All eukaryotes possess three DNA-dependent RNA polymerases, Pols I–III, while land plants possess two additional polymerases, Pol IV and Pol V. Derived through duplication of Pol II subunits, Pol IV produces 24-nt short interfering RNAs that interact with Pol V transcripts to target de novo DNA methylation and silence transcription of transposons. Members of the grass family encode additional duplicated subunits of Pol IV and V, raising questions regarding the function of each paralog. In this study, we identify a null allele of the putative Pol IV second subunit, NRPD2, and demonstrate that NRPD2 is the sole subunit functioning with NRPD1 in small RNA production and CHH methylation in leaves. Homozygous nrpd2 mutants have neither gametophy...
In addition to RNA polymerases I, II and III, the essential RNA polymerases present in all eukaryote...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
Abstract RNA polymerase IV and V are principal players in the RdDM pathway, where their current stud...
SummaryMultisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol ...
Multisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol II that...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Twenty-four-nucleotide small interfering (si)RNAs are central players in RNA-directed DNA methylatio...
Plants have acquired and maintained an expanded suite of DNA-dependent RNA polymerases (RNAPs) compa...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
In plants, RNA-directed DNA methylation (RdDM) is a silencing mechanism relying on the production of...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
SummaryAll eukaryotes have three nuclear DNA-dependent RNA polymerases, namely, Pol I, II, and III. ...
In plants, RNA-directed DNA Methylation (RdDM) is a mechanism of silencing that relies on the produc...
Paramutation describes an interaction between specific alleles which results in heritable epigenetic...
RNA–directed DNA methylation (RdDM) is an epigenetic control mechanism driven by small interfering R...
In addition to RNA polymerases I, II and III, the essential RNA polymerases present in all eukaryote...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
Abstract RNA polymerase IV and V are principal players in the RdDM pathway, where their current stud...
SummaryMultisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol ...
Multisubunit RNA polymerases IV and V (Pol IV and Pol V) evolved as specialized forms of Pol II that...
Gene duplication is an important driver for the evolution of new genes and protein functions. Duplic...
Twenty-four-nucleotide small interfering (si)RNAs are central players in RNA-directed DNA methylatio...
Plants have acquired and maintained an expanded suite of DNA-dependent RNA polymerases (RNAPs) compa...
Small RNA-mediated chromatin modification is a conserved feature of eukaryotes. In flowering plants,...
In plants, RNA-directed DNA methylation (RdDM) is a silencing mechanism relying on the production of...
Among eukaryotes, plants have the distinction of encoding multisubunit RNA polymerases used exclusiv...
SummaryAll eukaryotes have three nuclear DNA-dependent RNA polymerases, namely, Pol I, II, and III. ...
In plants, RNA-directed DNA Methylation (RdDM) is a mechanism of silencing that relies on the produc...
Paramutation describes an interaction between specific alleles which results in heritable epigenetic...
RNA–directed DNA methylation (RdDM) is an epigenetic control mechanism driven by small interfering R...
In addition to RNA polymerases I, II and III, the essential RNA polymerases present in all eukaryote...
RNA Polymerases IV and V: Pol IV and Pol V) are plant-specific enzyme complexes with subunit homolog...
Abstract RNA polymerase IV and V are principal players in the RdDM pathway, where their current stud...