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The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle

Nematodes compose an abundant and diverse invertebrate phylum with members inhabiting nearly every ecological niche. Panagrellus redivivus (the “microworm”) is a free-living nematode frequently used to understand the evolution of developmental and behavioral processes given its phylogenetic distance...

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Autores principales: Srinivasan, Jagan, Dillman, Adler R., Macchietto, Marissa G., Heikkinen, Liisa, Lakso, Merja, Fracchia, Kelley M., Antoshechkin, Igor, Mortazavi, Ali, Wong, Garry, Sternberg, Paul W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3606103/
https://www.ncbi.nlm.nih.gov/pubmed/23410827
http://dx.doi.org/10.1534/genetics.112.148809
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author Srinivasan, Jagan
Dillman, Adler R.
Macchietto, Marissa G.
Heikkinen, Liisa
Lakso, Merja
Fracchia, Kelley M.
Antoshechkin, Igor
Mortazavi, Ali
Wong, Garry
Sternberg, Paul W.
author_facet Srinivasan, Jagan
Dillman, Adler R.
Macchietto, Marissa G.
Heikkinen, Liisa
Lakso, Merja
Fracchia, Kelley M.
Antoshechkin, Igor
Mortazavi, Ali
Wong, Garry
Sternberg, Paul W.
author_sort Srinivasan, Jagan
collection PubMed
description Nematodes compose an abundant and diverse invertebrate phylum with members inhabiting nearly every ecological niche. Panagrellus redivivus (the “microworm”) is a free-living nematode frequently used to understand the evolution of developmental and behavioral processes given its phylogenetic distance to Caenorhabditis elegans. Here we report the de novo sequencing of the genome, transcriptome, and small RNAs of P. redivivus. Using a combination of automated gene finders and RNA-seq data, we predict 24,249 genes and 32,676 transcripts. Small RNA analysis revealed 248 microRNA (miRNA) hairpins, of which 63 had orthologs in other species. Fourteen miRNA clusters containing 42 miRNA precursors were found. The RNA interference, dauer development, and programmed cell death pathways are largely conserved. Analysis of protein family domain abundance revealed that P. redivivus has experienced a striking expansion of BTB domain-containing proteins and an unprecedented expansion of the cullin scaffold family of proteins involved in multi-subunit ubiquitin ligases, suggesting proteolytic plasticity and/or tighter regulation of protein turnover. The eukaryotic release factor protein family has also been dramatically expanded and suggests an ongoing evolutionary arms race with viruses and transposons. The P. redivivus genome provides a resource to advance our understanding of nematode evolution and biology and to further elucidate the genomic architecture leading to free-living lineages, taking advantage of the many fascinating features of this worm revealed by comparative studies.
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spelling pubmed-36061032013-04-01 The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle Srinivasan, Jagan Dillman, Adler R. Macchietto, Marissa G. Heikkinen, Liisa Lakso, Merja Fracchia, Kelley M. Antoshechkin, Igor Mortazavi, Ali Wong, Garry Sternberg, Paul W. Genetics Investigations Nematodes compose an abundant and diverse invertebrate phylum with members inhabiting nearly every ecological niche. Panagrellus redivivus (the “microworm”) is a free-living nematode frequently used to understand the evolution of developmental and behavioral processes given its phylogenetic distance to Caenorhabditis elegans. Here we report the de novo sequencing of the genome, transcriptome, and small RNAs of P. redivivus. Using a combination of automated gene finders and RNA-seq data, we predict 24,249 genes and 32,676 transcripts. Small RNA analysis revealed 248 microRNA (miRNA) hairpins, of which 63 had orthologs in other species. Fourteen miRNA clusters containing 42 miRNA precursors were found. The RNA interference, dauer development, and programmed cell death pathways are largely conserved. Analysis of protein family domain abundance revealed that P. redivivus has experienced a striking expansion of BTB domain-containing proteins and an unprecedented expansion of the cullin scaffold family of proteins involved in multi-subunit ubiquitin ligases, suggesting proteolytic plasticity and/or tighter regulation of protein turnover. The eukaryotic release factor protein family has also been dramatically expanded and suggests an ongoing evolutionary arms race with viruses and transposons. The P. redivivus genome provides a resource to advance our understanding of nematode evolution and biology and to further elucidate the genomic architecture leading to free-living lineages, taking advantage of the many fascinating features of this worm revealed by comparative studies. Genetics Society of America 2013-04 /pmc/articles/PMC3606103/ /pubmed/23410827 http://dx.doi.org/10.1534/genetics.112.148809 Text en Copyright © 2013 by the Genetics Society of America Available freely online through the author-supported open access option.
spellingShingle Investigations
Srinivasan, Jagan
Dillman, Adler R.
Macchietto, Marissa G.
Heikkinen, Liisa
Lakso, Merja
Fracchia, Kelley M.
Antoshechkin, Igor
Mortazavi, Ali
Wong, Garry
Sternberg, Paul W.
The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title_full The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title_fullStr The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title_full_unstemmed The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title_short The Draft Genome and Transcriptome of Panagrellus redivivus Are Shaped by the Harsh Demands of a Free-Living Lifestyle
title_sort draft genome and transcriptome of panagrellus redivivus are shaped by the harsh demands of a free-living lifestyle
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3606103/
https://www.ncbi.nlm.nih.gov/pubmed/23410827
http://dx.doi.org/10.1534/genetics.112.148809
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