Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon...

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Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen, Anastasios Melis Molecular Plant Volume 7, Issue 1, Pages 71-86 (January 2014) DOI: 10.1093/mp/sst134 Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Transcript of Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon...

Page 1: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene 

Fiona K. Bentley, Andreas Zurbriggen, Anastasios Melis 

Molecular Plant Volume 7, Issue 1, Pages 71-86 (January 2014)

DOI: 10.1093/mp/sst134

Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 2: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 1

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 3: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 2

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 4: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 3

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 5: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 4

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 6: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 5

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 7: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 6

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 8: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 7

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 9: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 8

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 10: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 9

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions

Page 11: Heterologous Expression of the Mevalonic Acid Pathway in Cyanobacteria Enhances Endogenous Carbon Partitioning to Isoprene Fiona K. Bentley, Andreas Zurbriggen,

Figure 10

Molecular Plant 2014 7, 71-86DOI: (10.1093/mp/sst134) Copyright © 2013 The Authors. All rights reserved. Terms and Conditions