Multicellular eukaryotes produce small RNA molecules (approximately 21-24 nucleotides) of two general types, microRNA (miRNA) and short interfering RNA (siRNA). They collectively function as sequence-specific guides to silence or regulate genes, transposons, and viruses and to modify chromatin and genome structure. Formation or activity of small RNAs requires factors belonging to gene families that encode DICER (or DICER-LIKE [DCL]) and ARGONAUTE proteins and, in the case of some siRNAs, RNA-dependent RNA polymerase (RDR) proteins. Unlike many animals, plants encode multiple DCL and RDR proteins. Using a series of insertion mutants of Arabidopsis thaliana, unique functions for three DCL proteins in miRNA (DCL1), endogenous siRNA (DCL3), and...
Dicer proteins are central to the different mechanisms involving RNA interference. Plants have evolv...
Small regulatory RNAs guide gene silencing at the DNA or RNA level through repression of complementa...
Small RNAs from plants are known to be highly complex and abundant, with this complexity proportiona...
Multicellular eukaryotes produce small RNA molecules (approximately 21-24 nucleotides) of two genera...
Multicellular eukaryotes produce small RNA molecules (approximately 21-24 nucleotides) of two genera...
Multicellular eukaryotes produce small RNA molecules (approximately 21–24 nucleotides) of two genera...
Eukaryotes contain a diversified set of small RNA-guided pathways that control genes, repeated seque...
<div><p>Small RNAs play essential regulatory roles in genome stability, development, and responses t...
Small RNAs play essential regulatory roles in genome stability, development, and responses to biotic...
Eukaryotes contain a diversified set of small RNA-guided pathways that control genes, repeated seque...
In Arabidopsis thaliana, four different dicer-like (DCL) proteins have distinct but partially overla...
One recently identified mechanism that regulates mRNA abundance is RNA silencing, and pioneering wor...
Plant genomes encode various small RNAs that function in distinct, yet overlapping, genetic and epig...
AbstractFormation of microRNA (miRNA) requires an RNaseIII domain-containing protein, termed DICER-1...
SummaryArabidopsis encodes four DICER-like (DCL) proteins [1]. DCL1 produces miRNAs [2–4], DCL2 prod...
Dicer proteins are central to the different mechanisms involving RNA interference. Plants have evolv...
Small regulatory RNAs guide gene silencing at the DNA or RNA level through repression of complementa...
Small RNAs from plants are known to be highly complex and abundant, with this complexity proportiona...
Multicellular eukaryotes produce small RNA molecules (approximately 21-24 nucleotides) of two genera...
Multicellular eukaryotes produce small RNA molecules (approximately 21-24 nucleotides) of two genera...
Multicellular eukaryotes produce small RNA molecules (approximately 21–24 nucleotides) of two genera...
Eukaryotes contain a diversified set of small RNA-guided pathways that control genes, repeated seque...
<div><p>Small RNAs play essential regulatory roles in genome stability, development, and responses t...
Small RNAs play essential regulatory roles in genome stability, development, and responses to biotic...
Eukaryotes contain a diversified set of small RNA-guided pathways that control genes, repeated seque...
In Arabidopsis thaliana, four different dicer-like (DCL) proteins have distinct but partially overla...
One recently identified mechanism that regulates mRNA abundance is RNA silencing, and pioneering wor...
Plant genomes encode various small RNAs that function in distinct, yet overlapping, genetic and epig...
AbstractFormation of microRNA (miRNA) requires an RNaseIII domain-containing protein, termed DICER-1...
SummaryArabidopsis encodes four DICER-like (DCL) proteins [1]. DCL1 produces miRNAs [2–4], DCL2 prod...
Dicer proteins are central to the different mechanisms involving RNA interference. Plants have evolv...
Small regulatory RNAs guide gene silencing at the DNA or RNA level through repression of complementa...
Small RNAs from plants are known to be highly complex and abundant, with this complexity proportiona...