PubMed HealthSearch

Biomedical subjects

M Lanneau

Publications and source records attributed to M Lanneau.

8 recordsLinked to original sources

Analysis of the dsRNAs of apple chlorotic leaf spot virus.

Double-stranded RNAs were isolated from plants infected with five different isolates of apple chlorotic leaf spot virus (ACLSV). Analysis by PAGE and by Northern blot hybridization showed that six major species of viral dsRNA of approximately 7.5, 6.4, 5.4, 2.2, 1.1 and 1.0 kbp can be detected in infected plants, irrespective of the ACLSV isolate used. In addition to the dsRNA of 7.5 kbp corresponding to the full-length genome, the size and position on the genome of the 2.2 and 1.1 kbp species indicate that these are very probably double-stranded forms of subgenomic RNAs allowing the expression of the internal open reading frames coding respectively for the ACLSV 50K and coat proteins. The subgenomic messenger for the coat protein was indeed detected in total RNA preparations from infected plants. Surprisingly, the two most abundant dsRNA species, of 6.4 and 5.4 kbp, were found to be 5'-coterminal with the genomic RNA. A model for the expression of the genome of ACLSV and for the production of the molecules 5'-coterminal with the genomic RNA is presented.

Base Sequence

Nucleotide sequence and genomic organization of apple chlorotic leaf spot closterovirus.

The nucleotide sequence of Apple chlorotic leaf spot closterovirus (ACLSV) genomic RNA has been determined from cDNA clones. It is 7555 nucleotides in length excluding the 3' terminal poly(A) tail and contains three putative open reading frames capable of encoding proteins of 216.5, 50, and 28 kDa. ACLSV RNA has untranslated regions of 151 and 190 nucleotides at its 5' and 3' termini, respectively. The 216.5-kDa ORF encodes a protein which contains the conserved "signature" sequences and has significant homology with the proteins suspected to be involved in viral RNA replication of members of the "Sindbis-like" supergroup of viruses. On the basis of distant homologies with viral movement proteins (M proteins), the 50-kDa ORF is suspected to encode a protein responsible for virus cell-to-cell spread. The 28-kDa ORF contains, in frame, a smaller 21.5-kDa ORF encoding the coat protein of ACLSV. These results show that ACLSV and probably at least the subgroup A of closteroviruses should be regarded as members of the "Sindbis-like" supergroup of RNA viruses.

Amino Acid Sequence