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Get Free AccessABSTRACT Clonally transmissible cancers are tumour lineages that are transmitted between individuals via the transfer of living cancer cells. In marine bivalves, leukemia-like transmissible cancers, called hemic neoplasia, have demonstrated the ability to infect individuals from different species. We performed whole-genome sequencing in eight warty venus clams that were diagnosed with hemic neoplasia, from two sampling points located more than 1,000 nautical miles away in the Atlantic Ocean and the Mediterranean Sea Coasts of Spain. Mitochondrial genome sequencing analysis in tumour tissues from neoplastic animals revealed the coexistence of haplotypes from two different clam species. Phylogenies estimated from mitochondrial and nuclear markers confirmed this leukemia originated in striped venus clams and later transmitted to clams of the species warty venus, in which it survives as a contagious cancer. The analysis of mitochondrial and nuclear gene sequences supports all studied tumours belong to a single neoplastic lineage that spreads in the Seas of Southern Europe.
Daniel García‐Souto, Alicia L. Bruzos, Seila Díaz, Sara Rocha, Ana Pequeño, Camila F Roman-Lewis, Juana Alonso, Rosana López, Damián Costas, Jorge Rodríguez‐Castro, Antonio Villanueva, Luis Silva, José María Valencia, Giovanni Annona, Andrea Tarallo, Fernando Ricardo, Ana Bratoš Cetinić, David Posada, Juan J. Pasantes, José M. C. Tubío (2021). Mitochondrial genome sequencing of marine leukemias reveals cancer contagion between clam species in the Seas of Southern Europe. , DOI: https://doi.org/10.1101/2021.03.10.434714.
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Type
Preprint
Year
2021
Authors
20
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1101/2021.03.10.434714
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