Related Experiment Video
Updated: Jan 22, 2026

Expression of Recombinant Cellulase Cel5A from Trichoderma reesei in Tobacco Plants
Published on: June 13, 2014
Field-grown tobacco plants maintain robust growth while accumulating large quantities of a bacterial cellulase in
Jennifer A Schmidt1, Justin M McGrath2, Maureen R Hanson3
1Department of Biological and Environmental Engineering, Cornell University, Ithaca, NY, USA.
Abstract:
High accumulation of heterologous proteins expressed from the plastid genome has sometimes been reported to result in compromised plant phenotypes. Comparisons of transplastomic plants to wild-type (WT) are typically made in environmentally controlled chambers with relatively low light; little is known about the performance of such plants under field conditions. Here, we report on two plastid-engineered tobacco lines expressing the bacterial cellulase Cel6A. Field-grown plants producing Cel6A at ~20% of total soluble protein exhibit no loss in biomass or Rubisco content and only minor reductions in photosynthesis compared to WT. These experiments demonstrate that, when grown in the field, tobacco possesses sufficient metabolic flexibility to accommodate high levels of recombinant protein by increasing total protein synthesis and accumulation and/or by reallocating unneeded endogenous proteins. Based on current tobacco cultivation practices and readily achievable recombinant protein yields, we estimate that specific proteins could be obtained from field-grown transgenic tobacco plants at costs three orders of magnitude less than current cell culture methods.
Related Concept Videos
Meristems and Plant Growth
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes
Anatomy of Chloroplasts
Export of Mitochondrial and Chloroplast Genes
Key Elements for Plant Nutrition
Bacterial Growth Curve

