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Dive into the research topics where Gianmarco Ferri is active.

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Featured researches published by Gianmarco Ferri.


PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES , 279 (1730) pp. 884-892. (2012) | 2012

The peopling of Europe and the cautionary tale of Y chromosome lineage R-M269

Gbj Busby; Francesca Brisighelli; Paula Sánchez-Diz; E Ramos-Luis; Conrado Martinez-Cadenas; Mark G. Thomas; Daniel G. Bradley; Leonor Gusmão; Bruce Winney; Walter F. Bodmer; M Vennemann; Coia; Francesca Scarnicci; Sergio Tofanelli; Giuseppe Vona; Rafał Płoski; C Vecchiotti; Tatijana Zemunik; Igor Rudan; S Karachanak; Draga Toncheva; Paolo Anagnostou; Gianmarco Ferri; C Rapone; Tor Hervig; Torolf Moen; James F. Wilson; Cristian Capelli

Recently, the debate on the origins of the major European Y chromosome haplogroup R1b1b2-M269 has reignited, and opinion has moved away from Palaeolithic origins to the notion of a younger Neolithic spread of these chromosomes from the Near East. Here, we address this debate by investigating frequency patterns and diversity in the largest collection of R1b1b2-M269 chromosomes yet assembled. Our analysis reveals no geographical trends in diversity, in contradiction to expectation under the Neolithic hypothesis, and suggests an alternative explanation for the apparent cline in diversity recently described. We further investigate the young, STR-based time to the most recent common ancestor estimates proposed so far for R-M269-related lineages and find evidence for an appreciable effect of microsatellite choice on age estimates. As a consequence, the existing data and tools are insufficient to make credible estimates for the age of this haplogroup, and conclusions about the timing of its origin and dispersal should be viewed with a large degree of caution.


International Journal of Legal Medicine | 2009

Forensic botany: species identification of botanical trace evidence using a multigene barcoding approach

Gianmarco Ferri; Milena Alù; Beatrice Corradini; Giovanni Beduschi

AbstactForensic botany can provide significant supporting evidence during criminal investigations. However, it is still an underutilized field of investigation with its most common application limited to identifying specific as well as suspected illegal plants. The ubiquitous presence of plant species can be useful in forensics, but the absence of an accurate identification system remains the major obstacle to the present inability to routinely and correctly identify trace botanical evidence. Many plant materials cannot be identified and differentiated to the species level by traditional morphological characteristics when botanical specimens are degraded and lack physical features. By taking advantage of a universal barcode system, DNA sequencing, and other biomolecular techniques used routinely in forensic investigations, two chloroplast DNA regions were evaluated for their use as “barcoding” markers for plant identification in the field of forensics. We therefore investigated the forensic use of two non-coding plastid regions, psbA-trnH and trnL-trnF, to create a multimarker system for species identification that could be useful throughout the plant kingdom. The sequences from 63 plants belonging to our local flora were submitted and registered on the GenBank database. Sequence comparison to set up the level of identification (species, genus, or family) through Blast algorithms allowed us to assess the suitability of this method. The results confirmed the effectiveness of our botanic universal multimarker assay in forensic investigations.


European Journal of Human Genetics | 2009

J1-M267 Y lineage marks climate-driven pre-historical human displacements.

Sergio Tofanelli; Gianmarco Ferri; Kazima Bulayeva; Laura Caciagli; Valerio Onofri; Luca Taglioli; Oleg Bulayev; Ilaria Boschi; Milena Alù; Andrea Berti; Cesare Rapone; Giovanni Beduschi; Donata Luiselli; Alicia M Cadenas; Khalid Dafaallah Awadelkarim; Renato Mariani-Costantini; Nasr Eldin Elwali; Fabio Verginelli; Elena Pilli; Rene J. Herrera; Leonor Gusmão; Giorgio Paoli; Cristian Capelli

The present day distribution of Y chromosomes bearing the haplogroup J1 M267*G variant has been associated with different episodes of human demographic history, the main one being the diffusion of Islam since the Early Middle Ages. To better understand the modes and timing of J1 dispersals, we reconstructed the genealogical relationships among 282 M267*G chromosomes from 29 populations typed at 20 YSTRs and 6 SNPs. Phylogenetic analyses depicted a new genetic background consistent with climate-driven demographic dynamics occurring during two key phases of human pre-history: (1) the spatial expansion of hunter gatherers in response to the end of the late Pleistocene cooling phases and (2) the displacement of groups of foragers/herders following the mid-Holocene rainfall retreats across the Sahara and Arabia. Furthermore, J1 STR motifs previously used to trace Arab or Jewish ancestries were shown unsuitable as diagnostic markers for ethnicity.


Molecular Biology and Evolution | 2011

Signatures of the Preagricultural Peopling Processes in Sub-Saharan Africa as Revealed by the Phylogeography of Early Y Chromosome Lineages

Chiara Batini; Gianmarco Ferri; Giovanni Destro-Bisol; Francesca Brisighelli; Donata Luiselli; Paula Sánchez-Diz; Jorge Rocha; Tatum S. Simonson; António Brehm; Valeria Montano; Nasr Eldin Elwali; Gabriella Spedini; Maria Eugenia D'Amato; Natalie M. Myres; Peter Ebbesen; David Comas; Cristian Capelli

The study of Y chromosome variation has helped reconstruct demographic events associated with the spread of languages, agriculture, and pastoralism in sub-Saharan Africa, but little attention has been given to the early history of the continent. In order to overcome this lack of knowledge, we carried out a phylogeographic analysis of haplogroups A and B in a broad data set of sub-Saharan populations. These two lineages are particularly suitable for this objective because they are the two most deeply rooted branches of the Y chromosome genealogy. Their distribution is almost exclusively restricted to sub-Saharan Africa where their frequency peaks at 65% in groups of foragers. The combined high-resolution single nucleotide polymorphism analysis with short tandem repeats variation of their subclades reveals strong geographic and population structure for both haplogroups. This has allowed us to identify specific lineages related to regional preagricultural dynamics in different areas of sub-Saharan Africa. In addition, we observed signatures of relatively recent contact, both among Pygmies and between them and Khoisan speaker groups from southern Africa, thus contributing to the understanding of the complex evolutionary relationships among African hunter-gatherers. Finally, by revising the phylogeography of the very early human Y chromosome lineages, we have obtained support for the role of southern Africa as a sink, rather than a source, of the first migrations of modern humans from eastern and central parts of the continent. These results open new perspectives on the early history of Homo sapiens in Africa, with particular attention to areas of the continent where human fossil remains and archaeological data are scant.


Molecular Ecology | 2011

The Bantu expansion revisited: a new analysis of Y chromosome variation in Central Western Africa

Valeria Montano; Gianmarco Ferri; Veronica Marcari; Chiara Batini; Okorie Anyaele; Giovanni Destro-Bisol; David Comas

The current distribution of Bantu languages is commonly considered to be a consequence of a relatively recent population expansion (3–5 kya) in Central Western Africa. While there is a substantial consensus regarding the centre of origin of Bantu languages (the Benue River Valley, between South East Nigeria and Western Cameroon), the identification of the area from where the population expansion actually started, the relation between the processes leading to the spread of languages and peoples and the relevance of local migratory events remain controversial. In order to shed new light on these aspects, we studied Y chromosome variation in a broad dataset of populations encompassing Nigeria, Cameroon, Gabon and Congo. Our results evidence an evolutionary scenario which is more complex than had been previously thought, pointing to a marked differentiation of Cameroonian populations from the rest of the dataset. In fact, in contrast with the current view of Bantu speakers as a homogeneous group of populations, we observed an unexpectedly high level of interpopulation genetic heterogeneity and highlighted previously undetected diversity for lineages associated with the diffusion of Bantu languages (E1b1a (M2) sub‐branches). We also detected substantial differences in local demographic histories, which concord with the hypotheses regarding an early diffusion of Bantu languages into the forest area and a subsequent demographic expansion and migration towards eastern and western Africa.


Forensic Science International | 2003

Different informativeness of the three hypervariable mitochondrial DNA regions in the population of Bologna (Italy)

Carla Bini; Stefania Ceccardi; D. Luiselli; Gianmarco Ferri; Susi Pelotti; C. Colalongo; Mirella Falconi; G. Pappalardo

Mitochondrial DNA (mtDNA) sequence variations at hypervariable regions HVI, HVII and HVIII were analysed in 100 unrelated Italians from Bologna. The values of the statistical parameters are in agreement with the range of European populations. We suggest that the less informative HVIII region may be useful to distinguish HVI-HVII identical sequences in forensic analysis especially when nuclear DNA cannot be investigated.


European Journal of Human Genetics | 2009

Moors and Saracens in Europe : estimating the medieval North African male legacy in southern Europe

Cristian Capelli; Valerio Onofri; Francesca Brisighelli; Ilaria Boschi; Francesca Scarnicci; Mara Masullo; Gianmarco Ferri; Sergio Tofanelli; Adriano Tagliabracci; Leonor Gusmão; António Amorim; Francesco Gatto; Mirna Kirin; Davide Merlitti; Maria Brion; Alejandro Blanco Verea; Valentino Romano; Francesco Calì; Vincenzo Lorenzo Pascali

To investigate the male genetic legacy of the Arab rule in southern Europe during medieval times, we focused on specific Northwest African haplogroups and identified evolutionary close STR-defined haplotypes in Iberia, Sicily and the Italian peninsula. Our results point to a higher recent Northwest African contribution in Iberia and Sicily in agreement with historical data. southern Italian regions known to have experienced long-term Arab presence also show an enrichment of Northwest African types. The forensic and genomic implications of these findings are discussed.


PLOS ONE | 2013

Analysis of Population Substructure in Two Sympatric Populations of Gran Chaco, Argentina

Federica Sevini; Daniele Yang Yao; Laura Lomartire; Annalaura Barbieri; Dario Vianello; Gianmarco Ferri; Edgardo Moretti; María Cristina Dasso; Paolo Garagnani; Davide Pettener; Claudio Franceschi; Donata Luiselli; Zelda Alice Franceschi

Sub-population structure and intricate kinship dynamics might introduce biases in molecular anthropology studies and could invalidate the efforts to understand diseases in highly admixed populations. In order to clarify the previously observed distribution pattern and morbidity of Chagas disease in Gran Chaco, Argentina, we studied two populations (Wichí and Criollos) recruited following an innovative bio-cultural model considering their complex cultural interactions. By reconstructing the genetic background and the structure of these two culturally different populations, the pattern of admixture, the correspondence between genealogical and genetic relationships, this integrated perspective had the power to validate data and to link the gap usually relying on a singular discipline. Although Wichí and Criollos share the same area, these sympatric populations are differentiated from the genetic point of view as revealed by Non Recombinant Y Chromosome genotyping resulting in significantly high Fst values and in a lower genetic variability in the Wichí population. Surprisingly, the Amerindian and the European components emerged with comparable amounts (20%) among Criollos and Wichí respectively. The detailed analysis of mitochondrial DNA showed that the two populations have as much as 87% of private haplotypes. Moreover, from the maternal perspective, despite a common Amerindian origin, an Andean and an Amazonian component emerged in Criollos and in Wichí respectively. Our approach allowed us to highlight that quite frequently there is a discrepancy between self-reported and genetic kinship. Indeed, if self-reported identity and kinship are usually utilized in population genetics as a reliable proxy for genetic identity and parental relationship, in our model populations appear to be the result not only and not simply of the genetic background but also of complex cultural determinants. This integrated approach paves the way to a rigorous reconstruction of demographic and cultural history as well as of bioancestry and propensity to diseases of Wichí and Criollos.


PLOS ONE | 2014

An Ancient Mediterranean Melting Pot: Investigating the Uniparental Genetic Structure and Population History of Sicily and Southern Italy

Stefania Sarno; Alessio Boattini; Marilisa Carta; Gianmarco Ferri; Milena Alù; Daniele Yang Yao; Graziella Ciani; Davide Pettener; Donata Luiselli

Due to their strategic geographic location between three different continents, Sicily and Southern Italy have long represented a major Mediterranean crossroad where different peoples and cultures came together over time. However, its multi-layered history of migration pathways and cultural exchanges, has made the reconstruction of its genetic history and population structure extremely controversial and widely debated. To address this debate, we surveyed the genetic variability of 326 accurately selected individuals from 8 different provinces of Sicily and Southern Italy, through a comprehensive evaluation of both Y-chromosome and mtDNA genomes. The main goal was to investigate the structuring of maternal and paternal genetic pools within Sicily and Southern Italy, and to examine their degrees of interaction with other Mediterranean populations. Our findings show high levels of within-population variability, coupled with the lack of significant genetic sub-structures both within Sicily, as well as between Sicily and Southern Italy. When Sicilian and Southern Italian populations were contextualized within the Euro-Mediterranean genetic space, we observed different historical dynamics for maternal and paternal inheritances. Y-chromosome results highlight a significant genetic differentiation between the North-Western and South-Eastern part of the Mediterranean, the Italian Peninsula occupying an intermediate position therein. In particular, Sicily and Southern Italy reveal a shared paternal genetic background with the Balkan Peninsula and the time estimates of main Y-chromosome lineages signal paternal genetic traces of Neolithic and post-Neolithic migration events. On the contrary, despite showing some correspondence with its paternal counterpart, mtDNA reveals a substantially homogeneous genetic landscape, which may reflect older population events or different demographic dynamics between males and females. Overall, both uniparental genetic structures and TMRCA estimates confirm the role of Sicily and Southern Italy as an ancient Mediterranean melting pot for genes and cultures.


PLOS ONE | 2013

Detecting Genetic Isolation in Human Populations: A Study of European Language Minorities

Marco Capocasa; Cinzia Battaggia; Paolo Anagnostou; Francesco Montinaro; Ilaria Boschi; Gianmarco Ferri; Milena Alù; Valentina Coia; Federica Crivellaro; Giovanni Destro Bisol

The identification of isolation signatures is fundamental to better understand the genetic structure of human populations and to test the relations between cultural factors and genetic variation. However, with current approaches, it is not possible to distinguish between the consequences of long-term isolation and the effects of reduced sample size, selection and differential gene flow. To overcome these limitations, we have integrated the analysis of classical genetic diversity measures with a Bayesian method to estimate gene flow and have carried out simulations based on the coalescent. Combining these approaches, we first tested whether the relatively short history of cultural and geographical isolation of four “linguistic islands” of the Eastern Alps (Lessinia, Sauris, Sappada and Timau) had left detectable signatures in their genetic structure. We then compared our findings to previous studies of European population isolates. Finally, we explored the importance of demographic and cultural factors in shaping genetic diversity among the groups under study. A combination of small initial effective size and continued genetic isolation from surrounding populations seems to provide a coherent explanation for the diversity observed among Sauris, Sappada and Timau, which was found to be substantially greater than in other groups of European isolated populations. Simulations of micro-evolutionary scenarios indicate that ethnicity might have been important in increasing genetic diversity among these culturally related and spatially close populations.

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Milena Alù

University of Modena and Reggio Emilia

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Francesca Brisighelli

Catholic University of the Sacred Heart

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Cristian Capelli

Catholic University of the Sacred Heart

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Giovanni Beduschi

University of Modena and Reggio Emilia

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