to 0.20 for the Icelandic horse and 0.12 to 0.27 for the Exmoor pony, with the majority of inbreeding attributed to short ROHs in both breeds. Several ROH islands associated with performance were identified in the Icelandic horse, featuring target genes such as
DMRT3
,
DOCK8
,
EDNRB
,
SLAIN1
, and
NEURL1
. Shared ROH islands between both breeds were linked to metabolic processes (
FOXO1
), body size, and the immune system (
CYRIB
), while private ROH islands in Exmoor ponies were associated with coat colours (
ASIP
,
TBX3
,
OCA2
), immune system (
LYG1
,
LYG2
), and fertility (
TEX14
,
SPO11
,
ADAM20
).
Conclusions
Evaluations of genetic diversity and inbreeding reveal insights into the evolutionary trajectories of both breeds, highlighting the consequences of population bottlenecks. While the genetic diversity in the Icelandic horse is acceptable, a critically low genetic diversity was estimated for the Exmoor pony, which requires further validation. Identified signatures of selection highlight the differences in the use of the two breeds as well as their adaptive trait similarities. The results provide insight into genomic regions under selection pressure in a gaited performance horse breed and various adaptive traits in small-sized native horse breeds. This understanding contributes to preserving genetic diversity and population health in these equine populations.
Journal Article
Genetic influence of a STAU2 frameshift mutation and RELN regulatory elements on performance in Icelandic horses
2025
Selection for performance in horse breeding benefits from precise genetic insights at a molecular level, but knowledge remains limited. This study used whole-genome sequences of 39 elite and non-elite Icelandic horses to identify candidate causal variants linked to previously identified haplotypes in the
STAU2
and
RELN
genes affecting pace and other gaits. A frameshift variant in linkage disequilibrium with the previously identified haplotypes in the
STAU2
gene (r
2
= 0.85) was identified within a predicted
STAU2
transcript. This variant alters the amino acid sequence and introduces a premature stop codon but does not appear harmful or disease-causing and is potentially unique to equine biology. A large portion of the
RELN
haplotype overlapped with an H3K27me3 modification mark, suggesting a regulatory role of this region. Despite the small sample size, the
RELN
haplotype’s effects were validated for tölt, trot, and canter/gallop. Additionally, the
RELN
haplotype significantly influenced the age at which horses were presented for breeding field tests, indicating a potential role of the region in precocity and trainability. Functional experiments are needed to further investigate the regions’ influences on biological processes and their potential impact on horse performance.
Journal Article
The genetics of gaits in Icelandic horses goes beyond DMRT3, with RELN and STAU2 identified as two new candidate genes
by
Lindgren, Gabriella
,
Boije, Henrik
,
Rhodin, Marie
in
Agricultural and Veterinary Sciences
,
Agricultural Biotechnology
,
Agriculture
2023
Background
In domesticated animals, many important traits are complex and regulated by a large number of genes, genetic interactions, and environmental influences. The ability of Icelandic horses to perform the gait ‘pace’ is largely influenced by a single mutation in the
DMRT3
gene, but genetic modifiers likely exist. The aim of this study was to identify novel genetic factors that influence pacing ability and quality of the gait through a genome-wide association study (GWAS) and correlate new findings to previously identified quantitative trait loci (QTL) and mutations.
Results
Three hundred and seventy-two Icelandic horses were genotyped with the 670 K+ Axiom Equine Genotyping Array, of which 362 had gait scores from breeding field tests. A GWAS revealed several SNPs on
Equus caballus
chromosomes (ECA) 4, 9, and 20 that were associated (
p
< 1.0 × 10
–5
) with the breeding field test score for pace. The two novel QTL on ECA4 and 9 were located within the
RELN
and
STAU2
genes, respectively, which have previously been associated with locomotor behavior in mice. Haplotypes were identified and the most frequent one for each of these two QTL had a large favorable effect on pace score. The second most frequent haplotype for the
RELN
gene was positively correlated with scores for tölt, trot, gallop, and canter. Similarly, the second most frequent haplotype for the
STAU2
gene had favorable effects on scores for trot and gallop. Different genotype ratios of the haplotypes in the
RELN
and
STAU2
genes were also observed in groups of horses with different levels of pacing ability. Furthermore, interactions (
p
< 0.05) were detected for the QTL in the
RELN
and
STAU2
genes with the
DMRT3
gene. The novel QTL on ECA4, 9, and 20, along with the effects of the
DMRT3
variant, were estimated to account jointly for 27.4% of the phenotypic variance of the gait pace.
Conclusions
Our findings provide valuable information about the genetic architecture of pace beyond the contribution of the
DMRT3
gene and indicate genetic interactions that contribute to the complexity of this trait. Further investigation is needed to fully understand the underlying genetic factors and interactions.
Journal Article
Bit-related lesions in Icelandic competition horses
by
Frey, Rebecka
,
Björnsdóttir, Sigríður
,
Kristjansson, Thorvaldur
in
Analysis
,
Animal Anatomy
,
Animal Welfare
2014
Background
Oral lesions related to the use of the bit and bridle are reported to be common findings in horses worldwide and represent an important animal welfare issue. In order to provide an overview of bit-related lesions in Icelandic competition horses, a field examination of the rostral part of the oral cavity was performed in 424 competition horses coming to the two major national horse events in Iceland in 2012. Records from repeated examination of 77 horses prior to the finals were used to assess potential risk factors.
Results
Mild lesions were recorded in 152 horses (36%) prior to the preliminary rounds. They were most often located in the commissures of the lips and the adjacent buccal mucosa (n = 111). Severe lesions were found in 32 (8%) horses. For 77 horses examined prior to the finals, the frequency of findings in the area of the mandibular interdental space (bars of the mandible) had increased from 8% to 31% (
P
< 0.0001). These findings were most often (16/24) regarded as severe. The presence of lesions on the bars was strongly associated to the use of curb bits with a port (OR = 75,
P
= 0.009).
Conclusions
Bit-related lesions were found to be a general problem in Icelandic competition horses. The type of bits used influenced both the location and the severity of the lesions. The use of curb bits with a port was found to be a decisive risk factor for lesions on the bars of the mandible, most of which were regarded as severe. The results also raised questions about the head and neck carriage demanded for the competition horses.
Journal Article
A QTL for conformation of back and croup influences lateral gait quality in Icelandic horses
by
Velie, Brandon D.
,
Lindgren, Gabriella
,
Jouni, Ahmad
in
Animal and Dairy Science
,
Animal Genetics and Genomics
,
Animal husbandry
2021
Background
The back plays a vital role in horse locomotion, where the spine functions as a spring during the stride cycle. A complex interaction between the spine and the muscles of the back contribute to locomotion soundness, gait ability, and performance of riding and racehorses. Conformation is commonly used to select horses for breeding and performance in multiple horse breeds, where the back and croup conformation plays a significant role. The conformation of back and croup plays an important role on riding ability in Icelandic horses. However, the genes behind this trait are still unknown. Therefore, the aim of this study was to identify genomic regions associated with conformation of back and croup in Icelandic horses and to investigate their effects on riding ability. One hundred seventy-seven assessed Icelandic horses were included in the study. A genome-wide association analysis was performed using the 670 K+ Axiom Equine Genotyping Array, and the effects of different haplotypes in the top associated region were estimated for riding ability and additional conformation traits assessed during breeding field tests.
Results
A suggestive quantitative trait loci (QTL) for the score of back and croup was detected on
Equus caballus
(ECA) 22 (
p
-value = 2.67 × 10
− 7
). Haplotype analysis revealed two opposite haplotypes, which resulted in higher and lower scores of the back and croup, respectively (
p
-value < 0.001). Horses with the favorable haplotype were more inclined to have a well-balanced backline with an uphill conformation and had, on average, higher scores for the lateral gaits tölt (
p
-value = 0.02) and pace (
p
-value = 0.004). This genomic region harbors three genes:
C20orf85
,
ANKRD60
and
LOC100056167. ANKRD60
is associated with body height in humans
. C20orf85
and
ANKRD60
are potentially linked to adolescent idiopathic scoliosis in humans.
Conclusions
Our results show that the detected QTL for conformation of back and croup is of importance for quality of lateral gaits in Icelandic horses. These findings could result in a genetic test to aid in the selection of breeding horses, thus they are of major interest for horse breeders. The results may also offer a gateway to comparative functional genomics by potentially linking both motor laterality and back inclination in horses with scoliosis in humans.
Journal Article
Strong Constraints on Aerosol-Cloud Interactions from Volcanic Eruptions
by
Oreopoulos, Lazaros
,
Coe, Hugh
,
Hill, Adrian A.
in
704/106/35
,
704/106/694/1108
,
704/172/4081
2017
Aerosols have a potentially large effect on climate, particularly through their interactions with clouds, but the magnitude of this effect is highly uncertain. Large volcanic eruptions produce sulfur dioxide, which in turn produces aerosols; these eruptions thus represent a natural experiment through which to quantify aerosol-cloud interactions. Here we show that the massive 2014-2015 fissure eruption in Holuhraun, Iceland, reduced the size of liquid cloud droplets - consistent with expectations - but had no discernible effect on other cloud properties. The reduction in droplet size led to cloud brightening and global-mean radiative forcing of around minus 0.2 watts per square metre for September to October 2014. Changes in cloud amount or cloud liquid water path, however, were undetectable, indicating that these indirect effects, and cloud systems in general, are well buffered against aerosol changes. This result will reduce uncertainties in future climate projections, because we are now able to reject results from climate models with an excessive liquid-water-path response.
Journal Article
Toward higher-performance bionic limbs for wider clinical use
by
Ingvarsson, Thorvaldur
,
Kristjánsson, Kristleifur
,
Stieglitz, Thomas
in
631/1647/1453/1451
,
631/378/2629
,
631/378/2632
2023
Most prosthetic limbs can autonomously move with dexterity, yet they are not perceived by the user as belonging to their own body. Robotic limbs can convey information about the environment with higher precision than biological limbs, but their actual performance is substantially limited by current technologies for the interfacing of the robotic devices with the body and for transferring motor and sensory information bidirectionally between the prosthesis and the user. In this Perspective, we argue that direct skeletal attachment of bionic devices via osseointegration, the amplification of neural signals by targeted muscle innervation, improved prosthesis control via implanted muscle sensors and advanced algorithms, and the provision of sensory feedback by means of electrodes implanted in peripheral nerves, should all be leveraged towards the creation of a new generation of high-performance bionic limbs. These technologies have been clinically tested in humans, and alongside mechanical redesigns and adequate rehabilitation training should facilitate the wider clinical use of bionic limbs.
This Perspective argues that technologies for the neural interfacing of robotic devices with the body that have been clinically tested in humans should be leveraged toward the creation of a new generation of high-performance bionic limbs.
Journal Article
Common variants on 9q22.33 and 14q13.3 predispose to thyroid cancer in European populations
by
Mayordomo, Jose I
,
Stacey, Simon N
,
Gulcher, Jeffrey R
in
Agriculture
,
Animal Genetics and Genomics
,
Biological and medical sciences
2009
Julius Gudmundsson and colleagues report the association of two SNPs on chromosomes 9 and 14 with thyroid cancer in European populations. The variants are near
FOXE1
and
NKX2-1
, both good biological candidates, and individuals who are homozygous for both risk variants have a 5.7-fold greater risk of thyroid cancer.
In order to search for sequence variants conferring risk of thyroid cancer we conducted a genome-wide association study in 192 and 37,196 Icelandic cases and controls, respectively, followed by a replication study in individuals of European descent. Here we show that two common variants, located on 9q22.33 and 14q13.3, are associated with the disease. Overall, the strongest association signals were observed for rs965513 on 9q22.33 (OR = 1.75;
P
= 1.7 × 10
−27
) and rs944289 on 14q13.3 (OR = 1.37;
P
= 2.0 × 10
−9
). The gene nearest to the 9q22.33 locus is
FOXE1
(
TTF2
) and
NKX2-1
(
TTF1
) is among the genes located at the 14q13.3 locus. Both variants contribute to an increased risk of both papillary and follicular thyroid cancer. Approximately 3.7% of individuals are homozygous for both variants, and their estimated risk of thyroid cancer is 5.7-fold greater than that of noncarriers. In a study on a large sample set from the general population, both risk alleles are associated with low concentrations of thyroid stimulating hormone (TSH), and the 9q22.33 allele is associated with low concentration of thyroxin (T
4
) and high concentration of triiodothyronine (T
3
).
Journal Article
Sequence variant at 4q25 near PITX2 associates with appendicitis
by
Oddsson, Asmundur
,
Thorleifsson, Gudmar
,
Kiemeney, Lambertus A.
in
45/43
,
631/208/135
,
631/208/205/2138
2017
Appendicitis is one of the most common conditions requiring acute surgery and can pose a threat to the lives of affected individuals. We performed a genome-wide association study of appendicitis in 7,276 Icelandic and 1,139 Dutch cases and large groups of controls. In a combined analysis of the Icelandic and Dutch data, we detected a single signal represented by an intergenic variant rs2129979 [G] close to the gene
PITX2
associating with increased risk of appendicitis (OR = 1.15, P = 1.8 × 10
−11
). We only observe the association in patients diagnosed in adulthood. The marker is close to, but distinct from, a set of markers reported to associate with atrial fibrillation, which have been linked to
PITX2
.
PITX2
has been implicated in determination of right-left symmetry during development. Anomalies in organ arrangement have been linked to increased prevalence of gastrointestinal and intra-abdominal complications, which may explain the effect of rs2129979 on appendicitis risk.
Journal Article