The Physiological Impact of GFLV Virus Infection on Grapevine Water Status: First Observations

Author:

Jež-Krebelj Anastazija,Rupnik-Cigoj Maja,Stele Marija,Chersicola Marko,Pompe-Novak Maruša,Sivilotti PaoloORCID

Abstract

In a vineyard, grapevines are simultaneously exposed to combinations of several abiotic (drought, extreme temperatures, salinity) and biotic stresses (phytoplasmas, viruses, bacteria). With climate change, the incidences of drought in vine growing regions are increased and the host range of pathogens with increased chances of virulent strain development has expanded. Therefore, we studied the impact of the combination of abiotic (drought) and biotic (Grapevine fanleaf virus (GFLV) infection) stress on physiological and molecular responses on the grapevine of cv. Schioppettino by studying the influence of drought and GFLV infection on plant water status of grapevines, on grapevine xylem vessel occlusion, and on expression patterns of 9-cis-epoxycarotenoid dioxygenase 1 (NCED1), 9-cis-epoxycarotenoid dioxygenase 2 (NCED2), WRKY encoding transcription factor (WRKY54) and RD22-like protein (RD22) genes in grapevines. A complex response of grapevine to the combination of drought and GFLV infection was shown, including priming in the case of grapevine water status, net effect in the case of area of occluded vessels in xylem, and different types of interaction of both stresses in the case of expression of four abscisic acid-related genes. Our results showed that mild (but not severe) water stress can be better sustained by GFLV infection rather than by healthy vines. GFLV proved to improve the resilience of the plants to water stress, which is an important outcome to cope with the challenges of global warming.

Funder

Slovenian Research Agency

Slovenian Technology Agency

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference73 articles.

1. Directory of Infectious Diseases of Grapevines and Viroses and Virus-Like Diseases of the Grapevine: Bibliographic Report 1998–2004;Martelli,2006

2. Virus and Virus-Like Diseases of Grapevines. Colour Atlas of Symptoms;Bovey,1980

3. The Nucleotide Sequence of Satellite RNA in Grapevine Fanleaf Virus, Strain F13

4. Graft-Transmissible Diseases of Grapevines: Handbook for Detection and Diagnosis;Martelli,1993

5. Grapevine Fanleaf Virus: Still a Major Threat to the Grapevine Industry;Andret-Link;J. Plant Pathol.,2004

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