[Nepovirus transmission by longidorid nematodes].
Gérard Demangeat
Abstract
Gérard Demangeat
Abstract
Transmission of plant viruses in nature often involves vectors which are usually plant pests. A class of soil borne invertebrates acts in this way. Ectoparasitic nematodes belonging to the Longidoridae family are responsible for the transmission of viruses from the Nepovirus genus using a semipersistant, non circulative mechanism. This passive transmission occurs during the feeding process of the nematodes on actively growing roots. However, only a few longidorid nematodes are able to acquire and subsequently transmit 12 of the 32 known Nepovirus. This singularity reflects a highly specific and strong association between the virus and the vector likely via a putative receptor on the cuticular lining of the oesophageal tract. Using a reverse genetics approach, investigations on the Grapevine fanleaf virus/Xiphinema index virus-vector association showed that the transmission specificity is solely determined by the coat protein.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Transmission of plant viruses in nature often involves vectors which are usually plant pests. A class of soil borne invertebrates acts in this way. Ectoparasitic nematodes belonging to the Longidoridae family are responsible for the transmission of viruses from the Nepovirus genus using a semipersistant, non circulative mechanism. This passive transmission occurs during the feeding process of the nematodes on actively growing roots. However, only a few longidorid nematodes are able to acquire and subsequently transmit 12 of the 32 known Nepovirus. This singularity reflects a highly specific and strong association between the virus and the vector likely via a putative receptor on the cuticular lining of the oesophageal tract. Using a reverse genetics approach, investigations on the Grapevine fanleaf virus/Xiphinema index virus-vector association showed that the transmission specificity is solely determined by the coat protein.
Key concepts: Nepovirus, Biology, Transmission (telecommunications), Virology, Plant virus, Vector (molecular biology), Xiphinema, Virus