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1.
J Virol ; 79(5): 3028-37, 2005 Mar.
Article in English | MEDLINE | ID: mdl-15709023

ABSTRACT

Citrus sudden death (CSD) is a new disease that has killed approximately 1 million orange trees in Brazil. Here we report the identification of a new virus associated with the disease. RNAs isolated from CSD-affected and nonaffected trees were used to construct cDNA libraries. A set of viral sequences present exclusively in libraries of CSD-affected trees was used to obtain the complete genome sequence of the new virus. Phylogenetic analysis revealed that this virus is a new member of the genus Marafivirus. Antibodies raised against the putative viral coat proteins allowed detection of viral antigens of expected sizes in affected plants. Electron microscopy of purified virus confirmed the presence of typical isometric Marafivirus particles. The screening of 773 affected and nonaffected citrus trees for the presence of the virus showed a 99.7% correlation between disease symptoms and the presence of the virus. We also detected the virus in aphids feeding on affected trees. These results suggest that this virus is likely to be the causative agent of CSD. The virus was named Citrus sudden death-associated virus.


Subject(s)
Citrus/virology , Tymoviridae/genetics , Tymoviridae/isolation & purification , Amino Acid Sequence , Animals , Aphids/virology , Base Sequence , Brazil , Capsid Proteins/genetics , DNA, Viral/genetics , Genome, Viral , Microscopy, Electron , Molecular Sequence Data , Phylogeny , Plant Diseases/virology , Tymoviridae/classification , Tymoviridae/pathogenicity
2.
Mol Plant Microbe Interact ; 17(8): 827-36, 2004 Aug.
Article in English | MEDLINE | ID: mdl-15305603

ABSTRACT

The genome sequence of Leifsonia xyli subsp. xyli, which causes ratoon stunting disease and affects sugarcane worldwide, was determined. The single circular chromosome of Leifsonia xyli subsp. xyli CTCB07 was 2.6 Mb in length with a GC content of 68% and 2,044 predicted open reading frames. The analysis also revealed 307 predicted pseudogenes, which is more than any bacterial plant pathogen sequenced to date. Many of these pseudogenes, if functional, would likely be involved in the degradation of plant heteropolysaccharides, uptake of free sugars, and synthesis of amino acids. Although L. xyli subsp. xyli has only been identified colonizing the xylem vessels of sugarcane, the numbers of predicted regulatory genes and sugar transporters are similar to those in free-living organisms. Some of the predicted pathogenicity genes appear to have been acquired by lateral transfer and include genes for cellulase, pectinase, wilt-inducing protein, lysozyme, and desaturase. The presence of the latter may contribute to stunting, since it is likely involved in the synthesis of abscisic acid, a hormone that arrests growth. Our findings are consistent with the nutritionally fastidious behavior exhibited by L. xyli subsp. xyli and suggest an ongoing adaptation to the restricted ecological niche it inhabits.


Subject(s)
Actinomycetales/genetics , Genome, Bacterial , Actinomycetales/classification , Base Composition , Genes, Bacterial , Molecular Sequence Data , Pseudogenes , Saccharum/microbiology
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