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McClung-Toabe Egg Yolk Agar, CDC Modified (CDC Modified McClung Toabe Egg Yolk Agar)
[所属分类:培养基配方] [发布时间:2021-12-1] [发布人:网站管理员2] [阅读次数:] [返回]
McClung-Toabe Egg Yolk Agar,
CDC Modified
(CDC Modified McClung
Toabe Egg Yolk Agar)
山东拓普生物工程有限公司 培养基配方 http://www.topbiol.com
Composition per liter:
Pancreatic digest of casein................................40.0g
Agar ..................................................................25.0g
Na2HPO4.............................................................5.0g
Yeast extract........................................................5.0g
Glucose ...............................................................2.0g
NaCl....................................................................2.0g
KH2PO4...............................................................1.0g
Egg yolk emulsion, 50%............................. 100.0mL
MgSO4·7H2O (5% solution) ........................... 0.2mL
pH 7.3 ± 0.2 at 25°C
Egg Yolk Emulsion, 50%:
Composition per 100.0mL:
Chicken egg yolks..................................................11
Whole chicken egg...................................................1
NaCl (0.9% solution) .................................... 50.0mL
Preparation of Egg Yolk Emulsion, 50%:
Soak eggs with 1:100 dilution of saturated mercuric
chloride solution for 1 min. Crack eggs and separate
yolks from whites. Mix egg yolks with 1 chicken egg.
Measure 50.0mL of egg yolk emulsion and add to
50.0mL of 0.9% NaCl solution. Mix thoroughly. Fil
ter sterilize. Warm to 45°–50°C.
Preparation of Medium: Add components—ex
cept egg yolk emulsion, 50%—to distilled/deionized
water and bring volume to 900.0mL. Mix thoroughly.
Gently heat while stirring and bring to boiling. Auto
clave for 15 min at 15 psi pressure–121°C. Cool to
50°–55°C. Aseptically add 100.0mL of sterile egg
yolk emulsion, 50%. Mix thoroughly. Pour into ster
ile Petri dishes in 15.0mL volumes.
Use: For the cultivation of a wide variety of anaero
bic bacteria. For the differentiation of anaerobic bac
teria based on lecithinase production, lipase produc
tion, and proteolytic ability. Bacteria that produce
lecithinase appear as colonies surrounded by a zone
of insoluble precipitate. Bacteria that produce lipase
appear as colonies with a pearly iridescent sheen.
Bacteria that produce proteolytic activity appear as
colonies surrounded by a clear zone.