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result(s) for
"Mereu, Paolo"
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Phenotype transition from wild mouflon to domestic sheep
by
Leoni, Giovanni Giuseppe
,
Naitana, Salvatore
,
Mereu, Paolo
in
Agriculture
,
Analysis
,
Animal Genetics and Genomics
2024
The domestication of animals started around 12,000 years ago in the Near East region. This “endless process” is characterized by the gradual accumulation of changes that progressively marked the genetic, phenotypic and physiological differences between wild and domesticated species. The main distinctive phenotypic characteristics are not all directly attributable to the human-mediated selection of more productive traits. In the last decades, two main hypotheses have been proposed to clarify the emergence of such a set of phenotypic traits across a variety of domestic species. The first hypothesis relates the phenotype of the domesticated species to an altered thyroid hormone-based signaling, whereas the second one relates it to changes in the neural crest cells induced by selection of animals for tameness. These two hypotheses are not necessarily mutually exclusive since they may have contributed differently to the process over time and space. The adaptation model induced by domestication can be adopted to clarify some aspects (that are still controversial and debated) of the long-term evolutionary process leading from the wild Neolithic mouflon to the current domestic sheep. Indeed, sheep are among the earliest animals to have been domesticated by humans, around 12,000 years ago, and since then, they have represented a crucial resource in human history. The aim of this review is to shed light on the molecular mechanisms and the specific genomic variants that underlie the phenotypic variability between sheep and mouflon. In this regard, we carried out a critical review of the most recent studies on the molecular mechanisms that are most accredited to be responsible for coat color and phenotype, tail size and presence of horns. We also highlight that, in such a complicate context, sheep/mouflon hybrids represent a powerful and innovative model for studying the mechanism by which the phenotypic traits related to the phenotypic responses to domestication are inherited. Knowledge of these mechanisms could have a significant impact on the selection of more productive breeds. In fact, as in a journey back in time of animal domestication, the genetic traits of today’s domestic species are being progressively and deliberately shaped according to human needs, in a direction opposite to that followed during domestication.
Journal Article
Genetic characterization and implications for conservation of the last autochthonous Mouflon population in Europe
by
Leoni, Giovanni Giuseppe
,
Naitana, Salvatore
,
Bassu, Giovanni
in
631/114/739
,
631/181/457
,
631/208/728
2021
Population genetic studies provide accurate information on population structure, connectivity, and hybridization. These are key elements to identify units for conservation and define wildlife management strategies aimed to maintain and restore biodiversity. The Mediterranean island of Sardinia hosts one of the last autochthonous mouflon populations, descending from the wild Neolithic ancestor. The first mouflon arrived in Sardinia ~ 7000 years ago and thrived across the island until the twentieth century, when anthropogenic factors led to population fragmentation. We analysed the three main allopatric Sardinian mouflon sub-populations, namely: the native sub-populations of Montes Forest and Mount Tonneri, and the reintroduced sub-population of Mount Lerno. We investigated the spatial genetic structure of the Sardinian mouflon based on the parallel analysis of 14 highly polymorphic microsatellite loci and mitochondrial D-loop sequences. The Montes Forest sub-population was found to harbour the ancestral haplotype in the phylogeny of European mouflon. We detected high levels of relatedness in all the sub-populations and a mitochondrial signature of hybridization between the Mount Lerno sub-population and domestic sheep. Our findings provide useful insights to protect such an invaluable genetic heritage from the risk of genetic depletion by promoting controlled inter-population exchange and drawing informed repopulation plans sourcing from genetically pure mouflon stocks.
Journal Article
Genomic signatures of adaptive introgression from European mouflon into domestic sheep
by
Hailer, Frank
,
Mazza, Raffaele
,
Bruford, Michael W.
in
631/181/457
,
631/208/212
,
Adaptiveness
2017
Mouflon (
Ovis aries musimon
) became extinct from mainland Europe after the Neolithic, but remnant populations from the Mediterranean islands of Corsica and Sardinia have been used for reintroductions across Europe since the 19
th
-century. Mouflon
x
sheep hybrids are larger-bodied than mouflon, potentially showing increased male reproductive success, but little is known about genomic levels of admixture, or about the adaptive significance of introgression between resident mouflon and local sheep breeds. Here we analysed Ovine medium-density SNP array genotypes of 92 mouflon from six geographic regions, along with data from 330 individuals of 16 domestic sheep breeds. We found lower levels of genetic diversity in mouflon than in domestic sheep, consistent with past bottlenecks in mouflon. Introgression signals were bidirectional and affected most mouflon and sheep populations, being strongest in one Sardinian mouflon population. Developing and using a novel approach to identify chromosomal regions with consistent introgression signals, we infer adaptive introgression from mouflon to domestic sheep related to immunity mechanisms, but not in the opposite direction. Further, we infer that Soay and Sarda sheep carry introgressed mouflon alleles involved in bitter taste perception and/or innate immunity. Our results illustrate the potential for adaptive introgression even among recently diverged populations.
Journal Article
Mouflon and Domestic Sheep Phylogeny: Ancestry, Domestication, and Evolutionary Dynamics
by
Bogliolo, Luisa
,
Leoni, Giovanni Giuseppe
,
Naitana, Salvatore
in
Analysis
,
Biological evolution
,
Classification
2025
The ancestry of domestic species from their closest wild relatives is one of the most debated and intriguing topics in evolutionary genetics. This review synthesizes current scientific understanding of the phylogenetic relationships between wild mouflon populations and domestic sheep (Ovis aries). It delves into the complex ancestry, tracing the primary role of the Asiatic mouflon (Ovis gmelini) as the progenitor, while also addressing the debated contributions of other wild Ovis species. The report explores the insights gained from diverse genetic markers, including mitochondrial DNA haplogroups and comprehensive whole-genome sequencing, highlighting their strengths, limitations, and the resolution of phylogenetic discrepancies. The multi-faceted taming process is examined, discussing proposed evolutionary mechanisms such as the domestication syndrome and thyroid hormone hypotheses, alongside human-mediated selection for key phenotypic traits like horn morphology, coat type, and tail characteristics. Furthermore, the pervasive role of hybridization and introgression between wild and domestic populations is analyzed, detailing its impact on genetic distinctiveness, adaptive potential, and the critical implications for conservation strategies. Finally, the review addresses ongoing scientific debates, particularly concerning the taxonomic classification of European mouflon, and identifies crucial avenues for future research to further unravel the intricate evolutionary tapestry of Ovis species. To ensure taxonomic consistency and promote conservation, nomenclature should be updated across all public repositories. Following the widely accepted classification that recognizes its lineage from the Asian mouflon, the Corsican and Sardinian mouflon should be designated as Ovis gmelini musimon.
Journal Article
On the Anticoagulant Activities of Acidic Polysaccharides from the Western Mediterranean Sea Porifera
2026
Innovation in the field of bioinspired therapeutic anticoagulants, as an alternative to heparin and its derivatives, is increasingly focused toward the discovery of new molecules from natural sources. Inspired by the compelling observation that marine organisms possess a wide array of acidic polysaccharides (APs) within their extracellular matrix (ECM) with promising anticoagulant potential, this study investigates AP topographic distribution, content, and bioactivity in the body of seven phylogenetically distant Mediterranean sponge species. Tissue architecture was evidenced by Alcian Blue histological staining whereas biochemical analyses were carried out on APs purified from papain-digested tissue extracts using anion-exchange chromatography. Four polysaccharide fractions were obtained and assessed for hexuronic acid content. The two most abundant ones, up to 98% of the total, were characterized by electrophoretic analyses, and assessed in vitro for inhibitory activity on blood coagulation. Histology evidenced a heterogeneous distribution of APs within the sponge’s ECM, along with marked interspecific variability in both concentration and electrophoretic profiles. Neither Tethya aurantium nor Crambe crambe showed any significant in vitro effects on coagulation, whereas the other species exhibited a strong inhibitory effect on both activated partial thromboplastin time (aPTT) and thrombin time (TT), comparable to standard heparin (Hep). Concerning aPTT, both I. retidermata and H. communis reached the endpoint of 300 s at 5 µgUA/mL, whereas S. spinosulus, O. lobularis, A. aerophoba reached it at 10 µgUA/mL. With reference to TT, A. aerophoba, I. retidermata, S. spinosulus and H. communis had comparable effects on coagulation time with respect to Hep (endpoint at 5 µgUA/mL), whereas O. lobularis was less effective (endpoint at 100 µgUA/mL). These findings show that Porifera, one of the most basal Metazoa, have an ECM rich in APs with anticoagulant properties towards both intrinsic and common pathways of coagulation, consistent with known inhibitory mechanisms reported for certain marine sulfated polysaccharides derived from other invertebrate taxa. These molecules, obtainable through sustainable blue technology, represent compelling candidates for bioinspired next-generation anticoagulant therapeutics, with broader applications in regenerative medicine and tissue engineering.
Journal Article
Revised phylogeny of mouflon based on expanded sampling of mitogenomes
by
Leoni, Giovanni Giuseppe
,
Columbano, Nicolò
,
Somel, Mehmet
in
Analysis
,
Animal populations
,
Animals
2025
Mouflons are flagship species of the Mediterranean islands where they persist. Once thought to be the remnants of a European wild sheep population, archaeology suggests they were introduced by humans to the islands of Cyprus in the Early Neolithic (~10,000 years ago) and later to Corsica and Sardinia. Their status as truly wild animals remains a subject of debate. To investigate the phylogenetic relationship between these island populations and other domestic and wild sheep from the Mediterranean region, we sequenced 50 mitogenomes of mouflons from Sardinia and Corsica, and modern and ancient Sardinian domestic sheep. A total of 68 additional publicly available mitogenomes were included in the comparative analysis and used to reconstruct the phylogeny of sheep and its closest wild relative, the mouflon ( Ovis gmelini ). Our study analyzed the evolutionary relationships within the C-E-X and haplogroup B clusters, showing that: a) Cyprus mouflons are more related to Anatolian and Iranian mouflons belonging to the wild haplogroup X, which seems to be basal to the domestic C and E haplogroups; b) Corsican and Sardinian mouflon arise from basal lineages associated with the early European expansion of domestic sheep. These results highlight the phylogenetic distinctiveness of the mouflon populations from the Mediterranean islands, suggesting a revision of their systematic classification and an update of the nomenclature for Sardinian and Corsican mouflons from the current status of subspecies of domestic sheep ( Ovis aries musimon ) to subspecies of their wild relatives ( Ovis gmelini musimon ) which would facilitate conservation efforts.
Journal Article
Evolutionary History of the Adult β‐Globin Gene in Wild Sheep: First Sequences From the Argali (Ovis ammon) and the Urial (Ovis vignei)
2026
The β‐globin gene cluster is a key model for studying molecular adaptation and gene family evolution in vertebrates, exhibiting dynamic duplication and deletion events in ruminants, particularly within the subfamily Caprinae. However, the complete nucleotide sequences of the adult β‐globin gene remain unknown for several ecologically important wild sheep species, such as the Argali and the Urial, hindering robust phylogenetic and adaptive studies. Genomic DNA was extracted from wild Argali and Urial samples, and the full coding region of the adult β‐globin gene was sequenced and compared against a comprehensive dataset of Bovidae and Cervidae. Sequence comparison confirmed high divergence between paralogous genes (HBBA and HBBB), and critically, revealed that Argali hosts two distinct adult β‐globin haplotypes, one harboring a HBBA gene and the other a HBBB gene. Phylogenetic analysis revealed that sequences clustered consistently by paralog type (HBBA vs. HBBB) with both the Caprinae and Bovinae lineages. This pattern suggests independent evolutionary trajectories for each paralog, likely driven by concerted evolution. Molecular dating estimated the duplication event leading to the HBBA/HBBB paralogs in Caprinae at approximately 2.55 million years ago, supporting a rapid, recent diversification of the β‐globin cluster in Ovis during the Pleistocene. Our analysis provides the newly characterized sequences of the Argali and Urial adult β‐globin gene and detected ancestral polymorphism in Argali. The divergence time estimates and the clustering by paralog type provide a valuable temporal and evolutionary framework for understanding the complex dynamics of multigene families and offer a foundation for future studies investigating potential high‐altitude adaptive selection in wild Ovis species. This study addresses a key gap in the understanding of molecular adaptation by providing the first complete adult β‐globin gene sequences for two ecologically significant wild sheep species, the Argali (Ovis ammon) and the Urial (Ovis vignei).
Journal Article
Design of a Cavity for the High-Power Radio-Frequency Quadrupole Coupler Test for the ANTHEM Project
by
Nenni, Marco
,
Baltador, Carlo
,
Grespan, Francesco
in
boron neutron capture therapy
,
Bridges
,
cavity design
2024
The ANTHEM (Advanced Technologies for Human-centered Medicine) Radio-Frequency Quadrupole (RFQ) will employ eight coaxial power couplers, which will be magnetically coupled to the device through a loop antenna. The coupler design can support up to 140 kW in continuous wave operation. This paper presents the design of the cavity used for high-power testing, with the primary objectives of both optimizing the coupling between the couplers and ensuring operations at the designated operating frequency. Furthermore, the paper encompasses thermal and structural assessments conducted through numerical simulations.
Journal Article
The First Mitogenome of the Cyprus Mouflon (Ovis gmelini ophion): New Insights into the Phylogeny of the Genus Ovis
by
Leoni, Giovanni Giuseppe
,
Trova, Sandro
,
Francalacci, Paolo
in
Analysis
,
Animals
,
Bayesian analysis
2015
Sheep are thought to have been one of the first livestock to be domesticated in the Near East, thus playing an important role in human history. The current whole mitochondrial genome phylogeny for the genus Ovis is based on: the five main domestic haplogroups occurring among sheep (O. aries), along with molecular data from two wild European mouflons, three urials, and one argali. With the aim to shed some further light on the phylogenetic relationship within this genus, the first complete mitochondrial genome sequence of a Cypriot mouflon (O. gmelini ophion) is here reported. Phylogenetic analyses were performed using a dataset of whole Ovis mitogenomes as well as D-loop sequences. The concatenated sequence of 28 mitochondrial genes of one Cypriot mouflon, and the D-loop sequence of three Cypriot mouflons were compared to sequences obtained from samples representatives of the five domestic sheep haplogroups along with samples of the extant wild and feral sheep. The sample included also individuals from the Mediterranean islands of Sardinia and Corsica hosting remnants of the first wave of domestication that likely went then back to feral life. The divergence time between branches in the phylogenetic tree has been calculated using seven different calibration points by means of Bayesian and Maximum Likelihood inferences. Results suggest that urial (O. vignei) and argali (O. ammon) diverged from domestic sheep about 0.89 and 1.11 million years ago (MYA), respectively; and dates the earliest radiation of domestic sheep common ancestor at around 0.3 MYA. Additionally, our data suggest that the rise of the modern sheep haplogroups happened in the span of time between six and 32 thousand years ago (KYA). A close phylogenetic relationship between the Cypriot and the Anatolian mouflon carrying the X haplotype was detected. The genetic distance between this group and the other ovine haplogroups supports the hypothesis that it may be a new haplogroup never described before. Furthermore, the updated phylogenetic tree presented in this study determines a finer classification of ovine species and may help to classify more accurately new mitogenomes within the established haplogroups so far identified.
Journal Article
Genetic diversity and conservation implications for European Griffon Vultures (Gyps fulvus): Insights from mitochondrial D-loop HVR1
2026
This study investigated the genetic diversity of Griffon Vultures (
Gyps fulvus
) from two South - East European, and seven Mediterranean countries and islands, including Spain, which hosts the largest European population. Our sample, comprising 249 newly generated plus 92 public D-loop sequences, is the largest dataset so far analyzed for this species. We identified 14 novel haplotypes, with Hpt-A being predominant across populations. Exclusive haplotypes have been identified in the populations from Spain, Serbia, Israel, Croatia, and Sardinia, suggesting them as worthy of targeted conservation programs to preserve such haplotypes. Principal coordinate analysis identified a big cluster composed of populations from continental Europe and the Aegean islands that were clearly differentiated from Western Mediterranean and Middle East populations. This structure would suggest the Serbian population is potentially a good source for restocking efforts in the Eastern Mediterranean. In addition, results indicated that historical restocking actions with Spanish individuals have significantly influenced genetic composition in the insular population of Sardinia, and provided evidence consistent with possible hybridization between Griffon and Rüppell’s Vultures (
Gyps rueppellii
) in Spain. This raises concerns about the use of non-genotyped Spanish individuals for restocking in populations like the Eastern Mediterranean ones, where contact zones between the two species have never been reported.
Journal Article