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A novel methodology for large-scale phylogeny partition

Authors :
Prosperi, Mattia C. F.
Ciccozzi, Massimo
Fanti, Iuri
Saladini, Francesco
Pecorari, Monica
Borghi, Vanni
Di Giambenedetto, Simona
Bruzzone, Bianca
Capetti, Amedeo
Vivarelli, Angela
Rusconi, Stefano
Maria Carla, Re
Gismondo, Maria Rita
Sighinolfi, Laura
Gray, Rebecca R.
Salemi, Marco
Zazzi, Maurizio
De Luca, Andrea
Giacometti, A
Butini, L
Menzo, S
Tacconi, D
Corbelli, G
Zanussi, S
Monno, L
Punzi, G
Maggiolo, F
Callegaro, A
Calza, L
Re, Mc
PristerĂ , R
Turconi, P
Mandas, A
Tini, S
Zoncada, A
Paolini, E
Amadio, G
Sighinolfi, L
Zuccati, G
Morfini, M
Manetti, R
Corsi, P
Galli, L
Di Pietro, M
Bartalesi, F
Colao, G
Tosti, A
Di Biagio, A
Setti, M
Bruzzone, B
Penco, G
Trezzi, M
Orani, A
Pardelli, R
De Gennaro, M
Chiodera, A
Scalzini, A
Palvarini, L
Almi, P
Todaro, G
Cicconi, P
Rusconi, S
Gismondo, Mr
Micheli, V
Biondi, Ml
Gianotti, N
Capetti, A
Meraviglia, P
Boeri, E
Mussini, C
Pecorari, M
Soria, A
Vecchi, L
Santirocchi, M
Brustia, D
Ravanini, P
Dal Bello, F
Romano, N
Mancuso, S
Calzetti, C
Maserati, R
Filice, G
Baldanti, F
Francisci, D
Parruti, G
Polilli, E
Sacchini, D
Martinelli, C
Consolini, R
Vatteroni, L
Vivarelli, A
Dionisio, D
Nerli, A
Lenzi, L
Magnani, G
Ortolani, P
Andreoni, M
Palamara, G
Fimiani, C
Palmisano, L
De Luca, A
Fadda, G
Vullo, Vincenzo
Turriziani, Ombretta
Montano, M
Cenderello, G
Gonnelli, A
Palumbo, M
Ghisetti, V
Bonora, S
Delle Foglie, P
Rossi, C
Grossi, P
Seminari, E
Poletti, F
Mondino, V
Malena, M
Lattuada, E.
Prosperi MC
Ciccozzi M, Fanti I
Saladini F
Pecorari M
Borghi V
Di Giambenedetto S
Bruzzone B
Capetti A
Vivarelli A
Rusconi S
Re MC
Gismondo MR
Sighinolfi L
Gray RR
Salemi M
Zazzi M
De Luca A
ARCA collaborative group.
Prosperi, M
Ciccozzi, M
Fanti, I
Saladini, F
Pecorari, M
Borghi, V
Di Giambenedetto, S
Bruzzone, B
Capetti, A
Vivarelli, A
Rusconi, S
Re, M
Gismondo, M
Sighinolfi, L
Gray, R
Salemi, M
Zazzi, M
De Luca, A
Mancuso, S
Source :
Nature Communications, Nature Communications; Vol 2
Publication Year :
2011
Publisher :
Springer Science and Business Media LLC, 2011.

Abstract

Understanding the determinants of virus transmission is a fundamental step for effective design of screening and intervention strategies to control viral epidemics. Phylogenetic analysis can be a valid approach for the identification of transmission chains, and very-large data sets can be analysed through parallel computation. Here we propose and validate a new methodology for the partition of large-scale phylogenies and the inference of transmission clusters. This approach, on the basis of a depth-first search algorithm, conjugates the evaluation of node reliability, tree topology and patristic distance analysis. The method has been applied to identify transmission clusters of a phylogeny of 11,541 human immunodeficiency virus-1 subtype B pol gene sequences from a large Italian cohort. Molecular transmission chains were characterized by means of different clinical/demographic factors, such as the interaction between male homosexuals and male heterosexuals. Our method takes an advantage of a flexible notion of transmission cluster and can become a general framework to analyse other epidemics. © 2011 Macmillan Publishers Limited. All rights reserved.

Details

ISSN :
20411723
Volume :
2
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....109e1186fef2a6dece56fdd2963feb11
Full Text :
https://doi.org/10.1038/ncomms1325