Literature DB >> 11032365

Adaptation of Spodoptera exigua (Lepidoptera: Noctuidae) to barley trypsin inhibitor BTI-CMe expressed in transgenic tobacco.

P Lara1, F Ortego, E Gonzalez-Hidalgo, P Castañera, P Carbonero, I Diaz.   

Abstract

Nicotiana tabacum plants were transformed with the cDNA of barley trypsin inhibitor BTI-CMe under the control of the 35S CaMV promoter. Although the transgene was expressed and the protein was active in the homozygous lines selected, growth of Spodoptera exigua (Lepidoptera: Noctuidae) larvae reared on transgenic plants was not affected. The protease activity in larval midgut extracts after 2 days feeding on transformed tobacco leaves from the highest expressing plant showed a reduction of 25% in the trypsin-like activity compared to that from insects fed on non-transformed controls. The susceptibility of digestive serine-proteases to inhibition by BTI-CMe was confirmed by activity staining gels. This decrease was compensated with a significant induction of leucine aminopeptidase-like and carboxipeptidase A-like activities, while chymotrypsin-, elastase-, and carboxipeptidase B-like proteases were not affected.

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Year:  2000        PMID: 11032365     DOI: 10.1023/a:1008905631440

Source DB:  PubMed          Journal:  Transgenic Res        ISSN: 0962-8819            Impact factor:   2.788


  20 in total

1.  The adaptation of insects to plant protease inhibitors.

Authors:  C Bolter; M A. Jongsma
Journal:  J Insect Physiol       Date:  1997-10       Impact factor: 2.354

2.  The promoter of barley trypsin-inhibitor BTI-CMe, discriminates between wheat and barley endosperm protoplasts in transient expression assays.

Authors:  I Díaz; J Royo; P Carbonero
Journal:  Plant Cell Rep       Date:  1993-10       Impact factor: 4.570

3.  Differentially regulated inhibitor-sensitive and insensitive protease genes from the phytophagous insect pest, Helicoverpa armigera, are members of complex multigene families.

Authors:  D P Bown; H S Wilkinson; J A Gatehouse
Journal:  Insect Biochem Mol Biol       Date:  1997-07       Impact factor: 4.714

4.  Identification of stable plant cystatin/nematode proteinase complexes using mildly denaturing gelatin/polyacrylamide gel electrophoresis.

Authors:  D Michaud; L Cantin; M Bonadé-Bottino; L Jouanin; T C Vrain
Journal:  Electrophoresis       Date:  1996-08       Impact factor: 3.535

5.  Purification and properties of a trypsin inhibitor from barley.

Authors:  J Mikola; E M Suolinna
Journal:  Eur J Biochem       Date:  1969-07

6.  Cleavage of structural proteins during the assembly of the head of bacteriophage T4.

Authors:  U K Laemmli
Journal:  Nature       Date:  1970-08-15       Impact factor: 49.962

7.  Molecular cloning of complementary DNA encoding the lignin-forming peroxidase from tobacco: Molecular analysis and tissue-specific expression.

Authors:  L M Lagrimini; W Burkhart; M Moyer; S Rothstein
Journal:  Proc Natl Acad Sci U S A       Date:  1987-11       Impact factor: 11.205

8.  The gene for trypsin inhibitor CMe is regulated in trans by the lys 3a locus in the endosperm of barley (Hordeum vulgare L.).

Authors:  P Rodriguez-Palenzuela; J Royo; L Gómez; R Sánchez-Monge; G Salcedo; J L Molina-Cano; F Garcia-Olmedo; P Carbonero
Journal:  Mol Gen Genet       Date:  1989-11

9.  Adaptation of Spodoptera exigua larvae to plant proteinase inhibitors by induction of gut proteinase activity insensitive to inhibition.

Authors:  M A Jongsma; P L Bakker; J Peters; D Bosch; W J Stiekema
Journal:  Proc Natl Acad Sci U S A       Date:  1995-08-15       Impact factor: 11.205

10.  Opposite effects on spodoptera littoralis larvae of high expression level of a trypsin proteinase inhibitor in transgenic plants

Authors: 
Journal:  Plant Physiol       Date:  1998-11       Impact factor: 8.340

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  19 in total

1.  Serine peptidase inhibitor Kazal type 1 (SPINK1) as novel downstream effector of the cadherin-17/β-catenin axis in hepatocellular carcinoma.

Authors:  Felix H Shek; Ruibang Luo; Brian Y H Lam; Wing Kin Sung; Tak-Wah Lam; John M Luk; Ming Sum Leung; Kin Tak Chan; Hector K Wang; Chung Man Chan; Ronnie T Poon; Nikki P Lee
Journal:  Cell Oncol (Dordr)       Date:  2017-06-19       Impact factor: 6.730

2.  Molecular cloning and expression of an alpha-amylase inhibitor from rye with potential for controlling insect pests.

Authors:  Simoni C Dias; Octávio L Franco; Cláudio P Magalhães; Osmundo B de Oliveira-Neto; Raúl A Laumann; Edson L Z Figueira; Francislete R Melo; Maria F Grossi-De-Sá
Journal:  Protein J       Date:  2005-02       Impact factor: 2.371

3.  Expression of a barley cystatin gene in maize enhances resistance against phytophagous mites by altering their cysteine-proteases.

Authors:  Laura Carrillo; Manuel Martinez; Koreen Ramessar; Inés Cambra; Pedro Castañera; Felix Ortego; Isabel Díaz
Journal:  Plant Cell Rep       Date:  2010-11-17       Impact factor: 4.570

4.  Effects of potato plants expressing a barley cystatin on the predatory bug Podisus maculiventris via herbivorous prey feeding on the plant.

Authors:  Fernando Alvarez-Alfageme; Manuel Martínez; Sara Pascual-Ruiz; Pedro Castañera; Isabel Diaz; Félix Ortego
Journal:  Transgenic Res       Date:  2006-10-27       Impact factor: 2.788

5.  Expression of a nematode symbiotic bacterium-derived protease inhibitor protein in tobacco enhanced tolerance against Myzus persicae.

Authors:  Heqing Zhang; Jianjun Mao; Fengjiao Liu; Fanrong Zeng
Journal:  Plant Cell Rep       Date:  2012-07-26       Impact factor: 4.570

6.  Transgenic expression of trypsin inhibitor CMe from barley in indica and japonica rice, confers resistance to the rice weevil Sitophilus oryzae.

Authors:  Julio Alfonso-Rubí; Félix Ortego; Pedro Castañera; Pilar Carbonero; Isabel Díaz
Journal:  Transgenic Res       Date:  2003-02       Impact factor: 2.788

7.  Potential use of a serpin from Arabidopsis for pest control.

Authors:  Fernando Alvarez-Alfageme; Jafar Maharramov; Laura Carrillo; Steven Vandenabeele; Dominique Vercammen; Frank Van Breusegem; Guy Smagghe
Journal:  PLoS One       Date:  2011-05-31       Impact factor: 3.240

8.  Pest protection conferred by a Beta vulgaris serine proteinase inhibitor gene.

Authors:  Ann C Smigocki; Snezana Ivic-Haymes; Haiyan Li; Jelena Savić
Journal:  PLoS One       Date:  2013-02-26       Impact factor: 3.240

9.  Gene pyramiding of peptidase inhibitors enhances plant resistance to the spider mite Tetranychus urticae.

Authors:  Maria Estrella Santamaria; Inés Cambra; Manuel Martinez; Clara Pozancos; Pablo González-Melendi; Vojislava Grbic; Pedro Castañera; Felix Ortego; Isabel Diaz
Journal:  PLoS One       Date:  2012-08-10       Impact factor: 3.240

10.  Caterpillar saliva interferes with induced Arabidopsis thaliana defence responses via the systemic acquired resistance pathway.

Authors:  Marie-Hélène Weech; Mélanie Chapleau; Li Pan; Christine Ide; Jacqueline C Bede
Journal:  J Exp Bot       Date:  2008-05-17       Impact factor: 6.992

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