Ambient conditions of elevated temperature and CO2 levels are detrimental to the probabilities of transmission by insects of a Potato virus Y isolate and to its simulated prevalence in the environment
Author:
Funder
Spanish Ministry of Economy and Competitiveness
Publisher
Elsevier BV
Subject
Virology
Reference55 articles.
1. Effects of elevated CO2 and temperature on pathogenicity determinants and virulence of Potato virus X/potyvirus-associated synergism;Aguilar;Mol. Plant-Microbe Interact.,2015
2. Association of potyvirus helper component protein with virions and the cuticle lining the maxillary food canal and foregut of an aphid vector;Ammar;Phytopathology,1994
3. Amino acid substitutions in the coat protein result in loss of insect transmissibility of a plant virus;Atreya;Proc. Natl. Acad. Sci. USA,1991
4. Site-directed mutations in the potyvirus HC-PRO gene affect helper component activity, virus accumulation, and symptom expression in infected tobacco plants;Atreya;Virology,1992
5. Determination of Cucumber mosaic virus titer in muskmelon by enzyme-linked immunosorbent assay and correlation with aphid transmission;Banik;Plant Dis.,1990
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