Cargando…
A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y
The mammalian Y Chromosome sequence, critical for studying male fertility and dispersal, is enriched in repeats and palindromes, and thus, is the most difficult component of the genome to assemble. Previously, expensive and labor-intensive BAC-based techniques were used to sequence the Y for a handf...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Cold Spring Harbor Laboratory Press
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817776/ https://www.ncbi.nlm.nih.gov/pubmed/26934921 http://dx.doi.org/10.1101/gr.199448.115 |
_version_ | 1782424931927064576 |
---|---|
author | Tomaszkiewicz, Marta Rangavittal, Samarth Cechova, Monika Sanchez, Rebeca Campos Fescemyer, Howard W. Harris, Robert Ye, Danling O'Brien, Patricia C.M. Chikhi, Rayan Ryder, Oliver A. Ferguson-Smith, Malcolm A. Medvedev, Paul Makova, Kateryna D. |
author_facet | Tomaszkiewicz, Marta Rangavittal, Samarth Cechova, Monika Sanchez, Rebeca Campos Fescemyer, Howard W. Harris, Robert Ye, Danling O'Brien, Patricia C.M. Chikhi, Rayan Ryder, Oliver A. Ferguson-Smith, Malcolm A. Medvedev, Paul Makova, Kateryna D. |
author_sort | Tomaszkiewicz, Marta |
collection | PubMed |
description | The mammalian Y Chromosome sequence, critical for studying male fertility and dispersal, is enriched in repeats and palindromes, and thus, is the most difficult component of the genome to assemble. Previously, expensive and labor-intensive BAC-based techniques were used to sequence the Y for a handful of mammalian species. Here, we present a much faster and more affordable strategy for sequencing and assembling mammalian Y Chromosomes of sufficient quality for most comparative genomics analyses and for conservation genetics applications. The strategy combines flow sorting, short- and long-read genome and transcriptome sequencing, and droplet digital PCR with novel and existing computational methods. It can be used to reconstruct sex chromosomes in a heterogametic sex of any species. We applied our strategy to produce a draft of the gorilla Y sequence. The resulting assembly allowed us to refine gene content, evaluate copy number of ampliconic gene families, locate species-specific palindromes, examine the repetitive element content, and produce sequence alignments with human and chimpanzee Y Chromosomes. Our results inform the evolution of the hominine (human, chimpanzee, and gorilla) Y Chromosomes. Surprisingly, we found the gorilla Y Chromosome to be similar to the human Y Chromosome, but not to the chimpanzee Y Chromosome. Moreover, we have utilized the assembled gorilla Y Chromosome sequence to design genetic markers for studying the male-specific dispersal of this endangered species. |
format | Online Article Text |
id | pubmed-4817776 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Cold Spring Harbor Laboratory Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-48177762016-04-22 A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y Tomaszkiewicz, Marta Rangavittal, Samarth Cechova, Monika Sanchez, Rebeca Campos Fescemyer, Howard W. Harris, Robert Ye, Danling O'Brien, Patricia C.M. Chikhi, Rayan Ryder, Oliver A. Ferguson-Smith, Malcolm A. Medvedev, Paul Makova, Kateryna D. Genome Res Method The mammalian Y Chromosome sequence, critical for studying male fertility and dispersal, is enriched in repeats and palindromes, and thus, is the most difficult component of the genome to assemble. Previously, expensive and labor-intensive BAC-based techniques were used to sequence the Y for a handful of mammalian species. Here, we present a much faster and more affordable strategy for sequencing and assembling mammalian Y Chromosomes of sufficient quality for most comparative genomics analyses and for conservation genetics applications. The strategy combines flow sorting, short- and long-read genome and transcriptome sequencing, and droplet digital PCR with novel and existing computational methods. It can be used to reconstruct sex chromosomes in a heterogametic sex of any species. We applied our strategy to produce a draft of the gorilla Y sequence. The resulting assembly allowed us to refine gene content, evaluate copy number of ampliconic gene families, locate species-specific palindromes, examine the repetitive element content, and produce sequence alignments with human and chimpanzee Y Chromosomes. Our results inform the evolution of the hominine (human, chimpanzee, and gorilla) Y Chromosomes. Surprisingly, we found the gorilla Y Chromosome to be similar to the human Y Chromosome, but not to the chimpanzee Y Chromosome. Moreover, we have utilized the assembled gorilla Y Chromosome sequence to design genetic markers for studying the male-specific dispersal of this endangered species. Cold Spring Harbor Laboratory Press 2016-04 /pmc/articles/PMC4817776/ /pubmed/26934921 http://dx.doi.org/10.1101/gr.199448.115 Text en © 2016 Tomaszkiewicz et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/. |
spellingShingle | Method Tomaszkiewicz, Marta Rangavittal, Samarth Cechova, Monika Sanchez, Rebeca Campos Fescemyer, Howard W. Harris, Robert Ye, Danling O'Brien, Patricia C.M. Chikhi, Rayan Ryder, Oliver A. Ferguson-Smith, Malcolm A. Medvedev, Paul Makova, Kateryna D. A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title | A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title_full | A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title_fullStr | A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title_full_unstemmed | A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title_short | A time- and cost-effective strategy to sequence mammalian Y Chromosomes: an application to the de novo assembly of gorilla Y |
title_sort | time- and cost-effective strategy to sequence mammalian y chromosomes: an application to the de novo assembly of gorilla y |
topic | Method |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817776/ https://www.ncbi.nlm.nih.gov/pubmed/26934921 http://dx.doi.org/10.1101/gr.199448.115 |
work_keys_str_mv | AT tomaszkiewiczmarta atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT rangavittalsamarth atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT cechovamonika atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT sanchezrebecacampos atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT fescemyerhowardw atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT harrisrobert atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT yedanling atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT obrienpatriciacm atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT chikhirayan atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT ryderolivera atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT fergusonsmithmalcolma atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT medvedevpaul atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT makovakaterynad atimeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT tomaszkiewiczmarta timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT rangavittalsamarth timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT cechovamonika timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT sanchezrebecacampos timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT fescemyerhowardw timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT harrisrobert timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT yedanling timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT obrienpatriciacm timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT chikhirayan timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT ryderolivera timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT fergusonsmithmalcolma timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT medvedevpaul timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay AT makovakaterynad timeandcosteffectivestrategytosequencemammalianychromosomesanapplicationtothedenovoassemblyofgorillay |