Plant tissue culture is an in vitro technique used to manipulate cells, tissues, or organs, and plays an important role in genetic transformation. However, plants cultured in vitro often exhibit unintended genetic and epigenetic variations. Since it is important to secure the stability of endogenous and exogenous gene expressions in transgenic plants, it is preferable to avoid the occurrence of such variations. In this study, we focused on epigenetic variations, exclusively on methylation level changes of DNA, in transgenic Chinese cabbage (Brassica rapa ssp. pekinensis) plants. To detect these methylation level changes of DNA, bisulfite sequencing was performed and the obtained sequences were compared with the ‘CT001’ reference genome. Dif...
Plants produced vegetatively in tissue culture may differ from the plants from which they have been ...
Abstract Background Cytosine DNA methylation (5mC) is an epigenetic modification that is important t...
Epigenetic regulation is achieved through cytosine DNA methylation and histone modification. Epigene...
DNA methylation is an epigenetic gene regulatory mechanism that plays an essential role in gene expr...
DNA methylation can contribute to the maintenance of genome integrity and regulation of gene express...
DNA methylation is an important regulatory mechanism for gene expression that involved in the biolog...
AbstractDNA methylation, an important epigenetic modification, serves as a key function in the polyp...
Most transgenic crops are produced through tissue culture. The impact of utilizing such methods on t...
DNA methylation is an important regulatory mechanism for gene expression that involved in the biolog...
<div><p>DNA methylation is an important regulatory mechanism for gene expression that involved in th...
The ability of plants to adapt their form in response to changing environment is known as phenotypic...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
Abstract Background DNA cytosine methylation is an epigenetic modification that has been implicated ...
Plants produced vegetatively in tissue culture may differ from the plants from which they have been ...
Abstract Background Cytosine DNA methylation (5mC) is an epigenetic modification that is important t...
Epigenetic regulation is achieved through cytosine DNA methylation and histone modification. Epigene...
DNA methylation is an epigenetic gene regulatory mechanism that plays an essential role in gene expr...
DNA methylation can contribute to the maintenance of genome integrity and regulation of gene express...
DNA methylation is an important regulatory mechanism for gene expression that involved in the biolog...
AbstractDNA methylation, an important epigenetic modification, serves as a key function in the polyp...
Most transgenic crops are produced through tissue culture. The impact of utilizing such methods on t...
DNA methylation is an important regulatory mechanism for gene expression that involved in the biolog...
<div><p>DNA methylation is an important regulatory mechanism for gene expression that involved in th...
The ability of plants to adapt their form in response to changing environment is known as phenotypic...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an ancient molecular modification found in most eukaryotes. In plants, DNA methyl...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
Abstract Background DNA cytosine methylation is an epigenetic modification that has been implicated ...
Plants produced vegetatively in tissue culture may differ from the plants from which they have been ...
Abstract Background Cytosine DNA methylation (5mC) is an epigenetic modification that is important t...
Epigenetic regulation is achieved through cytosine DNA methylation and histone modification. Epigene...