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Dive into the research topics where Ghislaine Tissot is active.

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Featured researches published by Ghislaine Tissot.


Plant Molecular Biology | 2004

Generation of fertile transplastomic soybean.

Nathalie Dufourmantel; Bernard Pelissier; Frederic Garcon; Gilles Peltier; Jean-Marc Ferullo; Ghislaine Tissot

We describe here the development of a plastid transformation method for soybean, a leguminous plant of major agronomic interest. Chloroplasts from embryogenic tissue of Glycine max have been successfully transformed by bombardment. The transforming DNA carries a spectinomycin resistance gene (aadA) under the control of tobacco plastid regulatory expression elements, flanked by two adjacent soybean plastome sequences allowing its targeted insertion between the trnV gene and the rps12/7 operon. All generated spectinomycin resistant plants were transplastomic and no remaining wild type plastome copies were detected. No spontaneous mutants were obtained. The transformation efficiency is similar to that of tobacco plastids. All transplastomic T0 plants were fertile and T1 progeny was uniformly spectinomycin resistant, showing the stability of the plastid transgene. This is the first report on the generation of fertile transplastomic soybean.


Plant Biotechnology Journal | 2008

Translocation of aprotinin, a therapeutic protease inhibitor, into the thylakoid lumen of genetically engineered tobacco chloroplasts

Ghislaine Tissot; Hélène Canard; Marie Nadai; Aris Martone; Johan Botterman; Manuel Dubald

Aprotinin, a bovine protease inhibitor of important therapeutic value, was expressed in tobacco plastid transformants. This disulphide bond-containing protein was targeted to the lumen of thylakoids using signal peptides derived from nuclear genes which encode lumenal proteins. Translocation was attempted via either the general secretion (Sec) or the twin-arginine translocation (Tat) pathway. In both cases, this strategy allowed the production of genuine aprotinin with its N-terminal arginine residue. The recombinant protease inhibitor was efficiently secreted within the lumen of thylakoids, accumulated in older leaves and was bound to trypsin, suggesting that the three disulphide bonds of aprotinin are correctly folded and paired in this chloroplast compartment. Mass spectrometric analysis indicated that translocation via the Sec pathway, unlike the Tat pathway, led predominantly to an oxidized protein. Translocation via the Tat pathway was linked to a slightly decreased growth rate, a pale-green leaf phenotype and supplementary expression products associated with the thylakoids.


Transgenic Research | 2009

High-level expression of active human alpha1-antitrypsin in transgenic tobacco chloroplasts.

Marie Nadai; Julia Bally; M. Vitel; Claudette Job; Ghislaine Tissot; Johan Botterman; Manuel Dubald

We have produced human alpha1-antitrypsin (A1AT), a major therapeutic protein, in genetically engineered tobacco plastids. Four different expression vectors have been evaluated which encode A1AT under the control of various 5′ and 3′ plastid expression elements. The use of heterologous promoter and terminator sequences derived from the corn and soybean plastid genomes leads to simpler and predictable recombinant genome patterns, avoiding unwanted recombination products between introduced and resident tobacco sequences. High level expression of unglycosylated A1AT, representing up to 2% of total soluble proteins, has been measured in leaves of transgenic tobacco lines. Some heterogeneity in the recombinant A1AT is detected after 2D protein separation, but the chloroplast-made protease inhibitors are fully active and bind to porcine pancreatic elastase.


Transgenic Research | 2006

Stability of soybean recombinant plastome over six generations.

Nathalie Dufourmantel; Ghislaine Tissot; Frederic Garcon; Bernard Pelissier; Manuel Dubald

The stability of a plastid transgene has been evaluated in soybean transformants over six generations. These transformants had integrated the aadA selection cassette in the intergenic region between the rps12/7 and trnV genes. Three independent homoplasmic T0 transformation events were selected and ten plants from each event propagated to generation T5 in the absence of selection pressure. No transgene rearrangement nor wild-type plastome were detected in generation T5 by Southern blot analysis. All tested progenies were uniformly resistant to spectinomycin. Therefore, soybean transformants of generations T0 and T5 appear to be genetically and phenotypically identical.


Methods of Molecular Biology | 2014

Plastid Transformation in Soybean

Manuel Dubald; Ghislaine Tissot; Bernard Pelissier

The biotechnological potential of plastid genetic engineering has been illustrated in a limited number of higher plant species. We have developed a reproducible method to generate plastid transformants in soybean (Glycine max), a crop of major agronomic importance. The transformation vectors are delivered to embryogenic cultures by the particle gun method and selection performed using the aadA antibiotic resistance gene. Homoplasmy is established rapidly in the selected events without the need for further selection or regeneration cycles, and genes of interest can be expressed at a high level in green tissues. This is a significant step toward the commercial application of this technology.


Plant Biotechnology Journal | 2007

Generation and characterization of soybean and marker-free tobacco plastid transformants over-expressing a bacterial 4-hydroxyphenylpyruvate dioxygenase which provides strong herbicide tolerance.

Nathalie Dufourmantel; Manuel Dubald; Michel Matringe; Hélène Canard; Frederic Garcon; Claudette Job; Elisabeth Kay; Jean-Pierre Wisniewski; Jean-Marc Ferullo; Bernard Pelissier; Alain Sailland; Ghislaine Tissot


Plant Molecular Biology | 2005

Generation and analysis of soybean plastid transformants expressing Bacillus thuringiensis Cry1Ab protoxin.

Nathalie Dufourmantel; Ghislaine Tissot; F. Goutorbe; Frederic Garcon; C. Muhr; S. Jansens; Bernard Pelissier; G. Peltier; Manuel Dubald


Archive | 2003

Expression of hydroxyphenylpyruvate dioxygenase in plastids of plants for herbicide tolerance

Ghislaine Tissot; Jean-Pierre Wisniewski; Jean-Marc Ferullo


Archive | 2003

Fertile transplastomic leguminous plants

Ghislaine Tissot; Nathalie Dufourmantel; Frederic Garcon; Jean-Marc Ferullo; Bernard Pelissier


Archive | 2006

TRANSPLASTOMIC PLANTS EXPRESSING α 1-ANTITRYPSIN

Manuel Dubald; Ghislaine Tissot; Marie Nadai; Maxime Vitel

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