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1.
Virology ; 354(1): 154-66, 2006 Oct 10.
Article in English | MEDLINE | ID: mdl-16872655

ABSTRACT

Trichoplusia ni single nucleopolyhedrovirus (TnSNPV), a 134,394-bp double-stranded DNA group II Nucleopolyhedrovirus, is pathogenic to the lepidopteran T. ni. TnSNPV transcription is temporally regulated and divided into three promoter sequence-dependent classes (early, late and very late genes). A viral oligonucleotide DNA microarray containing all potential (144) viral genes of TnSNPV was designed to investigate global viral gene expression during cell infection. Total BT1-Tn-5B1-4 cellular mRNAs extracted between 0 and 72 h posttransfection with TnSNPV genomic DNA were hybridized to the microarray. Initial average expression of early genes was detected between 12 and 24 h posttransfection while late genes were mainly detected between 24 and 72 h posttransfection. The microarray expression profiling data verified many computer predicted promoter assignments. K-means clustering was used to sort the 144 genes based on their temporal expression pattern similarities. This clustering resulted in the confirmation and temporal class assignment of previously unidentified genes and promoters.


Subject(s)
Gene Expression Profiling , Gene Expression , Nucleopolyhedroviruses/genetics , Animals , Cell Line , Genes, Viral , Moths , Nucleic Acid Hybridization , Nucleopolyhedroviruses/physiology , Oligonucleotide Array Sequence Analysis , RNA, Messenger/analysis , RNA, Messenger/genetics , RNA, Viral/analysis , RNA, Viral/genetics , Time Factors , Transfection
2.
Oecologia ; 143(3): 396-401, 2005 Apr.
Article in English | MEDLINE | ID: mdl-15723235

ABSTRACT

It is by now well established that plants use various strategies to defend themselves against herbivores. Besides conventional weapons such as spines and stinging hairs and sophisticated chemical defenses, plants can also involve the enemies of the herbivores in their defense. It has been suggested that plants could even use entomopathogens as part of their defense strategies. In this paper, we show that Brassica oleraceae plants that are attacked by Myzus persicae aphids infected with an entomopathogenic parvovirus (M. persicae densovirus) transport the virus through the phloem locally and systematically. Moreover, healthy aphids that fed on the same leaf, but separated from infected aphids were infected via the plant. Hence, this is proof of the principle that plants can be vectors of an insect virus and can possibly use this virus as a defense against herbivores.


Subject(s)
Aphids/virology , Brassica/physiology , Brassica/virology , Densovirinae , Animals , Aphids/ultrastructure , Biological Transport/physiology , DNA Primers , Enzyme-Linked Immunosorbent Assay , Microscopy, Electron, Transmission , Virion/genetics , Virion/physiology
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