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1 was similar to those produced by cultures of E. chrysanthemi.
2 pCPP2006 enables Escherichia coli to secrete E. chrysanthemi, but not E. carotovora, Pels.
3  presence of rsmB homologs in E. carotovora, E. chrysanthemi, E. amylovora, E. herbicola, E. stewarti
4 atroseptica, betavasculorum, and carotovora; E. chrysanthemi; E. herbicola; E. rhapontici; and E. ste
5  each deletion with wild-type out genes from E. chrysanthemi EC16 and E. carotovora SCRI193 we have d
6  isolation of a cosmid clone, pCPP2OO6, from E. chrysanthemi EC16, which enables Escherichia coil to
7                                          The E. chrysanthemi gene was able to functionally complement
8                              Curation of the E. chrysanthemi genome annotation as well as those of ad
9                    The functional cluster of E. chrysanthemi out genes carried on cosmid pCPP2006 ena
10  (iv) Pel1 secretion can be conferred on the E. chrysanthemi Out system by the presence of outC-M, S
11 ra cannot be successfully assembled into the E. chrysanthemi Out system.
12 ovora do not confer secretion of Pel1 on the E. chrysanthemi Out system; and (iv) Pel1 secretion can
13 ploited the high sequence similarity between E. chrysanthemi PelC and E. carotovora Pel1 to construct
14 ) each out gene is required for secretion of E. chrysanthemi PelE from E. coli with the exception of
15 e found that cellulose is a component of the E. chrysanthemi pellicle but that pellicle formation sti
16  cellulose synthase subunit, is required for E. chrysanthemi pellicle formation, this inexpensive ass
17 hia coil to secrete heterologously expressed E. chrysanthemi Pels.
18  galacturonate catabolism), a homolog of the E. chrysanthemi repressor, KdgREch and the Escherichia c
19 alytic domain homologous to PelL and PelX of E. chrysanthemi that belongs to family 4 of pectate lyas
20 imicrobial compounds produced by plants, the E. chrysanthemi tolC plays an important role in the surv
21                             A tolC mutant of E. chrysanthemi was found to be extremely sensitive to a

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