Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae

In the plant pathogenic bacterium, Pseudomonas syringae, the exopolysaccharide levan is synthesized by extracellular levansucrase (Lsc), which is encoded by two conserved 1,296-bp genes termed lscB and lscC in P. syringae strain PG4180. A third gene, lscA, is homologous to the 1,248-bp lsc gene of t...

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Main Authors: Matthias S. Ullrich, Nehaya Al-Karablieh, Shaunak Khandekar, Helge Weingart, Arifa Sharmin, Abhishek Srivastava
Format: Article
Language:English
Published: MDPI AG 2012-02-01
Series:Genes
Subjects:
Online Access:http://www.mdpi.com/2073-4425/3/1/115/
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spelling doaj-6087d104edf0470687c3d5a8b91d43be2020-11-24T20:54:26ZengMDPI AGGenes2073-44252012-02-013111513710.3390/genes3010115Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringaeMatthias S. UllrichNehaya Al-KarabliehShaunak KhandekarHelge WeingartArifa SharminAbhishek SrivastavaIn the plant pathogenic bacterium, Pseudomonas syringae, the exopolysaccharide levan is synthesized by extracellular levansucrase (Lsc), which is encoded by two conserved 1,296-bp genes termed lscB and lscC in P. syringae strain PG4180. A third gene, lscA, is homologous to the 1,248-bp lsc gene of the bacterium Erwinia amylovora, causing fire blight. However, lscA is not expressed in P. syringae strain PG4180. Herein, PG4180 lscA was shown to be expressed from its native promoter in the Lsc-deficient E. amylovora mutant, Ea7/74-LS6, suggesting that lscA might be closely related to the E. amylovora lsc gene. Nucleotide sequence analysis revealed that lscB and lscC homologs in several P. syringae strains are part of a highly conserved 1.8-kb region containing the ORF, flanked by 450-452-bp and 49-51-bp up- and downstream sequences, respectively. Interestingly, the 450-452-bp upstream sequence, along with the initial 48-bp ORF sequence encoding for the N-terminal 16 amino acid residues of Lsc, were found to be highly similar to the respective sequence of a putatively prophage-borne glycosyl hydrolase-encoding gene in several P. syringae genomes. Minimal promoter regions of lscB and lscC were mapped in PG4180 by deletion analysis and were found to be located in similar positions upstream of lsc genes in three P. syringae genomes. Thus, a putative 498-500-bp promoter element was identified, which possesses the prophage-associated com gene and DNA encoding common N-terminal sequences of all 1,296-bp Lsc and two glycosyl hydrolases. Since the gene product of the non-expressed 1,248-bp lscA is lacking this conserved N-terminal region but is otherwise highly homologous to those of lscB and lscC, it was concluded that lscA might have been the ancestral lsc gene in E. amylovora and P. syringae. Our data indicated that its highly expressed paralogs in P. syringae are probably derived from subsequent recombination events initiated by insertion of the 498-500-bp promoter element, described herein, containing a translational start site.http://www.mdpi.com/2073-4425/3/1/115/levansucrasephage-associated promoter elementPseudomonas syringaeErwinia amylovorapro-phage
collection DOAJ
language English
format Article
sources DOAJ
author Matthias S. Ullrich
Nehaya Al-Karablieh
Shaunak Khandekar
Helge Weingart
Arifa Sharmin
Abhishek Srivastava
spellingShingle Matthias S. Ullrich
Nehaya Al-Karablieh
Shaunak Khandekar
Helge Weingart
Arifa Sharmin
Abhishek Srivastava
Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
Genes
levansucrase
phage-associated promoter element
Pseudomonas syringae
Erwinia amylovora
pro-phage
author_facet Matthias S. Ullrich
Nehaya Al-Karablieh
Shaunak Khandekar
Helge Weingart
Arifa Sharmin
Abhishek Srivastava
author_sort Matthias S. Ullrich
title Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
title_short Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
title_full Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
title_fullStr Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
title_full_unstemmed Genomic Distribution and Divergence of Levansucrase-Coding Genes in Pseudomonas syringae
title_sort genomic distribution and divergence of levansucrase-coding genes in pseudomonas syringae
publisher MDPI AG
series Genes
issn 2073-4425
publishDate 2012-02-01
description In the plant pathogenic bacterium, Pseudomonas syringae, the exopolysaccharide levan is synthesized by extracellular levansucrase (Lsc), which is encoded by two conserved 1,296-bp genes termed lscB and lscC in P. syringae strain PG4180. A third gene, lscA, is homologous to the 1,248-bp lsc gene of the bacterium Erwinia amylovora, causing fire blight. However, lscA is not expressed in P. syringae strain PG4180. Herein, PG4180 lscA was shown to be expressed from its native promoter in the Lsc-deficient E. amylovora mutant, Ea7/74-LS6, suggesting that lscA might be closely related to the E. amylovora lsc gene. Nucleotide sequence analysis revealed that lscB and lscC homologs in several P. syringae strains are part of a highly conserved 1.8-kb region containing the ORF, flanked by 450-452-bp and 49-51-bp up- and downstream sequences, respectively. Interestingly, the 450-452-bp upstream sequence, along with the initial 48-bp ORF sequence encoding for the N-terminal 16 amino acid residues of Lsc, were found to be highly similar to the respective sequence of a putatively prophage-borne glycosyl hydrolase-encoding gene in several P. syringae genomes. Minimal promoter regions of lscB and lscC were mapped in PG4180 by deletion analysis and were found to be located in similar positions upstream of lsc genes in three P. syringae genomes. Thus, a putative 498-500-bp promoter element was identified, which possesses the prophage-associated com gene and DNA encoding common N-terminal sequences of all 1,296-bp Lsc and two glycosyl hydrolases. Since the gene product of the non-expressed 1,248-bp lscA is lacking this conserved N-terminal region but is otherwise highly homologous to those of lscB and lscC, it was concluded that lscA might have been the ancestral lsc gene in E. amylovora and P. syringae. Our data indicated that its highly expressed paralogs in P. syringae are probably derived from subsequent recombination events initiated by insertion of the 498-500-bp promoter element, described herein, containing a translational start site.
topic levansucrase
phage-associated promoter element
Pseudomonas syringae
Erwinia amylovora
pro-phage
url http://www.mdpi.com/2073-4425/3/1/115/
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