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Improvements in the sequencing and assembly of plant genomes

Advances in DNA sequencing have made it easier to sequence and assemble plant genomes. Here, we extend an earlier study, and compare recent methods for long read sequencing and assembly. Updated Oxford Nanopore Technology software improved assemblies. Using more accurate sequences produced by repeat...

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Autores principales: Sharma, Priyanka, Al-Dossary, Othman, Alsubaie, Bader, Al-Mssallem, Ibrahim, Nath, Onkar, Mitter, Neena, Rodrigues Alves Margarido, Gabriel, Topp, Bruce, Murigneux, Valentine, Kharabian Masouleh, Ardashir, Furtado, Agnelo, Henry, Robert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: GigaScience Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631998/
https://www.ncbi.nlm.nih.gov/pubmed/36824328
http://dx.doi.org/10.46471/gigabyte.24
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author Sharma, Priyanka
Al-Dossary, Othman
Alsubaie, Bader
Al-Mssallem, Ibrahim
Nath, Onkar
Mitter, Neena
Rodrigues Alves Margarido, Gabriel
Topp, Bruce
Murigneux, Valentine
Kharabian Masouleh, Ardashir
Furtado, Agnelo
Henry, Robert J.
author_facet Sharma, Priyanka
Al-Dossary, Othman
Alsubaie, Bader
Al-Mssallem, Ibrahim
Nath, Onkar
Mitter, Neena
Rodrigues Alves Margarido, Gabriel
Topp, Bruce
Murigneux, Valentine
Kharabian Masouleh, Ardashir
Furtado, Agnelo
Henry, Robert J.
author_sort Sharma, Priyanka
collection PubMed
description Advances in DNA sequencing have made it easier to sequence and assemble plant genomes. Here, we extend an earlier study, and compare recent methods for long read sequencing and assembly. Updated Oxford Nanopore Technology software improved assemblies. Using more accurate sequences produced by repeated sequencing of the same molecule (Pacific Biosciences HiFi) resulted in less fragmented assembly of sequencing reads. Using data for increased genome coverage resulted in longer contigs, but reduced total assembly length and improved genome completeness. The original model species, Macadamia jansenii, was also compared with three other Macadamia species, as well as avocado (Persea americana) and jojoba (Simmondsia chinensis). In these angiosperms, increasing sequence data volumes caused a linear increase in contig size, decreased assembly length and further improved already high completeness. Differences in genome size and sequence complexity influenced the success of assembly. Advances in long read sequencing technology continue to improve plant genome sequencing and assembly. However, results were improved by greater genome coverage, with the amount needed to achieve a particular level of assembly being species dependent.
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spelling pubmed-96319982023-02-22 Improvements in the sequencing and assembly of plant genomes Sharma, Priyanka Al-Dossary, Othman Alsubaie, Bader Al-Mssallem, Ibrahim Nath, Onkar Mitter, Neena Rodrigues Alves Margarido, Gabriel Topp, Bruce Murigneux, Valentine Kharabian Masouleh, Ardashir Furtado, Agnelo Henry, Robert J. GigaByte Update Advances in DNA sequencing have made it easier to sequence and assemble plant genomes. Here, we extend an earlier study, and compare recent methods for long read sequencing and assembly. Updated Oxford Nanopore Technology software improved assemblies. Using more accurate sequences produced by repeated sequencing of the same molecule (Pacific Biosciences HiFi) resulted in less fragmented assembly of sequencing reads. Using data for increased genome coverage resulted in longer contigs, but reduced total assembly length and improved genome completeness. The original model species, Macadamia jansenii, was also compared with three other Macadamia species, as well as avocado (Persea americana) and jojoba (Simmondsia chinensis). In these angiosperms, increasing sequence data volumes caused a linear increase in contig size, decreased assembly length and further improved already high completeness. Differences in genome size and sequence complexity influenced the success of assembly. Advances in long read sequencing technology continue to improve plant genome sequencing and assembly. However, results were improved by greater genome coverage, with the amount needed to achieve a particular level of assembly being species dependent. GigaScience Press 2021-06-10 /pmc/articles/PMC9631998/ /pubmed/36824328 http://dx.doi.org/10.46471/gigabyte.24 Text en © The Author(s) 2021. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Update
Sharma, Priyanka
Al-Dossary, Othman
Alsubaie, Bader
Al-Mssallem, Ibrahim
Nath, Onkar
Mitter, Neena
Rodrigues Alves Margarido, Gabriel
Topp, Bruce
Murigneux, Valentine
Kharabian Masouleh, Ardashir
Furtado, Agnelo
Henry, Robert J.
Improvements in the sequencing and assembly of plant genomes
title Improvements in the sequencing and assembly of plant genomes
title_full Improvements in the sequencing and assembly of plant genomes
title_fullStr Improvements in the sequencing and assembly of plant genomes
title_full_unstemmed Improvements in the sequencing and assembly of plant genomes
title_short Improvements in the sequencing and assembly of plant genomes
title_sort improvements in the sequencing and assembly of plant genomes
topic Update
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9631998/
https://www.ncbi.nlm.nih.gov/pubmed/36824328
http://dx.doi.org/10.46471/gigabyte.24
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