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Decreased Susceptibility to Viral Disease of [beta]-1,3-Glucanase-Deficient Plants Generated by Antisense Transformation

Overview
Journal Plant Cell
Specialties Biology
Cell Biology
Date 1996 Jun 1
PMID 12239410
Citations 58
Authors
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Abstract

Antifungal class I [beta]-1,3-glucanases are believed to be part of the constitutive and induced defenses of plants against fungal infection. Unexpectedly, mutants deficient in these enzymes generated by antisense transformation showed markedly reduced lesion size, lesion number, and virus yield in the local-lesion response of Havana 425 tobacco to tobacco mosaic virus (TMV) and of Nicotiana sylvestris to tobacco necrosis virus. These mutants also showed decreased severity of mosaic disease symptoms, delayed spread of symptoms, and reduced yield of virus in the susceptible response of N. sylvestris to TMV. The symptoms of disease in the responses of both plant species were positively correlated with [beta]-1,3-glucanase content in a series of independent transformants. Taken together, these results provide direct evidence that [beta]-1,3-glucanases function in viral pathogenesis. Callose, a substrate for [beta]-1,3-glucanase, acts as a physical barrier to the spread of virus. Callose deposition in and surrounding TMV-induced lesions was increased in the [beta]-1,3-glucanase-deficient, local-lesion Havana 425 host, suggesting as a working hypothesis that decreased susceptibility to virus resulted from increased deposition of callose in response to infection. Our results suggest novel means, based on antisense transformation with host genes, for protecting plants against viral infection. These observations also raise the intriguing possibility that viruses can use a defense response of the host against fungal infection[mdash]production of [beta]-1,3-glucanases[mdash]to promote their own replication and spread.

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References
1.
Edelbaum O, Sher N, Rubinstein M, Novick D, Tal N, Moyer M . Two antiviral proteins, gp35 and gp22, correspond to beta-1,3-glucanase and an isoform of PR-5. Plant Mol Biol. 1991; 17(1):171-3. DOI: 10.1007/BF00036825. View

2.
Beffa R, Neuhaus J, Meins Jr F . Physiological compensation in antisense transformants: specific induction of an "ersatz" glucan endo-1,3-beta-glucosidase in plants infected with necrotizing viruses. Proc Natl Acad Sci U S A. 1993; 90(19):8792-6. PMC: 47446. DOI: 10.1073/pnas.90.19.8792. View

3.
Vogeli-Lange R, Frundt C, Hart C, Nagy F, Meins Jr F . Developmental, hormonal, and pathogenesis-related regulation of the tobacco class I beta-1,3-glucanase B promoter. Plant Mol Biol. 1994; 25(2):299-311. DOI: 10.1007/BF00023245. View

4.
Ding B, Haudenshield J, Hull R, Wolf S, Beachy R, Lucas W . Secondary plasmodesmata are specific sites of localization of the tobacco mosaic virus movement protein in transgenic tobacco plants. Plant Cell. 1992; 4(8):915-28. PMC: 160184. DOI: 10.1105/tpc.4.8.915. View

5.
Kauffmann S, Legrand M, Geoffroy P, Fritig B . Biological function of ;pathogenesis-related' proteins: four PR proteins of tobacco have 1,3-beta-glucanase activity. EMBO J. 1987; 6(11):3209-12. PMC: 553771. DOI: 10.1002/j.1460-2075.1987.tb02637.x. View