Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants, the short interfering (si)RNAs that direct transcriptional silencing are abundant and subfunctionalization has led to specialized machinery responsible for synthesis and action of these small RNAs. In particular, plants possess polymerase (Pol) IV and Pol V, multi-subunit homologs of the canonical DNA-dependent RNA Pol II, as well as specialized members of the RNA-dependent RNA Polymerase (RDR), Dicer-like (DCL), and Argonaute (AGO) families. Together these enzymes are required for production and activity of Pol IV-dependent (p4-)siRNAs, which trigger RNA-directed DNA methylation (RdDM) at homologous sequences. p4-siRNAs accumulate highly in...
Multicellular eukaryotes produce small RNA molecules (approximately 21–24 nucleotides) of two genera...
International audienceThe plant-specific RNA polymerases Pol IV and Pol V are essential to RNA-direc...
Summary: Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are ...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
Gene evolution is one of the most significant contributors to the extensive number and diversity of ...
Thesis (Ph. D.)--University of Washington, 2006.This thesis explores two aspects of the evolution of...
Twenty-four-nucleotide small interfering (si)RNAs are central players in RNA-directed DNA methylatio...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Background DNA-dependent RNA polymerase IV and V (Pol IV and V) are multi-subunit en...
The plant-specific DNA-dependent RNA polymerase V (Pol V) evolved from Pol II to function in an RNA-...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
The RNA-directed DNA methylation pathway (RdDM) can be divided into three phases: (i) small interfer...
In plants, heterochromatin is maintained by a small RNA-based gene silencing mechanism known as RNA-...
ABSTRACT In Arabidopsis, pericentromeric repeats, retroelements, and silenced rRNA genes are assembl...
SummaryMultisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol ...
Multicellular eukaryotes produce small RNA molecules (approximately 21–24 nucleotides) of two genera...
International audienceThe plant-specific RNA polymerases Pol IV and Pol V are essential to RNA-direc...
Summary: Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are ...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
Gene evolution is one of the most significant contributors to the extensive number and diversity of ...
Thesis (Ph. D.)--University of Washington, 2006.This thesis explores two aspects of the evolution of...
Twenty-four-nucleotide small interfering (si)RNAs are central players in RNA-directed DNA methylatio...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Background DNA-dependent RNA polymerase IV and V (Pol IV and V) are multi-subunit en...
The plant-specific DNA-dependent RNA polymerase V (Pol V) evolved from Pol II to function in an RNA-...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
The RNA-directed DNA methylation pathway (RdDM) can be divided into three phases: (i) small interfer...
In plants, heterochromatin is maintained by a small RNA-based gene silencing mechanism known as RNA-...
ABSTRACT In Arabidopsis, pericentromeric repeats, retroelements, and silenced rRNA genes are assembl...
SummaryMultisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol ...
Multicellular eukaryotes produce small RNA molecules (approximately 21–24 nucleotides) of two genera...
International audienceThe plant-specific RNA polymerases Pol IV and Pol V are essential to RNA-direc...
Summary: Unlike nuclear multisubunit RNA polymerases I, II, and III, whose subunit compositions are ...