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Artículo

Gene content evolution in the arthropods

Thomas, Gregg W. C.; Dohmen, Elias; Hughes, Daniel S. T.; Murali, Shwetha C.; Poelchau, Monica; Glastad, Karl; Anstead, Clare A.; Ayoub, Nadia A.; Batterham, Phillip; Bellair, Michelle; Binford, Greta J.; Chao, Hsu; Chen, Yolanda H.; Childers, Christopher; Dinh, Huyen; Doddapaneni, Harsha Vardhan; Duan, Jian J.; Dugan, Shannon; Esposito, Lauren A.; Friedrich, Markus; Garb, Jessica; Gasser, Robin B.; Goodisman, Michael A. D.; Gundersen Rindal, Dawn E.; Han, Yi; Handler, Alfred M.; Hatakeyama, Masatsugu; Hering, Lars; Hunter, Wayne B.; Ioannidis, Panagiotis; Jayaseelan, Joy C.; Kalra, Divya; Khila, Abderrahman; Korhonen, Pasi K.; Lee, Carol Eunmi; Lee, Sandra L.; Li, Yiyuan; Lindsey, Amelia R. I.; Mayer, Georg; McGregor, Alistair P.; McKenna, Duane; Misof, Bernhard; Munidasa, Mala; Munoz Torres, Monica; Muzny, Donna M.; Niehuis, Oliver; Osuji Lacy, Nkechinyere; Palli, Subba R.; Panfilio, Kristen A.; Pechmann, Matthias; Perry, Trent; Peters, Ralph S.; Poynton, Helen C.; Prpic, Nikola Michael; Qu, Jiaxin; Rotenberg, Dorith; Schal, Coby; Schoville, Sean D.; Scully, Erin D.; Skinner, Evette; Sloan, Daniel B.; Stouthamer, Richard; Strand, Michael R.; Szucsich, Nikolaus U.; Wijeratne, Asela; Young, Neil D.; Zattara, Eduardo EnriqueIcon ; Benoit, Joshua B.; Zdobnov, Evgeny M.; Pfrender, Michael E.
Fecha de publicación: 01/2020
Editorial: BioMed Central
Revista: Genome Biology
ISSN: 1474-760X
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Biología; Genética y Herencia

Resumen

Background: Arthropods comprise the largest and most diverse phylum on Earth and play vital roles in nearly every ecosystem. Their diversity stems in part from variations on a conserved body plan, resulting from and recorded in adaptive changes in the genome. Dissection of the genomic record of sequence change enables broad questions regarding genome evolution to be addressed, even across hyper-diverse taxa within arthropods. Results: Using 76 whole genome sequences representing 21 orders spanning more than 500 million years of arthropod evolution, we document changes in gene and protein domain content and provide temporal and phylogenetic context for interpreting these innovations. We identify many novel gene families that arose early in the evolution of arthropods and during the diversification of insects into modern orders. We reveal unexpected variation in patterns of DNA methylation across arthropods and examples of gene family and protein domain evolution coincident with the appearance of notable phenotypic and physiological adaptations such as flight, metamorphosis, sociality, and chemoperception. Conclusions: These analyses demonstrate how large-scale comparative genomics can provide broad new insights into the genotype to phenotype map and generate testable hypotheses about the evolution of animal diversity.
Palabras clave: Arthropods , Genome assembly , Genomics , Protein domains , Gene content , Evolution , DNA methylation
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution 2.5 Unported (CC BY 2.5)
Identificadores
URI: http://hdl.handle.net/11336/147412
DOI: https://doi.org/10.1186/s13059-019-1925-7
URL: https://genomebiology.biomedcentral.com/articles/10.1186/s13059-019-1925-7
Colecciones
Articulos(INIBIOMA)
Articulos de INST. DE INVEST.EN BIODIVERSIDAD Y MEDIOAMBIENTE
Citación
Thomas, Gregg W. C.; Dohmen, Elias; Hughes, Daniel S. T.; Murali, Shwetha C.; Poelchau, Monica; et al.; Gene content evolution in the arthropods; BioMed Central; Genome Biology; 21; 1; 1-2020; 1-14
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