Synthesis of complementary RNA by RNA-dependent RNA polymerases in plant extracts is independent of an RNA primer


Autoria(s): Wang, Lei; Smith, Neil A.; Zhang, Lan; Dennis, Elisabeth S.; Waterhouse, Peter M.; Unrau, Peter J.; Wang, Ming-Bo
Data(s)

2008

Resumo

RNA-dependent RNA polymerase (RDR) activities were readily detected in extracts from cauliflower and broccoli florets, Arabidopsis thaliana (L.) Heynh callus tissue and broccoli nuclei. The synthesis of complementary RNA (cRNA) was independent of a RNA primer, whether or not the primer contained a 3′ terminal 2′-O-methyl group or was phosphorylated at the 5′ terminus. cRNA synthesis in plant extracts was not affected by loss-of-function mutations in the DICER-LIKE (DCL) proteins DCL2, DCL3, and DCL4, indicating that RDRs function independently of these DCL proteins. A loss-of-function mutation in RDR1, RDR2 or RDR6 did not significantly reduce the amount of cRNA synthesis. This indicates that these RDRs did not account for the bulk RDR activities in plant extracts, and suggest that either the individual RDRs each contribute a fraction of polymerase activity or another RDR(s) is predominant in the plant extract. © CSIRO 2008.

Identificador

http://eprints.qut.edu.au/65916/

Publicador

C S I R O Publishing

Relação

DOI:10.1071/FP08118

Wang, Lei, Smith, Neil A., Zhang, Lan, Dennis, Elisabeth S., Waterhouse, Peter M., Unrau, Peter J., & Wang, Ming-Bo (2008) Synthesis of complementary RNA by RNA-dependent RNA polymerases in plant extracts is independent of an RNA primer. Functional Plant Biology, 35(11), pp. 1091-1099.

Direitos

Copyright 2008 C S I R O Publishing

Fonte

School of Earth, Environmental & Biological Sciences; Science & Engineering Faculty

Palavras-Chave #060400 GENETICS #060700 PLANT BIOLOGY #Dicer-like protein #dsRNA #RNA silencing #RNA-dependent RNA polymerase #Hydrocarbons #Microstrip devices #Plants (botany) #Polymers #Probability density function #Proteins #RNA #Sugar (sucrose) #Arabidopsis thaliana #Broccoli florets #Callus tissues #In plants #Methyl groups #Plant extracts #Polymerase activities #RNA polymerases #Rna primers #Synthesis of #Nucleic acids #enzyme activity #herb #plant extract #Arabidopsis #Brassica oleracea var. botrytis #Brassica oleracea var. italica
Tipo

Journal Article