Analysis of DNA methylation during the germination of wheat seeds

DNA methylation is known to play a crucial role in regulating plant development and organ or tissue differentiation. Here, we focused on the DNA methylation dynamics during the germination of wheat seeds using the adapted AFLP technique so called methylation-sensitive amplified polymorphism (MSAP)....

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出版年:Biologia Plantarum
主要な著者: F. -R. Meng, Y. -C. Li, J. Yin, H. Liu, X. -J. Chen, Z. -F. Ni, Q. -X. Sun
フォーマット: 論文
言語:英語
出版事項: Institute of Experimental Botany of the Czech Academy of Sciences 2012-06-01
主題:
オンライン・アクセス:https://bp.ueb.cas.cz/artkey/bpl-201202-0010_Analysis-of-DNA-methylation-during-the-germination-of-wheat-seeds.php
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author F. -R. Meng
Y. -C. Li
J. Yin
H. Liu
X. -J. Chen
Z. -F. Ni
Q. -X. Sun
author_facet F. -R. Meng
Y. -C. Li
J. Yin
H. Liu
X. -J. Chen
Z. -F. Ni
Q. -X. Sun
author_sort F. -R. Meng
collection DOAJ
container_title Biologia Plantarum
description DNA methylation is known to play a crucial role in regulating plant development and organ or tissue differentiation. Here, we focused on the DNA methylation dynamics during the germination of wheat seeds using the adapted AFLP technique so called methylation-sensitive amplified polymorphism (MSAP). The MSAP profiles of genomic DNA in embryo and endosperm tissues of germinating seeds, as well as dry seeds were characterized and notable changes of cytosine methylation were detected. Comparisons of MSAP profiles in different tissues tested showed that the methylation level in dry seeds is the highest. The alteration analysis of cytosine methylation displayed that the number of demethylation events were three times higher than that of de novo methylation, which indicated that the demethylation was predominant in germinating wheat seeds, though the methylation events occurred as well. Sixteen differentially displayed DNA fragments in MSAP profiles were cloned and the sequencing analysis confirmed that nine of them contained CCGG sites. The further BLAST search showed that four of the cloned sequences were located in coding regions. Interestingly, three of the sixteen candidates were homologous to retrotransposons, which indicated that switches between DNA methylation and demethylation occurred in retrotransposon elements along with the germination of wheat seeds.
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spelling doaj-art-56b69c2a8b644495ae42e2e09fa0b8a42025-08-20T01:01:17ZengInstitute of Experimental Botany of the Czech Academy of SciencesBiologia Plantarum1573-82642012-06-0156226927510.1007/s10535-012-0086-2bpl-201202-0010Analysis of DNA methylation during the germination of wheat seedsF. -R. Meng0Y. -C. Li1J. Yin2H. Liu3X. -J. Chen4Z. -F. Ni5Q. -X. Sun6College of Life Science, Henan Agricultural University, Zhengzhou, P.R. ChinaNational Engineering Research Centre for Wheat, Henan Agricultural University, Zhengzhou, P.R. ChinaNational Engineering Research Centre for Wheat, Henan Agricultural University, Zhengzhou, P.R. ChinaCollege of Life Science, Henan Agricultural University, Zhengzhou, P.R. ChinaCollege of Life Science, Henan Agricultural University, Zhengzhou, P.R. ChinaDepartment of Plant Genetics and Breeding, State Key Lab for Agro-Biotechnology, China Agricultural University, Beijing, P.R. ChinaDepartment of Plant Genetics and Breeding, State Key Lab for Agro-Biotechnology, China Agricultural University, Beijing, P.R. ChinaDNA methylation is known to play a crucial role in regulating plant development and organ or tissue differentiation. Here, we focused on the DNA methylation dynamics during the germination of wheat seeds using the adapted AFLP technique so called methylation-sensitive amplified polymorphism (MSAP). The MSAP profiles of genomic DNA in embryo and endosperm tissues of germinating seeds, as well as dry seeds were characterized and notable changes of cytosine methylation were detected. Comparisons of MSAP profiles in different tissues tested showed that the methylation level in dry seeds is the highest. The alteration analysis of cytosine methylation displayed that the number of demethylation events were three times higher than that of de novo methylation, which indicated that the demethylation was predominant in germinating wheat seeds, though the methylation events occurred as well. Sixteen differentially displayed DNA fragments in MSAP profiles were cloned and the sequencing analysis confirmed that nine of them contained CCGG sites. The further BLAST search showed that four of the cloned sequences were located in coding regions. Interestingly, three of the sixteen candidates were homologous to retrotransposons, which indicated that switches between DNA methylation and demethylation occurred in retrotransposon elements along with the germination of wheat seeds.https://bp.ueb.cas.cz/artkey/bpl-201202-0010_Analysis-of-DNA-methylation-during-the-germination-of-wheat-seeds.phpembryoendospermcloningsequence analysis
spellingShingle F. -R. Meng
Y. -C. Li
J. Yin
H. Liu
X. -J. Chen
Z. -F. Ni
Q. -X. Sun
Analysis of DNA methylation during the germination of wheat seeds
embryo
endosperm
cloning
sequence analysis
title Analysis of DNA methylation during the germination of wheat seeds
title_full Analysis of DNA methylation during the germination of wheat seeds
title_fullStr Analysis of DNA methylation during the germination of wheat seeds
title_full_unstemmed Analysis of DNA methylation during the germination of wheat seeds
title_short Analysis of DNA methylation during the germination of wheat seeds
title_sort analysis of dna methylation during the germination of wheat seeds
topic embryo
endosperm
cloning
sequence analysis
url https://bp.ueb.cas.cz/artkey/bpl-201202-0010_Analysis-of-DNA-methylation-during-the-germination-of-wheat-seeds.php
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