Literature DB >> 31800038

Genome-wide analysis of the H3K27me3 epigenome and transcriptome in Brassica rapa.

Miriam Payá-Milans1, Laura Poza-Viejo1, Patxi San Martín-Uriz2, David Lara-Astiaso2, Mark D Wilkinson1, Pedro Crevillén1.   

Abstract

BACKGROUND: Genome-wide maps of histone modifications have been obtained for several plant species. However, most studies focus on model systems and do not enforce FAIR data management principles. Here we study the H3K27me3 epigenome and associated transcriptome of Brassica rapa, an important vegetable cultivated worldwide.
FINDINGS: We performed H3K27me3 chromatin immunoprecipitation followed by high-throughput sequencing and transcriptomic analysis by 3'-end RNA sequencing from B. rapa leaves and inflorescences. To analyze these data we developed a Reproducible Epigenomic Analysis pipeline using Galaxy and Jupyter, packaged into Docker images to facilitate transparency and reuse. We found that H3K27me3 covers roughly one-third of all B. rapa protein-coding genes and its presence correlates with low transcript levels. The comparative analysis between leaves and inflorescences suggested that the expression of various floral regulatory genes during development depends on H3K27me3. To demonstrate the importance of H3K27me3 for B. rapa development, we characterized a mutant line deficient in the H3K27 methyltransferase activity. We found that braA.clf mutant plants presented pleiotropic alterations, e.g., curly leaves due to increased expression and reduced H3K27me3 levels at AGAMOUS-like loci.
CONCLUSIONS: We characterized the epigenetic mark H3K27me3 at genome-wide levels and provide genetic evidence for its relevance in B. rapa development. Our work reveals the epigenomic landscape of H3K27me3 in B. rapa and provides novel genomics datasets and bioinformatics analytical resources. We anticipate that this work will lead the way to further epigenomic studies in the complex genome of Brassica crops.
© The Author(s) 2019. Published by Oxford University Press.

Entities:  

Year:  2019        PMID: 31800038      PMCID: PMC6892454          DOI: 10.1093/gigascience/giz147

Source DB:  PubMed          Journal:  Gigascience        ISSN: 2047-217X            Impact factor:   6.524


  53 in total

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1.  An Insertion Mutation in Bra032169 Encoding a Histone Methyltransferase Is Responsible for Early Bolting in Chinese Cabbage (Brassica rapa L. ssp. pekinensis).

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Journal:  Front Plant Sci       Date:  2020-05-12       Impact factor: 5.753

Review 2.  Genome Triplication Leads to Transcriptional Divergence of FLOWERING LOCUS C Genes During Vernalization in the Genus Brassica.

Authors:  Ayasha Akter; Etsuko Itabashi; Tomohiro Kakizaki; Keiichi Okazaki; Elizabeth S Dennis; Ryo Fujimoto
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Review 3.  Polycomb Repressive Complex 2 in Eukaryotes-An Evolutionary Perspective.

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Review 4.  Dynamics of H3K27me3 Modification on Plant Adaptation to Environmental Cues.

Authors:  Qingwen Shen; Yisheng Lin; Yingbo Li; Guifeng Wang
Journal:  Plants (Basel)       Date:  2021-06-08

Review 5.  The Importance of Networking: Plant Polycomb Repressive Complex 2 and Its Interactors.

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Journal:  Epigenomes       Date:  2022-03-03
  5 in total

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