A plant genome usually encompasses different families of transposable elements (TEs) that may constitute up to 85% of nuclear DNA. Under stressful conditions, some of them may activate, leading to sequence variation. In vitro plant regeneration may induce either phenotypic or genetic and epigenetic changes. While DNA methylation alternations might be related, i.e., to the Yang cycle problems, DNA pattern changes, especially DNA demethylation, may activate TEs that could result in point mutations in DNA sequence changes. Thus, TEs have the highest input into sequence variation (SV). A set of barley regenerants were derived via in vitro anther culture. High Performance Liquid Chromatography (RP-HPLC), used to study the global DNA methylation ...
Plant genomes are not static; they are constantly being transformed by nucleotide substitutions, the...
Transposable elements (TEs) constitute a large fraction of plant genomes and are mostly present in a...
Plant tissue culture is an in vitro technique used to manipulate cells, tissues, or organs, and play...
Abstract Background When plant tissue is passaged through in vitro culture, many regenerated plants ...
DNA methylation, a common modification of genomic DNA, is known to influence the expression of trans...
Plant tissue culture uses the genetic potential, or totipotency, of plants to regenerate and give ri...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation is involved in both plant development and adaptation to environmental stress. Change...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation can contribute to the maintenance of genome integrity and regulation of gene express...
The barley (Hordeum vulgare) genome comprises over 32,000 genes, with differentiated cells expressin...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
Most transgenic crops are produced through tissue culture. The impact of utilizing such methods on t...
Plant genomes are not static; they are constantly being transformed by nucleotide substitutions, the...
Transposable elements (TEs) constitute a large fraction of plant genomes and are mostly present in a...
Plant tissue culture is an in vitro technique used to manipulate cells, tissues, or organs, and play...
Abstract Background When plant tissue is passaged through in vitro culture, many regenerated plants ...
DNA methylation, a common modification of genomic DNA, is known to influence the expression of trans...
Plant tissue culture uses the genetic potential, or totipotency, of plants to regenerate and give ri...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
DNA methylation is involved in both plant development and adaptation to environmental stress. Change...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation can contribute to the maintenance of genome integrity and regulation of gene express...
The barley (Hordeum vulgare) genome comprises over 32,000 genes, with differentiated cells expressin...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
DNA methylation and epigenetic silencing play important roles in the regulation of transposable elem...
Most transgenic crops are produced through tissue culture. The impact of utilizing such methods on t...
Plant genomes are not static; they are constantly being transformed by nucleotide substitutions, the...
Transposable elements (TEs) constitute a large fraction of plant genomes and are mostly present in a...
Plant tissue culture is an in vitro technique used to manipulate cells, tissues, or organs, and play...