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Plant Virus Serology

1967
Publisher Summary The accelerated development of serological studies on plant viruses during the past ten years can be followed easily by simply counting the number of viruses that have proved amenable to serological testing. This steady increase partly reflects the widening applicability and improvements of virus purification methods and seems to ...
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A New Crystalline Plant Virus

Nature, 1946
AMONG several viruses attacking cruciferous plants is one which affects turnips and, so far as we know, has not been previously described. The main symptom produced on the turnip is a bright yellow and green mosaic mottling, and the name we suggest for the virus is 'turnip yellow mosaic virus'.
R, MARKHAM, K M, SMITH
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Plant Virus Inclusion Bodies

1977
Publisher Summary Inclusion bodies can be simply defined as intracellular structures produced de novo as a result of viral infections. They may contain virus particles, virus-related materials, or ordinary cell constituents in a normal or degenerating condition, either single or, more often, in various proportions.
G P, Martelli, M, Russo
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Plant virus movement proteins

Cell, 1992
C. Michael Deem,” Moshe Lapidot,t and Roger N. Beachyt *Department of Plant Pathology University of Georgia Athens, Georgia 30602 tDivision of Plant Biology The Scripps Research Institute La Jolla, California 92037 The ease with which plant viruses move throughout their hosts appears quite remarkable, considering that viral progeny must cross the plant
C M, Deom, M, Lapidot, R N, Beachy
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Genetics of Plant Virus Resistance

Annual Review of Phytopathology, 2005
Genetic resistance to plant viruses has been used for at least 80 years to control agricultural losses to viral diseases. To date, hundreds of naturally occurring genes for resistance to plant viruses have been reported from studies of both monocot and dicot crops, their wild relatives, and the plant model, Arabidopsis.
Byoung-Cheorl, Kang   +2 more
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Strategies for virus resistance in plants

Trends in Genetics, 1989
Virus infections of plants are controlled and suppressed naturally by the action of resistance genes encoded within the plant, by interactions between viruses or even as a result of the activity of functions encoded by or associated with the virus itself.
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Plant Virus for Electron Microscopy

Science, 1948
Schiff '8 reagent prepared with thionyl chloride is 1.24; that of Schiff 's reagent prepared in the usual manner is 1.38. This slight difference in acidity does not appear to be significant. Schiff 's reagent prepared with thionyl chloride has been successfully used as a nuclear stain on tissue sections of human thymus gland, kidney, liver, and spleen,
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VALIDATION OF PLANT VIRUS DETECTION

Acta Horticulturae, 2011
Validation of test methods is required for laboratories seeking ISO 17025 accreditation. Recently developed manuals help choosing relevant performance characteristics to be studied for qualitative tests common in plant virus detection. For routine testing in certification schemes additional information on the plant material is important to determine ...
van Schadewijk, A.R.   +3 more
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Assembly of a spherical plant virus

Philosophical Transactions of the Royal Society of London. B, Biological Sciences, 1976
Abstract The conditions previously reported as necessary for the reassembly of spherical viruses have been distinctly unphysiological and such reassembly cannot be related directly to the in vivo reaction. Mild conditions for the in vitro reassembly of cowpea chlorotic mottle virus (CCMV) from its isolated components have now been ...
K W, Adolph, P J, Butler
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Plant RNA virus evolution

Current Opinion in Microbiology, 2003
RNA viruses are the most common viruses of plants, and the evolution of these viruses has been studied both experimentally and phylogenetically. The basic molecular mechanisms for plant virus evolution are similar to those of other viruses, with some notable exceptions. Recent advances include new insights into the origins of plant viruses, analyses of
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