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1.
PLoS One ; 9(3): e91172, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-24625832

RESUMEN

The domestic dog, Canis familiaris, is a well-established model system for mapping trait and disease loci. While the original draft sequence was of good quality, gaps were abundant particularly in promoter regions of the genome, negatively impacting the annotation and study of candidate genes. Here, we present an improved genome build, canFam3.1, which includes 85 MB of novel sequence and now covers 99.8% of the euchromatic portion of the genome. We also present multiple RNA-Sequencing data sets from 10 different canine tissues to catalog ∼175,000 expressed loci. While about 90% of the coding genes previously annotated by EnsEMBL have measurable expression in at least one sample, the number of transcript isoforms detected by our data expands the EnsEMBL annotations by a factor of four. Syntenic comparison with the human genome revealed an additional ∼3,000 loci that are characterized as protein coding in human and were also expressed in the dog, suggesting that those were previously not annotated in the EnsEMBL canine gene set. In addition to ∼20,700 high-confidence protein coding loci, we found ∼4,600 antisense transcripts overlapping exons of protein coding genes, ∼7,200 intergenic multi-exon transcripts without coding potential, likely candidates for long intergenic non-coding RNAs (lincRNAs) and ∼11,000 transcripts were reported by two different library construction methods but did not fit any of the above categories. Of the lincRNAs, about 6,000 have no annotated orthologs in human or mouse. Functional analysis of two novel transcripts with shRNA in a mouse kidney cell line altered cell morphology and motility. All in all, we provide a much-improved annotation of the canine genome and suggest regulatory functions for several of the novel non-coding transcripts.


Asunto(s)
Perros/genética , Genoma , Polimorfismo de Nucleótido Simple , Animales , Línea Celular , Exones , Perfilación de la Expresión Génica , Humanos , Ratones , Proteínas del Tejido Nervioso/metabolismo , Oligonucleótidos Antisentido/química , Podocitos/citología , ARN Mensajero/metabolismo , ARN Interferente Pequeño/metabolismo , ARN no Traducido , Análisis de Secuencia de ARN
2.
Proc Natl Acad Sci U S A ; 109(12): 4544-9, 2012 Mar 20.
Artículo en Inglés | MEDLINE | ID: mdl-22388749

RESUMEN

Marine viruses impose a heavy mortality on their host bacteria, whereas at the same time the degree of viral resistance in marine bacteria appears to be high. Antagonistic coevolution--the reciprocal evolutionary change of interacting species--might reconcile these observations, if it leads to rapid and dynamic levels of viral resistance. Here we demonstrate the potential for extensive antagonistic coevolution between the ecologically important marine cyanobacterium Synechococcus and a lytic virus. In a 6-mo-long replicated chemostat experiment, Synechococcus sp. WH7803 and the virus (RIM8) underwent multiple coevolutionary cycles, leading to the rapid diversification of both host and virus. Over the course of the experiment, we detected between 4 and 13 newly evolved viral phenotypes (differing in host range) and between 4 and 11 newly evolved Synechococcus phenotypes (differing in viral resistance) in each chemostat. Genomic analysis of isolates identified several candidate genes in both the host and virus that might influence their interactions. Notably, none of the viral candidates were tail fiber genes, thought to be the primary determinants of host range in tailed bacteriophages, highlighting the difficulty in generalizing results from bacteriophage infecting γ-Proteobacteria. Finally, we show that pairwise virus-host coevolution may have broader community consequences; coevolution in the chemostat altered the sensitivity of Synechoccocus to a diverse suite of viruses, as well as the virus' ability to infect additional Synechococcus strains. Our results indicate that rapid coevolution may contribute to the generation and maintenance of Synechococcus and virus diversity and thereby influence viral-mediated mortality of these key marine bacteria.


Asunto(s)
Bacteriófagos/genética , Synechococcus/genética , Bacteriófagos/fisiología , Evolución Biológica , Evolución Molecular , Gammaproteobacteria/fisiología , Genómica , Biología Marina , Modelos Biológicos , Modelos Genéticos , Datos de Secuencia Molecular , Fenotipo , Agua de Mar , Synechococcus/fisiología , Synechococcus/virología , Virus/genética , Microbiología del Agua
3.
Nature ; 440(7084): 671-5, 2006 Mar 30.
Artículo en Inglés | MEDLINE | ID: mdl-16572171

RESUMEN

Here we present a finished sequence of human chromosome 15, together with a high-quality gene catalogue. As chromosome 15 is one of seven human chromosomes with a high rate of segmental duplication, we have carried out a detailed analysis of the duplication structure of the chromosome. Segmental duplications in chromosome 15 are largely clustered in two regions, on proximal and distal 15q; the proximal region is notable because recombination among the segmental duplications can result in deletions causing Prader-Willi and Angelman syndromes. Sequence analysis shows that the proximal and distal regions of 15q share extensive ancient similarity. Using a simple approach, we have been able to reconstruct many of the events by which the current duplication structure arose. We find that most of the intrachromosomal duplications seem to share a common ancestry. Finally, we demonstrate that some remaining gaps in the genome sequence are probably due to structural polymorphisms between haplotypes; this may explain a significant fraction of the gaps remaining in the human genome.


Asunto(s)
Cromosomas Humanos Par 15/genética , Evolución Molecular , Duplicación de Gen , Animales , Secuencia Conservada/genética , Genes , Genoma Humano , Haplotipos/genética , Humanos , Macaca mulatta/genética , Datos de Secuencia Molecular , Familia de Multigenes/genética , Filogenia , Polimorfismo Genético/genética , Análisis de Secuencia de ADN , Sintenía/genética
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