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Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants

Brown algae have convergently evolved plant‐like body plans and reproductive cycles, which in plants are controlled by differential DNA methylation. This contribution provides the first single‐base methylome profiles of haploid gametophytes and diploid sporophytes of a multicellular alga. Although o...

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Autores principales: Fan, Xiao, Han, Wentao, Teng, Linhong, Jiang, Peng, Zhang, Xiaowen, Xu, Dong, Li, Chang, Pellegrini, Matteo, Wu, Chunhui, Wang, Yitao, Kaczurowski, Michelle Joyce Slade, Lin, Xin, Tirichine, Leila, Mock, Thomas, Ye, Naihao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916402/
https://www.ncbi.nlm.nih.gov/pubmed/31419316
http://dx.doi.org/10.1111/nph.16125
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author Fan, Xiao
Han, Wentao
Teng, Linhong
Jiang, Peng
Zhang, Xiaowen
Xu, Dong
Li, Chang
Pellegrini, Matteo
Wu, Chunhui
Wang, Yitao
Kaczurowski, Michelle Joyce Slade
Lin, Xin
Tirichine, Leila
Mock, Thomas
Ye, Naihao
author_facet Fan, Xiao
Han, Wentao
Teng, Linhong
Jiang, Peng
Zhang, Xiaowen
Xu, Dong
Li, Chang
Pellegrini, Matteo
Wu, Chunhui
Wang, Yitao
Kaczurowski, Michelle Joyce Slade
Lin, Xin
Tirichine, Leila
Mock, Thomas
Ye, Naihao
author_sort Fan, Xiao
collection PubMed
description Brown algae have convergently evolved plant‐like body plans and reproductive cycles, which in plants are controlled by differential DNA methylation. This contribution provides the first single‐base methylome profiles of haploid gametophytes and diploid sporophytes of a multicellular alga. Although only c. 1.4% of cytosines in Saccharina japonica were methylated mainly at CHH sites and characterized by 5‐methylcytosine (5mC), there were significant differences between life‐cycle stages. DNA methyltransferase 2 (DNMT2), known to efficiently catalyze tRNA methylation, is assumed to methylate the genome of S. japonica in the structural context of tRNAs as the genome does not encode any other DNA methyltransferases. Circular and long noncoding RNA genes were the most strongly methylated regulatory elements in S. japonica. Differential expression of genes was negatively correlated with DNA methylation with the highest methylation levels measured in both haploid gametophytes. Hypomethylated and highly expressed genes in diploid sporophytes included genes involved in morphogenesis and halogen metabolism. The data herein provide evidence that cytosine methylation, although occurring at a low level, is significantly contributing to the formation of different life‐cycle stages, tissue differentiation and metabolism in brown algae.
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spelling pubmed-69164022019-12-23 Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants Fan, Xiao Han, Wentao Teng, Linhong Jiang, Peng Zhang, Xiaowen Xu, Dong Li, Chang Pellegrini, Matteo Wu, Chunhui Wang, Yitao Kaczurowski, Michelle Joyce Slade Lin, Xin Tirichine, Leila Mock, Thomas Ye, Naihao New Phytol Research Brown algae have convergently evolved plant‐like body plans and reproductive cycles, which in plants are controlled by differential DNA methylation. This contribution provides the first single‐base methylome profiles of haploid gametophytes and diploid sporophytes of a multicellular alga. Although only c. 1.4% of cytosines in Saccharina japonica were methylated mainly at CHH sites and characterized by 5‐methylcytosine (5mC), there were significant differences between life‐cycle stages. DNA methyltransferase 2 (DNMT2), known to efficiently catalyze tRNA methylation, is assumed to methylate the genome of S. japonica in the structural context of tRNAs as the genome does not encode any other DNA methyltransferases. Circular and long noncoding RNA genes were the most strongly methylated regulatory elements in S. japonica. Differential expression of genes was negatively correlated with DNA methylation with the highest methylation levels measured in both haploid gametophytes. Hypomethylated and highly expressed genes in diploid sporophytes included genes involved in morphogenesis and halogen metabolism. The data herein provide evidence that cytosine methylation, although occurring at a low level, is significantly contributing to the formation of different life‐cycle stages, tissue differentiation and metabolism in brown algae. John Wiley and Sons Inc. 2019-09-27 2020-01 /pmc/articles/PMC6916402/ /pubmed/31419316 http://dx.doi.org/10.1111/nph.16125 Text en © 2019 The Authors. New Phytologist © 2019 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Fan, Xiao
Han, Wentao
Teng, Linhong
Jiang, Peng
Zhang, Xiaowen
Xu, Dong
Li, Chang
Pellegrini, Matteo
Wu, Chunhui
Wang, Yitao
Kaczurowski, Michelle Joyce Slade
Lin, Xin
Tirichine, Leila
Mock, Thomas
Ye, Naihao
Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title_full Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title_fullStr Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title_full_unstemmed Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title_short Single‐base methylome profiling of the giant kelp Saccharina japonica reveals significant differences in DNA methylation to microalgae and plants
title_sort single‐base methylome profiling of the giant kelp saccharina japonica reveals significant differences in dna methylation to microalgae and plants
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916402/
https://www.ncbi.nlm.nih.gov/pubmed/31419316
http://dx.doi.org/10.1111/nph.16125
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