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Allele-specific DNA methylation and gene expression during shoot organogenesis in tissue culture of hybrid poplar.


ABSTRACT: Plant tissue regeneration is critical for genetic transformation and genome editing techniques. During the regeneration process, changes in epigenetic modifications accompany the cell fate transition. However, how allele-specific DNA methylation in two haplotypes contributes to the transcriptional dynamics during regeneration remains elusive. Here we applied an inter-species hybrid poplar (Populus alba × P. glandulosa cv. 84 K) as a system to characterize the DNA methylation landscape during de novo shoot organogenesis at allele level. Both direct and indirect shoot organogenesis showed a reduction in genome-wide DNA methylation. At gene level, non-expressed genes were hypermethylated in comparison with expressed genes. Among the genes exhibiting significant correlations between levels of DNA methylation and gene expression, the expression patterns of 75% of genes were negatively correlated with DNA methylation in the CG context, whereas the correlation patterns in the CHH context were the reverse. The allele-biased DNA methylation was consistent during shoot organogenesis, with fewer than one-thousandth of allele-specific methylation regions shifted. Analysis of allele-specific expression revealed that there were only 1909 genes showing phase-dependent allele-biased expression in the regeneration process, among which the allele pairs with greater differences in transcription factor binding sites at promoter regions exhibited greater differences in allele expression. Our results indicated a relatively independent transcriptional regulation in two subgenomes during shoot organogenesis, which was contributed by cis-acting genomic and epigenomic variations.

SUBMITTER: Guo Y 

PROVIDER: S-EPMC10967691 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Allele-specific DNA methylation and gene expression during shoot organogenesis in tissue culture of hybrid poplar.

Guo Ying Y   Feng Yang-Fan YF   Yang Gang-Gui GG   Jia Yan Y   He Jie J   Wu Ze-Yu ZY   Liao Hao-Ran HR   Wei Qi-Xuan QX   Xue Liang-Jiao LJ  

Horticulture research 20240124 3


Plant tissue regeneration is critical for genetic transformation and genome editing techniques. During the regeneration process, changes in epigenetic modifications accompany the cell fate transition. However, how allele-specific DNA methylation in two haplotypes contributes to the transcriptional dynamics during regeneration remains elusive. Here we applied an inter-species hybrid poplar (<i>Populus alba</i> × <i>P. glandulosa</i> cv. 84 K) as a system to characterize the DNA methylation landsc  ...[more]

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