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Transcriptome analysis of Physcomitrium wild type and ppdnmt2 protonemata under Mannitol stress
SRA Run Selector
Inactivation of mitochondrial complex IV in Physcomitrium patens reveals the essential role of respiration in coordinating plants metabolism.
Comparative analysis of nascent transcription among plant species
PubMed Full text in PMC Similar studies
N6-Methyladenosine modification of mRNA regulates the transition from 2D to 3D growth in the moss Physcomitrium patens [RNA-seq]
PubMed Similar studies
N6-Methyladenosine modification of mRNA regulates the transition from 2D to 3D growth in the moss Physcomitrium patens
N6-Methyladenosine modification of mRNA regulates the transition from 2D to 3D growth in the moss Physcomitrium patens [MeRIP-seq]
Mutating DDM1 in Physcomitrella patens disrupts DNA methylation with a minute effect on transposon regulation and development
Mutating DDM1 in Physcomitrella patens disrupts DNA methylation with a minute effect on transposon regulation and development [RNA-seq]
Mutating DDM1 in Physcomitrella patens disrupts DNA methylation with a minute effect on transposon regulation and development [Bisulfite-seq]
Surface-localized glycoproteins act through class C ARFs to fine-tune gametophore initiation in Physcomitrium patens
Genes affected by auxin and decapitation in moss gametophores
A Physcomitrella protein acts in spermatogenesis and sporophyte abortion
Global analysis reveals large scale dynamics of protein-RNA interaction and RNA secondary structure characteristics of Physcomitrella patens ABA response (PIP-Seq)
Global analysis reveals large scale dynamics of protein-RNA interaction and RNA secondary structure characteristics of Physcomitrella patens ABA response (mRNA)
The Physcomitrium patens egg cell changes the epigenetic program and utilizes homologs of Arabidopsis male genes, including BONOBOs, for cell specification
Non-CG methylation is more potent than CG methylation in moss genome regulation
Non-CG methylation is more potent than CG methylation in moss genome regulation [Ppatens RNA-Seq]
Non-CG methylation is more potent than CG methylation in moss genome regulation [Ppatens BS-Seq]
Two novel PLS-class pentatricopeptide repeat proteins are involved in the group II intron splicing of mitochondrial transcripts in the moss Physcomitrella patens
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Transcriptome analysis
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