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Analyses of Hypomethylated Oil Palm Gene Space

Demand for palm oil has been increasing by an average of ∼8% the past decade and currently accounts for about 59% of the world's vegetable oil market. This drives the need to increase palm oil production. Nevertheless, due to the increasing need for sustainable production, it is imperative to i...

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Autores principales: Low, Eng-Ti L., Rosli, Rozana, Jayanthi, Nagappan, Mohd-Amin, Ab Halim, Azizi, Norazah, Chan, Kuang-Lim, Maqbool, Nauman J., Maclean, Paul, Brauning, Rudi, McCulloch, Alan, Moraga, Roger, Ong-Abdullah, Meilina, Singh, Rajinder
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907425/
https://www.ncbi.nlm.nih.gov/pubmed/24497974
http://dx.doi.org/10.1371/journal.pone.0086728
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author Low, Eng-Ti L.
Rosli, Rozana
Jayanthi, Nagappan
Mohd-Amin, Ab Halim
Azizi, Norazah
Chan, Kuang-Lim
Maqbool, Nauman J.
Maclean, Paul
Brauning, Rudi
McCulloch, Alan
Moraga, Roger
Ong-Abdullah, Meilina
Singh, Rajinder
author_facet Low, Eng-Ti L.
Rosli, Rozana
Jayanthi, Nagappan
Mohd-Amin, Ab Halim
Azizi, Norazah
Chan, Kuang-Lim
Maqbool, Nauman J.
Maclean, Paul
Brauning, Rudi
McCulloch, Alan
Moraga, Roger
Ong-Abdullah, Meilina
Singh, Rajinder
author_sort Low, Eng-Ti L.
collection PubMed
description Demand for palm oil has been increasing by an average of ∼8% the past decade and currently accounts for about 59% of the world's vegetable oil market. This drives the need to increase palm oil production. Nevertheless, due to the increasing need for sustainable production, it is imperative to increase productivity rather than the area cultivated. Studies on the oil palm genome are essential to help identify genes or markers that are associated with important processes or traits, such as flowering, yield and disease resistance. To achieve this, 294,115 and 150,744 sequences from the hypomethylated or gene-rich regions of Elaeis guineensis and E. oleifera genome were sequenced and assembled into contigs. An additional 16,427 shot-gun sequences and 176 bacterial artificial chromosomes (BAC) were also generated to check the quality of libraries constructed. Comparison of these sequences revealed that although the methylation-filtered libraries were sequenced at low coverage, they still tagged at least 66% of the RefSeq supported genes in the BAC and had a filtration power of at least 2.0. A total 33,752 microsatellites and 40,820 high-quality single nucleotide polymorphism (SNP) markers were identified. These represent the most comprehensive collection of microsatellites and SNPs to date and would be an important resource for genetic mapping and association studies. The gene models predicted from the assembled contigs were mined for genes of interest, and 242, 65 and 14 oil palm transcription factors, resistance genes and miRNAs were identified respectively. Examples of the transcriptional factors tagged include those associated with floral development and tissue culture, such as homeodomain proteins, MADS, Squamosa and Apetala2. The E. guineensis and E. oleifera hypomethylated sequences provide an important resource to understand the molecular mechanisms associated with important agronomic traits in oil palm.
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spelling pubmed-39074252014-02-04 Analyses of Hypomethylated Oil Palm Gene Space Low, Eng-Ti L. Rosli, Rozana Jayanthi, Nagappan Mohd-Amin, Ab Halim Azizi, Norazah Chan, Kuang-Lim Maqbool, Nauman J. Maclean, Paul Brauning, Rudi McCulloch, Alan Moraga, Roger Ong-Abdullah, Meilina Singh, Rajinder PLoS One Research Article Demand for palm oil has been increasing by an average of ∼8% the past decade and currently accounts for about 59% of the world's vegetable oil market. This drives the need to increase palm oil production. Nevertheless, due to the increasing need for sustainable production, it is imperative to increase productivity rather than the area cultivated. Studies on the oil palm genome are essential to help identify genes or markers that are associated with important processes or traits, such as flowering, yield and disease resistance. To achieve this, 294,115 and 150,744 sequences from the hypomethylated or gene-rich regions of Elaeis guineensis and E. oleifera genome were sequenced and assembled into contigs. An additional 16,427 shot-gun sequences and 176 bacterial artificial chromosomes (BAC) were also generated to check the quality of libraries constructed. Comparison of these sequences revealed that although the methylation-filtered libraries were sequenced at low coverage, they still tagged at least 66% of the RefSeq supported genes in the BAC and had a filtration power of at least 2.0. A total 33,752 microsatellites and 40,820 high-quality single nucleotide polymorphism (SNP) markers were identified. These represent the most comprehensive collection of microsatellites and SNPs to date and would be an important resource for genetic mapping and association studies. The gene models predicted from the assembled contigs were mined for genes of interest, and 242, 65 and 14 oil palm transcription factors, resistance genes and miRNAs were identified respectively. Examples of the transcriptional factors tagged include those associated with floral development and tissue culture, such as homeodomain proteins, MADS, Squamosa and Apetala2. The E. guineensis and E. oleifera hypomethylated sequences provide an important resource to understand the molecular mechanisms associated with important agronomic traits in oil palm. Public Library of Science 2014-01-30 /pmc/articles/PMC3907425/ /pubmed/24497974 http://dx.doi.org/10.1371/journal.pone.0086728 Text en © 2014 Rosli et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Low, Eng-Ti L.
Rosli, Rozana
Jayanthi, Nagappan
Mohd-Amin, Ab Halim
Azizi, Norazah
Chan, Kuang-Lim
Maqbool, Nauman J.
Maclean, Paul
Brauning, Rudi
McCulloch, Alan
Moraga, Roger
Ong-Abdullah, Meilina
Singh, Rajinder
Analyses of Hypomethylated Oil Palm Gene Space
title Analyses of Hypomethylated Oil Palm Gene Space
title_full Analyses of Hypomethylated Oil Palm Gene Space
title_fullStr Analyses of Hypomethylated Oil Palm Gene Space
title_full_unstemmed Analyses of Hypomethylated Oil Palm Gene Space
title_short Analyses of Hypomethylated Oil Palm Gene Space
title_sort analyses of hypomethylated oil palm gene space
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907425/
https://www.ncbi.nlm.nih.gov/pubmed/24497974
http://dx.doi.org/10.1371/journal.pone.0086728
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