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Acetone is used for decolouring method, washing away the iodine-crystal violet complex formed in gram negative bacteria. so that the gram negative bacteria can be then stained with safranin or fuchsin.

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Function of iodine in staining?

iodine act as a mordant..on the gram positive bacteria which got really thick and abundence of peptidoglycan layer, the crystal violet will fix to the peptidoglycan layer..meanwhile in gram negative bacteria which is lack of peptidoglycan layer, the alcohol or acetone will wash it away


What is the function of crystal violet in the gram staining process?

Crystal violet is used in the Gram staining process to initially stain all bacteria purple. This helps differentiate between Gram-positive and Gram-negative bacteria based on their ability to retain or lose the crystal violet dye during the staining process.


What is the function of sodium bicarbonate with Merthiolate in Gram stain?

Sodium bicarbonate is used to adjust the pH of the staining solution in the Gram stain procedure. Merthiolate is used as a mordant to enhance the crystal violet staining in the Gram stain. Together, they help differentiate between Gram-positive and Gram-negative bacteria based on their cell wall characteristics.


What is the primary stain used in Gram staining?

The primary stain used in Gram staining is crystal violet.


Who developed Gram staining?

Gram staining was devised by Hans Christian Gram of Denmark in the 1800s. (1853-1938)


What mordant is used in the process of gram staining?

The mordant used in the process of gram staining is called crystal violet.


What are the reagents and steps min a Gram stain?

The steps in Gram staining are:1. crystal violet added to the smear2. iodine, the mordant (this fixes the violet)3. a decolorizer made of acetone and alcohol4. safranin, the counterstainIf the cell is Gram +, the decolorizer can not remove the violet. If it is Gram -, the decolorizer can remove the violet and the cell can be then colored with the dye, safranin.Bacteria are grouped in 4 groups by Gram stain:Gram-positive, the cell wall retains crystal Violet.Gram-negative, the cell wall does not retain crystal Violet.Graham not reactive, no staining whatsoever.Graham variable, uneven staining.


Is the classification of cyanobacteria based on Gram staining positive or negative?

The classification of cyanobacteria is based on Gram staining, which is typically negative.


Why do gram positive bacteria stain purple in the Gram staining technique?

Gram positive bacteria stain purple in the Gram staining technique because they have a thick layer of peptidoglycan in their cell walls, which retains the crystal violet dye used in the staining process.


Is gram staining related to flagella?

No, gram staining and flagella are not directly related. Gram staining is a technique used to classify bacteria based on cell wall characteristics, while flagella are thread-like appendages that help bacteria move. Flagella presence or absence does not affect the results of a gram stain.


Why is Gram staining classified as differential staining?

Differential staining is the procedure that are used to distinguish organism based on their staining properties. Use of gram stain divide bacteria into two classes - gram positive which retain crystal violet stain purple colour, gram negative which lose their crystal violet and give pink colour. By this method we can differentiate two different types of bacteria having different cell wall composition that is the reason gram staining used widely as differential staining


Why gram staining classified as differential staining?

Differential staining is the procedure that are used to distinguish organism based on their staining properties. Use of gram stain divide bacteria into two classes - gram positive which retain crystal violet stain purple colour, gram negative which lose their crystal violet and give pink colour. By this method we can differentiate two different types of bacteria having different cell wall composition that is the reason gram staining used widely as differential staining