What's the difference between verger and virge?

Verger


Definition:

  • (n.) One who carries a verge, or emblem of office.
  • (n.) An attendant upon a dignitary, as on a bishop, a dean, a justice, etc.
  • (n.) The official who takes care of the interior of a church building.
  • (n.) A garden or orchard.

Example Sentences:

  • (1) This description of the group was endorsed Dr Philippe Verger, a WHO official and secretary of the UN panel on glyphosate.
  • (2) The kinetic results presented in the form of double reciprocal plots of initial velocity against bulk PC or interfacial PC concentration were linear according to the Verger et al.
  • (3) Verger told the Guardian: “ILSI is not an independent body.
  • (4) In comparison to the previous procedure reported by Verger, R., de Hass, G.H., Sarda, L and Desnuelle, P. (1969) Biochim.
  • (5) Finally the isoenzymes were separated on CM-cellulose as in the Verger procedure, but under slightly modified conditions.
  • (6) kinetic model (Verger, R., Mieras, M. C. E., and de Haas, G. H. (1973) J. Biol.
  • (7) We previously reported that the inhibition of pancreatic and Rhizopus delemar lipases by proteins is due to the protein associated with lipid and is not caused by direct protein-enzyme interaction in the aqueous phase [Gargouri, Y., Piéroni, G., Rivière, C., Sugihara, A., Sarda, L., & Verger, R. (1985) J. Biol.
  • (8) Several 2-acylaminophospholipid analogues have been demonstrated to behave as potent competitive inhibitors of porcine pancreatic phospholipase A2 (De Haas, G.H., Dijkman, R., Ransac, S. and Verger, R. (1990) Biochim.
  • (9) Verger said: “Every year we evaluate 10-30 compounds, and I can tell you that a lot of them are more dangerous and potent than glyphosate.
  • (10) A. Virtanen, R. Verger, and P. K. J. Kinnunen (1987) Biochim.
  • (11) (Gargouri, Y., Moreau, H., Piéroni, G. and Verger, R. (1988) J. Biol.

Virge


Definition:

  • (n.) A wand. See Verge.

Example Sentences:

  • (1) We have conducted a mutational analysis of the VirG protein.
  • (2) Translation initiation codons for all vir genes, except virG, are preceded by sequences homologous to the ribosome binding site sequences found in E. coli.
  • (3) This attracts Ti-plasmid harbouring A. tumefaciens to wound sites, where the higher acetosyringone concentrations lead to virA and virG-mediated induction of the vir-genes.
  • (4) VirG overproduced in Escherichia coli was purified from inclusion bodies.
  • (5) Additional copies of octopine- and agropine-type virG genes in A. tumefaciens strains containing an agropine-type Ti-plasmid enhanced the frequency of transient transformation of celery and rice.
  • (6) Insertional and deoxyoligonucleotide-directed mutagenesis studies showed that both octopine and nopaline Ti plasmid virG genes initiate translation at a UUG codon.
  • (7) Of six vir region complementation groups (virA, virB, virG, virC, virD, and virE) examined by using fusions to reporter genes, the promoters of only two (virC and virD) responded to the ros mutation.
  • (8) Western immunoblot analysis of pHS1059 whole-cell lysates revealed that the synthesis of the invasion plasmid antigens VirG, IpaA, IpaB, IpaC, and IpaD was similar to that seen in the corresponding isogenic S. flexneri 5 virulent strain, M90T.
  • (9) Using this antiserum, a protein of Mr congruent to 29,000, a size similar to that calculated from the virG nucleotide sequence, was detected in an E. coli strain harbouring a virG expression vector.
  • (10) This mutant also activates vir gene expression efficiently at neutral pH, indicating that the step in induction that is normally stimulated by acid pH occurs before or during VirG phosphorylation.
  • (11) Mutations in these loci eliminate (virA, virB, virD and virG) or significantly restrict (virC and virE) the ability of Agrobacterium to transform plant cells.
  • (12) The amino acid sequence of the predicted virG product is homologous to that of eight bacterial proteins, including that of the ompR gene of Escherichia coli.
  • (13) pINV-integrated HN280 and M90T strains required methionine (Met-) to grow in minimal medium, were noninvasive, did not produce contact-mediated hemolysin, and had lost the ability to bind Congo red (Crb-) at 37 degrees C. Immunoblots of whole bacterial extracts from pHN280-integrated HN280 derivatives revealed that integration severely reduced the expression of ipa and virG (icsA) plasmid genes.
  • (14) To identify the critical functional domains of virA and virG, a mutational approach was used.
  • (15) In an effort to improve the T-DNA-mediated transformation frequency of economically important crops, we investigated the possible enhancement effect of multiple copies of virG genes contained in Agrobacterium tumefaciens strains upon the transient transformation of celery, carrot and rice tissues.
  • (16) However, Ti-plasmids with mutations in virA or virG were unable to confer the responsive phenotype.
  • (17) Fifteen strains had a plasmid comparable in size to that responsible for epithelial invasiveness and were positive in hybridization tests with a probe derived from a plasmid cistron, virG.
  • (18) The VirG protein of the hairy-root-inducing plasmid A4 was overproduced in Escherichia coli cells, and purified to homogeneity.
  • (19) The virA and virG gene products are required for the regulation of the vir regulon on the tumor-inducing (Ti) plasmid of Agrobacterium tumefaciens.
  • (20) VirA and VirG activate the Agrobacterium tumefaciens vir regulon in response to phenolic compounds, monosaccharides, and acidity released from plant wound sites.

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