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Abstract We report the DNA sequence of a 9.6-kb region of the Agrobacterium tumefaciens chromosome containing a putative 8-kb chemotaxis operon. The putative operon begins with orf1, whose predicted protein product shows strong sequence identity to methyl-accepting chemotaxis proteins (MCPs), followed by orf2, cheY1, cheA, cheR, cheB, cheY2, orf9, orf10. All of the identified homologues show a high degree of sequence conservation with their counterparts in the che operons from Sinorhizobium meliloti and Rhodobacter sphaeroides, and are arranged in a similar order. Mutations in orf1 and cheA result in impaired chemotaxis, whereas deletion of orf10, appears to have no effect on chemotaxis or motility. Although the putative operon does not contain a cheW homologue, heterologous probing and PCR using consensus primers indicates that cheW maps elsewhere in the Agrobacterium genome.
AbstractList We report the DNA sequence of a 9.6-kb region of the Agrobacterium tumefaciens chromosome containing a putative 8-kb chemotaxis operon. The putative operon begins with orf1, whose predicted protein product shows strong sequence identity to methyl-accepting chemotaxis proteins (MCPs), followed by orf2, cheY1, cheA, cheR, cheB, cheY2, orf9, orf10. All of the identified homologues show a high degree of sequence conservation with their counterparts in the che operons from Sinorhizobium meliloti and Rhodobacter sphaeroides, and are arranged in a similar order. Mutations in orf1 and cheA result in impaired chemotaxis, whereas deletion of orf10, appears to have no effect on chemotaxis or motility. Although the putative operon does not contain a cheW homologue, heterologous probing and PCR using consensus primers indicates that cheW maps elsewhere in the Agrobacterium genome.
We report the DNA sequence of a 9.6-kb region of the Agrobacterium tumefaciens chromosome containing a putative 8-kb chemotaxis operon. The putative operon begins with orf1, whose predicted protein product shows strong sequence identity to methyl-accepting chemotaxis proteins (MCPs), followed by orf2, cheY1, cheA, cheR, cheB, cheY2, orf9, orf10. All of the identified homologues show a high degree of sequence conservation with their counterparts in the che operons from Sinorhizobium meliloti and Rhodobacter sphaeroides, and are arranged in a similar order. Mutations in orf1 and cheA result in impaired chemotaxis, whereas deletion of orf10, appears to have no effect on chemotaxis or motility. Although the putative operon does not contain a cheW homologue, heterologous probing and PCR using consensus primers indicates that cheW maps elsewhere in the Agrobacterium genome.
Author Shaw, Charles H
Wright, Emma L
Deakin, William J
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  givenname: Charles H
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Issue 1
Keywords bp, basepair(s)
aa, amino acid(s)
vir, Agrobacterium virulence gene
Motility
CheA, chemotaxis protein
T-DNA, Ti-plasmid transfer or tumour DNA
cheA, gene encoding CheA
kb, kilobase(s) or 1000 bp
S., Sinorhizobium
Chemotaxis
C., Caulobacter
Agrobacterium
E., Escherichia
A., Agrobacterium
R., Rhodobacter
Ti-plasmid, Agrobacterium tumour-inducing plasmid
Flagella
orf, open reading frame
Language English
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Snippet We report the DNA sequence of a 9.6-kb region of the Agrobacterium tumefaciens chromosome containing a putative 8-kb chemotaxis operon. The putative operon...
We report the DNA sequence of a 9.6-kb region of the Agrobacterium tumefaciens chromosome containing a putative 8-kb chemotaxis operon. The putative operon...
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StartPage 83
SubjectTerms Agrobacterium
AGROBACTERIUM TUMEFACIENS
Agrobacterium tumefaciens - genetics
Bacterial Proteins - genetics
CHEMOTAXIS
Chemotaxis - genetics
Flagella
GENE
GENES
Genes, Bacterial
MECANISME CHIMIOTACTIQUE
Membrane Proteins - genetics
Methyl-Accepting Chemotaxis Proteins
Motility
MOUVEMENT
MOVEMENT
MOVIMIENTO
Multigene Family - genetics
Mutagenesis, Site-Directed
NUCLEOTIDE SEQUENCE
Phenotype
QUIMIOTACTISMO
RHIZOBIUM MELILOTI
SECUENCIA NUCLEOTIDICA
SEQUENCE NUCLEOTIDIQUE
Title A chemotaxis cluster from Agrobacterium tumefaciens
URI https://dx.doi.org/10.1016/S0378-1119(98)00438-7
https://www.ncbi.nlm.nih.gov/pubmed/9767126
https://search.proquest.com/docview/16520191
Volume 220
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