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Glyceraldehyde-3-phosphate dehydrogenase of Xanthomonas campestris pv. campestris is required for extracellular polysaccharide production and full virulence

Glyceraldehyde-3-phosphate dehydrogenase of Xanthomonas campestris pv. campestris is required for extracellular polysaccharide production and full virulence
Glyceraldehyde-3-phosphate dehydrogenase of Xanthomonas campestris pv. campestris is required for extracellular polysaccharide production and full virulence

Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) plays an important role in glucose catabolism, converting glyceraldehyde 3-phosphates to 1,3-bisphosphoglycerates. Open reading frame (ORF) XC_0972 in the genome of Xanthomonas campestris pv. campestris (Xcc) strain 8004 is the only ORF in this strain annotated to encode a GAPDH. In this work, we have demonstrated genetically that this ORF encodes a unique GAPDH in Xcc strain 8004, which seems to be constitutively expressed. A GAPDH-deficient mutant could still grow in medium with glucose or other sugars as the sole carbon source, and no phosphofructokinase activity was detectable in strain 8004. These facts suggest that Xcc may employ the Entner-Doudoroff pathway, but not glycolysis, to utilize glucose. The mutant could not utilize pyruvate as sole carbon source, whereas the wild-type could, implying that the GAPDH of Xcc is involved in gluconeogenesis. Furthermore, inactivation of the Xcc GAPDH resulted in impairment of bacterial growth and virulence in the host plant, and reduction of intracellular ATP and extracellular polysaccharide (EPS). This reveals that GAPDH is required for EPS production and full pathogenicity of Xcc.

1350-0872
1602-1612
Lu, Guang Tao
2ff4729d-c048-45fb-9212-a081bd531066
Xie, Jia Ri
fdca18f3-dfb3-422b-87e2-ece1eb298e2c
Chen, Lei
47fe92b6-7989-415e-bec5-eb8f8d6bca81
Hu, Jiang Ru
4c91a979-a769-430e-8f3d-097a31173da8
An, Shi Qi
0e05f480-cec1-4c0e-bc1d-359d30ea9a6e
Su, Hui Zhao
84d3edd4-cfea-47b0-b741-c6ff2c66b61f
Feng, Jia Xun
0fd52b76-a404-49dc-a0f7-61d7238e44fc
He, Yong Qiang
054fa877-72e1-456d-85b2-fc607eba4700
Jiang, Bo Le
396adce8-ef31-486e-a44f-e11e246c1b1a
Tang, Dong Jie
46609bbf-2dd4-4ec8-8a7b-a6d6a3b8983b
Tang, Ji Liang
74e46e1a-4f75-4c94-871d-317339f309f2
Lu, Guang Tao
2ff4729d-c048-45fb-9212-a081bd531066
Xie, Jia Ri
fdca18f3-dfb3-422b-87e2-ece1eb298e2c
Chen, Lei
47fe92b6-7989-415e-bec5-eb8f8d6bca81
Hu, Jiang Ru
4c91a979-a769-430e-8f3d-097a31173da8
An, Shi Qi
0e05f480-cec1-4c0e-bc1d-359d30ea9a6e
Su, Hui Zhao
84d3edd4-cfea-47b0-b741-c6ff2c66b61f
Feng, Jia Xun
0fd52b76-a404-49dc-a0f7-61d7238e44fc
He, Yong Qiang
054fa877-72e1-456d-85b2-fc607eba4700
Jiang, Bo Le
396adce8-ef31-486e-a44f-e11e246c1b1a
Tang, Dong Jie
46609bbf-2dd4-4ec8-8a7b-a6d6a3b8983b
Tang, Ji Liang
74e46e1a-4f75-4c94-871d-317339f309f2

Lu, Guang Tao, Xie, Jia Ri, Chen, Lei, Hu, Jiang Ru, An, Shi Qi, Su, Hui Zhao, Feng, Jia Xun, He, Yong Qiang, Jiang, Bo Le, Tang, Dong Jie and Tang, Ji Liang (2009) Glyceraldehyde-3-phosphate dehydrogenase of Xanthomonas campestris pv. campestris is required for extracellular polysaccharide production and full virulence. Microbiology, 155 (5), 1602-1612. (doi:10.1099/mic.0.023762-0).

Record type: Article

Abstract

Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) plays an important role in glucose catabolism, converting glyceraldehyde 3-phosphates to 1,3-bisphosphoglycerates. Open reading frame (ORF) XC_0972 in the genome of Xanthomonas campestris pv. campestris (Xcc) strain 8004 is the only ORF in this strain annotated to encode a GAPDH. In this work, we have demonstrated genetically that this ORF encodes a unique GAPDH in Xcc strain 8004, which seems to be constitutively expressed. A GAPDH-deficient mutant could still grow in medium with glucose or other sugars as the sole carbon source, and no phosphofructokinase activity was detectable in strain 8004. These facts suggest that Xcc may employ the Entner-Doudoroff pathway, but not glycolysis, to utilize glucose. The mutant could not utilize pyruvate as sole carbon source, whereas the wild-type could, implying that the GAPDH of Xcc is involved in gluconeogenesis. Furthermore, inactivation of the Xcc GAPDH resulted in impairment of bacterial growth and virulence in the host plant, and reduction of intracellular ATP and extracellular polysaccharide (EPS). This reveals that GAPDH is required for EPS production and full pathogenicity of Xcc.

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Published date: May 2009

Identifiers

Local EPrints ID: 425809
URI: http://eprints.soton.ac.uk/id/eprint/425809
ISSN: 1350-0872
PURE UUID: de9a3a5a-dcec-413c-b543-bc7581b0331a

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Date deposited: 05 Nov 2018 17:30
Last modified: 15 Mar 2024 22:29

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Contributors

Author: Guang Tao Lu
Author: Jia Ri Xie
Author: Lei Chen
Author: Jiang Ru Hu
Author: Shi Qi An
Author: Hui Zhao Su
Author: Jia Xun Feng
Author: Yong Qiang He
Author: Bo Le Jiang
Author: Dong Jie Tang
Author: Ji Liang Tang

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