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1 -resistant to the cell wall disruption agent calcofluor white.
2 ll as increased sensitivity to Congo red and calcofluor white.
3 agar, biofilm formation, and fluorescence on calcofluor white.
4 , including a shared sensitivity to Zn2+ and calcofluor white.
5 nsitive to the cell wall-targeting compounds calcofluor white and Congo red, as well as the fungicide
6 l smear microscopy (potassium hydroxide with calcofluor white and Gram stains) and culture examinatio
7 of HOC1 also resulted in hypersensitivity to Calcofluor White and hygromycin B, phenotypes characteri
8 eletion of YKE4 resulted in a sensitivity to calcofluor white and poor growth at 36 degrees C on resp
9 rsensitive to the cell wall disrupting agent Calcofluor white and produced abnormally hypo-N-glycosyl
10  and swi6delta strains are hypersensitive to calcofluor white and SDS, indicating that they possess a
11 temperature sensitivity and sensitivities to calcofluor white and sodium dodecyl sulfate.
12                                Gram, Giemsa, calcofluor white, and acridine orange stains and electro
13 poson insertion mutants, designated Cds (for calcofluor white binding deficient and S motile), which
14 many genes are involved in the production of calcofluor white binding polysaccharide material found i
15                                   Passage on calcofluor white (CFW) resulted in C. jejuni 81-176 isol
16 ell wall, exemplified by hypersensitivity to Calcofluor white, Congo red, and hygromycin B and consti
17 -N3 labelling with the cellulose-binding dye calcofluor white demonstrated that RG-II exists througho
18  reduced growth and increased sensitivity to Calcofluor White, H2 O2 and Congo Red.
19 , another putative class E gene, resulted in calcofluor white hypersensitivity.
20 h cell wall stressors such as micafungin and calcofluor white in preventing yeast growth; iii) preven
21         These mutants failed to bind the dye calcofluor white, indicating that they lacked EPS; howev
22                                              Calcofluor white is a fluorescent dye that binds to glyc
23                               In this study, Calcofluor White M2R and Sytox Green stains were used in
24                   These results suggest that Calcofluor White M2R and Sytox Green stains, when used t
25                                              Calcofluor White M2R binds to chitin in the microsporidi
26  more sensitive than both Chromotrope-2R and CalcoFluor White M2R stains; 85.5% versus 72.7 and 70.9%
27 , and its overexpression renders these cells Calcofluor White resistant.
28 p2Delta and rup1Delta mutants suppressed the calcofluor white sensitivity of rsp5-1.
29 in Lys(63)-polyubiquitination, as assayed by calcofluor white sensitivity, and ubp2Delta and rup1Delt
30           The sensitivity and specificity of Calcofluor white stain (CW) were 73.8 and 99.6%, respect
31 ntitative spore counts after staining with a calcofluor white stain.
32  P. carinii-positive patients while the test calcofluor-white stain detected ten (77%) P. carinii-pos
33 ysts, the sediment was stained with the test calcofluor-white stain Solution A and the test antibody
34 ed that an esg mutant showed less binding to calcofluor white than wild-type cells.
35 lycoproteins, and grows at concentrations of Calcofluor White (which interferes with cell wall assemb
36 y, we show that nmd mutants are sensitive to Calcofluor White, which suggests that the regulation of

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