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2.
Nature ; 469(7331): 529-33, 2011 Jan 27.
Artigo em Inglês | MEDLINE | ID: mdl-21270892

RESUMO

'Orang-utan' is derived from a Malay term meaning 'man of the forest' and aptly describes the southeast Asian great apes native to Sumatra and Borneo. The orang-utan species, Pongo abelii (Sumatran) and Pongo pygmaeus (Bornean), are the most phylogenetically distant great apes from humans, thereby providing an informative perspective on hominid evolution. Here we present a Sumatran orang-utan draft genome assembly and short read sequence data from five Sumatran and five Bornean orang-utan genomes. Our analyses reveal that, compared to other primates, the orang-utan genome has many unique features. Structural evolution of the orang-utan genome has proceeded much more slowly than other great apes, evidenced by fewer rearrangements, less segmental duplication, a lower rate of gene family turnover and surprisingly quiescent Alu repeats, which have played a major role in restructuring other primate genomes. We also describe a primate polymorphic neocentromere, found in both Pongo species, emphasizing the gradual evolution of orang-utan genome structure. Orang-utans have extremely low energy usage for a eutherian mammal, far lower than their hominid relatives. Adding their genome to the repertoire of sequenced primates illuminates new signals of positive selection in several pathways including glycolipid metabolism. From the population perspective, both Pongo species are deeply diverse; however, Sumatran individuals possess greater diversity than their Bornean counterparts, and more species-specific variation. Our estimate of Bornean/Sumatran speciation time, 400,000 years ago, is more recent than most previous studies and underscores the complexity of the orang-utan speciation process. Despite a smaller modern census population size, the Sumatran effective population size (N(e)) expanded exponentially relative to the ancestral N(e) after the split, while Bornean N(e) declined over the same period. Overall, the resources and analyses presented here offer new opportunities in evolutionary genomics, insights into hominid biology, and an extensive database of variation for conservation efforts.


Assuntos
Variação Genética , Genoma/genética , Pongo abelii/genética , Pongo pygmaeus/genética , Animais , Centrômero/genética , Cerebrosídeos/metabolismo , Cromossomos , Evolução Molecular , Feminino , Rearranjo Gênico/genética , Especiação Genética , Genética Populacional , Humanos , Masculino , Filogenia , Densidade Demográfica , Dinâmica Populacional , Especificidade da Espécie
3.
Nature ; 464(7289): 757-62, 2010 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-20360741

RESUMO

The zebra finch is an important model organism in several fields with unique relevance to human neuroscience. Like other songbirds, the zebra finch communicates through learned vocalizations, an ability otherwise documented only in humans and a few other animals and lacking in the chicken-the only bird with a sequenced genome until now. Here we present a structural, functional and comparative analysis of the genome sequence of the zebra finch (Taeniopygia guttata), which is a songbird belonging to the large avian order Passeriformes. We find that the overall structures of the genomes are similar in zebra finch and chicken, but they differ in many intrachromosomal rearrangements, lineage-specific gene family expansions, the number of long-terminal-repeat-based retrotransposons, and mechanisms of sex chromosome dosage compensation. We show that song behaviour engages gene regulatory networks in the zebra finch brain, altering the expression of long non-coding RNAs, microRNAs, transcription factors and their targets. We also show evidence for rapid molecular evolution in the songbird lineage of genes that are regulated during song experience. These results indicate an active involvement of the genome in neural processes underlying vocal communication and identify potential genetic substrates for the evolution and regulation of this behaviour.


Assuntos
Tentilhões/genética , Genoma/genética , Regiões 3' não Traduzidas/genética , Animais , Percepção Auditiva/genética , Encéfalo/fisiologia , Galinhas/genética , Evolução Molecular , Feminino , Tentilhões/fisiologia , Duplicação Gênica , Redes Reguladoras de Genes/genética , Masculino , MicroRNAs/genética , Modelos Animais , Família Multigênica/genética , Retroelementos/genética , Cromossomos Sexuais/genética , Sequências Repetidas Terminais/genética , Transcrição Gênica/genética , Vocalização Animal/fisiologia
4.
Mol Ecol Resour ; 24(1): e13801, 2024 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-37186213

RESUMO

Genome assembly can be challenging for species that are characterized by high amounts of polymorphism, heterozygosity, and large effective population sizes. High levels of heterozygosity can result in genome mis-assemblies and a larger than expected genome size due to the haplotig versions of a single locus being assembled as separate loci. Here, we describe the first chromosome-level genome for the eastern oyster, Crassostrea virginica. Publicly released and annotated in 2017, the assembly has a scaffold N50 of 54 mb and is over 97.3% complete based on BUSCO analysis. The genome assembly for the eastern oyster is a critical resource for foundational research into molluscan adaptation to a changing environment and for selective breeding for the aquaculture industry. Subsequent resequencing data suggested the presence of haplotigs in the original assembly, and we developed a post hoc method to break up chimeric contigs and mask haplotigs in published heterozygous genomes and evaluated improvements to the accuracy of downstream analysis. Masking haplotigs had a large impact on SNP discovery and estimates of nucleotide diversity and had more subtle and nuanced effects on estimates of heterozygosity, population structure analysis, and outlier detection. We show that haplotig masking can be a powerful tool for improving genomic inference, and we present an open, reproducible resource for the masking of haplotigs in any published genome.


Assuntos
Crassostrea , Animais , Crassostrea/genética , Genômica/métodos , Análise de Sequência de DNA , Polimorfismo Genético , Tamanho do Genoma
5.
G3 (Bethesda) ; 6(6): 1607-16, 2016 06 01.
Artigo em Inglês | MEDLINE | ID: mdl-27172201

RESUMO

High-resolution genetic and physical maps are invaluable tools for building accurate genome assemblies, and interpreting results of genome-wide association studies (GWAS). Previous genetic and physical maps anchored good quality draft assemblies of the domestic cat genome, enabling the discovery of numerous genes underlying hereditary disease and phenotypes of interest to the biomedical science and breeding communities. However, these maps lacked sufficient marker density to order thousands of shorter scaffolds in earlier assemblies, which instead relied heavily on comparative mapping with related species. A high-resolution map would aid in validating and ordering chromosome scaffolds from existing and new genome assemblies. Here, we describe a high-resolution genetic linkage map of the domestic cat genome based on genotyping 453 domestic cats from several multi-generational pedigrees on the Illumina 63K SNP array. The final maps include 58,055 SNP markers placed relative to 6637 markers with unique positions, distributed across all autosomes and the X chromosome. Our final sex-averaged maps span a total autosomal length of 4464 cM, the longest described linkage map for any mammal, confirming length estimates from a previous microsatellite-based map. The linkage map was used to order and orient the scaffolds from a substantially more contiguous domestic cat genome assembly (Felis catus v8.0), which incorporated ∼20 × coverage of Illumina fragment reads. The new genome assembly shows substantial improvements in contiguity, with a nearly fourfold increase in N50 scaffold size to 18 Mb. We use this map to report probable structural errors in previous maps and assemblies, and to describe features of the recombination landscape, including a massive (∼50 Mb) recombination desert (of virtually zero recombination) on the X chromosome that parallels a similar desert on the porcine X chromosome in both size and physical location.


Assuntos
Mapeamento Cromossômico , Ligação Genética , Genoma , Genômica , Polimorfismo de Nucleotídeo Único , Recombinação Genética , Animais , Gatos , Cromossomos , Biologia Computacional/métodos , Feminino , Estudo de Associação Genômica Ampla , Genômica/métodos , Masculino , Repetições de Microssatélites , Translocação Genética
6.
Genome Biol Evol ; 8(1): 109-25, 2015 Nov 27.
Artigo em Inglês | MEDLINE | ID: mdl-26615215

RESUMO

Physarum polycephalum is a well-studied microbial eukaryote with unique experimental attributes relative to other experimental model organisms. It has a sophisticated life cycle with several distinct stages including amoebal, flagellated, and plasmodial cells. It is unusual in switching between open and closed mitosis according to specific life-cycle stages. Here we present the analysis of the genome of this enigmatic and important model organism and compare it with closely related species. The genome is littered with simple and complex repeats and the coding regions are frequently interrupted by introns with a mean size of 100 bases. Complemented with extensive transcriptome data, we define approximately 31,000 gene loci, providing unexpected insights into early eukaryote evolution. We describe extensive use of histidine kinase-based two-component systems and tyrosine kinase signaling, the presence of bacterial and plant type photoreceptors (phytochromes, cryptochrome, and phototropin) and of plant-type pentatricopeptide repeat proteins, as well as metabolic pathways, and a cell cycle control system typically found in more complex eukaryotes. Our analysis characterizes P. polycephalum as a prototypical eukaryote with features attributed to the last common ancestor of Amorphea, that is, the Amoebozoa and Opisthokonts. Specifically, the presence of tyrosine kinases in Acanthamoeba and Physarum as representatives of two distantly related subdivisions of Amoebozoa argues against the later emergence of tyrosine kinase signaling in the opisthokont lineage and also against the acquisition by horizontal gene transfer.


Assuntos
Evolução Molecular , Genoma de Protozoário , Physarum polycephalum/genética , Proteínas de Protozoários/genética , Receptores Proteína Tirosina Quinases/genética , Transdução de Sinais , Proteínas de Ciclo Celular/genética , Proteínas de Ciclo Celular/metabolismo , Loci Gênicos , Proteínas de Protozoários/metabolismo , Receptores Proteína Tirosina Quinases/metabolismo , Transcriptoma
7.
Nat Genet ; 45(5): 567-72, 2013 May.
Artigo em Inglês | MEDLINE | ID: mdl-23542700

RESUMO

Several attributes intuitively considered to be typical mammalian features, such as complex behavior, live birth and malignant disease such as cancer, also appeared several times independently in lower vertebrates. The genetic mechanisms underlying the evolution of these elaborate traits are poorly understood. The platyfish, X. maculatus, offers a unique model to better understand the molecular biology of such traits. We report here the sequencing of the platyfish genome. Integrating genome assembly with extensive genetic maps identified an unexpected evolutionary stability of chromosomes in fish, in contrast to in mammals. Genes associated with viviparity show signatures of positive selection, identifying new putative functional domains and rare cases of parallel evolution. We also find that genes implicated in cognition show an unexpectedly high rate of duplicate gene retention after the teleost genome duplication event, suggesting a hypothesis for the evolution of the behavioral complexity in fish, which exceeds that found in amphibians and reptiles.


Assuntos
Adaptação Fisiológica/genética , Evolução Biológica , Ciprinodontiformes/genética , Proteínas de Peixes/genética , Genoma , Seleção Genética , Cromossomos Sexuais/genética , Animais , Feminino , Duplicação Gênica , Meiose/genética , Dados de Sequência Molecular , Filogenia , Sintenia , Viviparidade não Mamífera
8.
Nat Genet ; 43(3): 228-35, 2011 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-21336279

RESUMO

Genome evolution studies for the phylum Nematoda have been limited by focusing on comparisons involving Caenorhabditis elegans. We report a draft genome sequence of Trichinella spiralis, a food-borne zoonotic parasite, which is the most common cause of human trichinellosis. This parasitic nematode is an extant member of a clade that diverged early in the evolution of the phylum, enabling identification of archetypical genes and molecular signatures exclusive to nematodes. We sequenced the 64-Mb nuclear genome, which is estimated to contain 15,808 protein-coding genes, at ∼35-fold coverage using whole-genome shotgun and hierarchal map-assisted sequencing. Comparative genome analyses support intrachromosomal rearrangements across the phylum, disproportionate numbers of protein family deaths over births in parasitic compared to a non-parasitic nematode and a preponderance of gene-loss and -gain events in nematodes relative to Drosophila melanogaster. This genome sequence and the identified pan-phylum characteristics will contribute to genome evolution studies of Nematoda as well as strategies to combat global parasites of humans, food animals and crops.


Assuntos
Genoma Helmíntico , Trichinella spiralis/genética , Animais , Sequência de Bases , Sequência Conservada , Evolução Molecular , Dados de Sequência Molecular , Nematoides/genética , Filogenia , Análise de Sequência de DNA/métodos
9.
Science ; 328(5981): 994-9, 2010 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-20489017

RESUMO

The human microbiome refers to the community of microorganisms, including prokaryotes, viruses, and microbial eukaryotes, that populate the human body. The National Institutes of Health launched an initiative that focuses on describing the diversity of microbial species that are associated with health and disease. The first phase of this initiative includes the sequencing of hundreds of microbial reference genomes, coupled to metagenomic sequencing from multiple body sites. Here we present results from an initial reference genome sequencing of 178 microbial genomes. From 547,968 predicted polypeptides that correspond to the gene complement of these strains, previously unidentified ("novel") polypeptides that had both unmasked sequence length greater than 100 amino acids and no BLASTP match to any nonreference entry in the nonredundant subset were defined. This analysis resulted in a set of 30,867 polypeptides, of which 29,987 (approximately 97%) were unique. In addition, this set of microbial genomes allows for approximately 40% of random sequences from the microbiome of the gastrointestinal tract to be associated with organisms based on the match criteria used. Insights into pan-genome analysis suggest that we are still far from saturating microbial species genetic data sets. In addition, the associated metrics and standards used by our group for quality assurance are presented.


Assuntos
Genoma Bacteriano , Metagenoma/genética , Análise de Sequência de DNA , Bactérias/classificação , Bactérias/genética , Proteínas de Bactérias/química , Proteínas de Bactérias/genética , Biodiversidade , Biologia Computacional , Bases de Dados Genéticas , Trato Gastrointestinal/microbiologia , Genes Bacterianos , Variação Genética , Genoma Arqueal , Humanos , Metagenômica/métodos , Metagenômica/normas , Boca/microbiologia , Peptídeos/química , Peptídeos/genética , Filogenia , Sistema Respiratório/microbiologia , Análise de Sequência de DNA/normas , Pele/microbiologia , Sistema Urogenital/microbiologia
10.
Nat Genet ; 40(10): 1193-8, 2008 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-18806794

RESUMO

Here we present a draft genome sequence of the nematode Pristionchus pacificus, a species that is associated with beetles and is used as a model system in evolutionary biology. With 169 Mb and 23,500 predicted protein-coding genes, the P. pacificus genome is larger than those of Caenorhabditis elegans and the human parasite Brugia malayi. Compared to C. elegans, the P. pacificus genome has more genes encoding cytochrome P450 enzymes, glucosyltransferases, sulfotransferases and ABC transporters, many of which were experimentally validated. The P. pacificus genome contains genes encoding cellulase and diapausin, and cellulase activity is found in P. pacificus secretions, indicating that cellulases can be found in nematodes beyond plant parasites. The relatively higher number of detoxification and degradation enzymes in P. pacificus is consistent with its necromenic lifestyle and might represent a preadaptation for parasitism. Thus, comparative genomics analysis of three ecologically distinct nematodes offers a unique opportunity to investigate the association between genome structure and lifestyle.


Assuntos
Mapeamento Cromossômico , Besouros/parasitologia , Genes de Helmintos , Genoma Helmíntico , Intestinos/parasitologia , Nematoides/fisiologia , Sequência de Aminoácidos , Animais , Caenorhabditis elegans/genética , Evolução Molecular , Éxons/genética , Interações Hospedeiro-Parasita , Íntrons/genética , Dados de Sequência Molecular , Filogenia , Homologia de Sequência de Aminoácidos
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