Literature DB >> 1888892

High-level expression of a tobacco chitinase gene in Nicotiana sylvestris. Susceptibility of transgenic plants to Cercospora nicotianae infection.

J M Neuhaus1, P Ahl-Goy, U Hinz, S Flores, F Meins.   

Abstract

Endochitinases (E.C.3.2.14, chitinase) are believed to be important in the biochemical defense of plants against chitin-containing fungal pathogens. We introduced a gene for class I (basic) tobacco chitinase regulated by Cauliflower Mosaic Virus 35S-RNA expression signals into Nicotiana sylvestris. The gene was expressed to give mature, enzymatically active chitinase targeted to the intracellular compartment of leaves. Most transformants accumulated extremely high levels of chitinase-up to 120-fold that of non-transformed plants in comparable tissues. Unexpectedly, some transformants exhibited chitinase levels lower than in non-transformed plants suggesting that the transgene inhibited expression of the homologous host gene. Progeny tests indicate this effect is not permanent. High levels of chitinase in transformants did not substantially increase resistance to the chitin-containing fungus Cercospora nicotiana, which causes Frog Eye disease. Therefore class I chitinase does not appear to be the limiting factor in the defense reaction to this pathogen.

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Year:  1991        PMID: 1888892     DOI: 10.1007/bf00017924

Source DB:  PubMed          Journal:  Plant Mol Biol        ISSN: 0167-4412            Impact factor:   4.076


  26 in total

1.  Antifungal Hydrolases in Pea Tissue : II. Inhibition of Fungal Growth by Combinations of Chitinase and beta-1,3-Glucanase.

Authors:  F Mauch; B Mauch-Mani; T Boller
Journal:  Plant Physiol       Date:  1988-11       Impact factor: 8.340

2.  Vacuolar localization of ethylene-induced chitinase in bean leaves.

Authors:  T Boller; U Vögeli
Journal:  Plant Physiol       Date:  1984-02       Impact factor: 8.340

3.  Regulated genes in transgenic plants.

Authors:  P N Benfey; N H Chua
Journal:  Science       Date:  1989-04-14       Impact factor: 47.728

4.  Improved method for the isolation of RNA from plant tissues.

Authors:  J Logemann; J Schell; L Willmitzer
Journal:  Anal Biochem       Date:  1987-05-15       Impact factor: 3.365

5.  Rapid isolation of high molecular weight plant DNA.

Authors:  M G Murray; W F Thompson
Journal:  Nucleic Acids Res       Date:  1980-10-10       Impact factor: 16.971

6.  Hydrolytic enzymes in the central vacuole of plant cells.

Authors:  T Boller; H Kende
Journal:  Plant Physiol       Date:  1979-06       Impact factor: 8.340

7.  Regions of broad-host-range plasmid RK2 involved in replication and stable maintenance in nine species of gram-negative bacteria.

Authors:  T J Schmidhauser; D R Helinski
Journal:  J Bacteriol       Date:  1985-10       Impact factor: 3.490

8.  Basic peroxidases in isolated vacuoles of nicotiana tabacum L.

Authors:  P Schloß; C Walter; M Mäder
Journal:  Planta       Date:  1987-02       Impact factor: 4.116

9.  Introduction of a Chimeric Chalcone Synthase Gene into Petunia Results in Reversible Co-Suppression of Homologous Genes in trans.

Authors:  C. Napoli; C. Lemieux; R. Jorgensen
Journal:  Plant Cell       Date:  1990-04       Impact factor: 11.277

10.  Developmental and hormonal regulation of β-1,3-glucanase in tobacco.

Authors:  G Felix; F Meins
Journal:  Planta       Date:  1986-02       Impact factor: 4.116

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  44 in total

1.  Sense- and antisense-mediated gene silencing in tobacco is inhibited by the same viral suppressors and is associated with accumulation of small RNAs.

Authors:  F Di Serio; H Schob; A Iglesias; C Tarina; E Bouldoires; F Meins
Journal:  Proc Natl Acad Sci U S A       Date:  2001-05-15       Impact factor: 11.205

2.  Strategies for Control of Fungal Diseases with Transgenic Plants.

Authors:  BJC. Cornelissen; L. S. Melchers
Journal:  Plant Physiol       Date:  1993-03       Impact factor: 8.340

Review 3.  What's new in chitinase research?

Authors:  J Flach; P E Pilet; P Jollès
Journal:  Experientia       Date:  1992-08-15

4.  ArabidopsisChitinases: a Genomic Survey.

Authors:  Paul A Passarinho; Sacco C de Vries
Journal:  Arabidopsis Book       Date:  2002-09-30

5.  Altered expression of an ankyrin-repeat protein results in leaf abnormalities, necrotic lesions, and the elaboration of a systemic signal.

Authors:  Corina Wirdnam; Andrea Motoyama; Estelle Arn-Bouldoires; Sjoerd van Eeden; Alejandro Iglesias; Frederick Meins
Journal:  Plant Mol Biol       Date:  2005-03-24       Impact factor: 4.076

6.  The function of vacuolar beta-1,3-glucanase investigated by antisense transformation. Susceptibility of transgenic Nicotiana sylvestris plants to Cercospora nicotianae infection.

Authors:  J M Neuhaus; S Flores; D Keefe; P Ahl-Goy; F Meins
Journal:  Plant Mol Biol       Date:  1992-08       Impact factor: 4.076

7.  Effects of sugar beet chitinase IV on root-associated fungal community of transgenic silver birch in a field trial.

Authors:  Hanna-Leena Pasonen; Jinrong Lu; Anna-Maija Niskanen; Sanna-Kaisa Seppänen; Anna Rytkönen; Janne Raunio; Ari Pappinen; Risto Kasanen; Sari Timonen
Journal:  Planta       Date:  2009-08-21       Impact factor: 4.116

8.  Osmotin overexpression in potato delays development of disease symptoms.

Authors:  D Liu; K G Raghothama; P M Hasegawa; R A Bressan
Journal:  Proc Natl Acad Sci U S A       Date:  1994-03-01       Impact factor: 11.205

9.  The promoter of the potato chitinase C gene directs expression to epidermal cells.

Authors:  Gema Ancillo; Erika Hoegen; Erich Kombrink
Journal:  Planta       Date:  2003-05-06       Impact factor: 4.116

10.  Genome-wide identification, expression and chromosomal location of the genes encoding chitinolytic enzymes in Zea mays.

Authors:  Michal Shoresh; Gary E Harman
Journal:  Mol Genet Genomics       Date:  2008-06-17       Impact factor: 3.291

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