Biology, asked by johnmichael98, 6 months ago

Determine which technologies are most appropriate for the following:

TECHNOLOGY CELL TYPE
1. 1.PLANT CELL
2. ELECTROPORATION 2.
3. BIOLISTIC 3.
4. 4.BACTERIA CELL
5. 5.MAMMALIAN CELL

Answers

Answered by prathameshvitkar048
5

Answer:

I can't understand your question

Answered by Mithalesh1602398
0

Answer:

The technologies appropriate for the cell types are

1. Immobilization - Plant cells.

2. Electroporation - Eukaryotic cells (Mammalian and yeast cells).

3. Biolistics - Plant cells.

4. Recombinant DNA technology - Bacterial cells.

5. Tissue engineering or gene therapy - Mammalian cells.

Explanation:

Step : 1  Immobilization - Plant cells.

It is the process of cross-linking or putting various molecules into storage forms in order to immobilise them. Gases and chemicals that may be utilised at any moment can be stored in plant cells. It may be utilised on all cell types, including mammalian, bacterium, algae, plant, and yeast. It is also non-viral and non-toxic. It may be used to all types of cells, whether they are ex vivo or in vitro. Latin word "inside glass" describes in vitro, which also refers to adherent cell, tissue slice, and suspension cell.

Step : 2 Electroporation - Eukaryotic cells (Mammalian and yeast cells).

DNA particles, particularly plasmid DNA, are introduced into eukaryotic cell types during electrophoresis and analysed there. A laboratory procedure called electrophoresis is used to divide DNA, RNA, or protein molecules according to their size and electrical charge. The molecules are moved by an electric current via a gel or other matrix.

Step : 3  Biolistics - Plant cells.

Biolistics, or particle bombardment, is a frequently used technique for genetically modifying plants and other organisms. Using a biolistic device or gene cannon, millions of DNA-coated metal particles are fired at target cells or tissues. The process, often known as the "gene cannon," involves firing tiny metal particles coated with created DNA into the plant cells.

Step : 4 Recombinant DNA technology - Bacterial cells.

RDT is a method for recombining DNA strands to produce superior outcomes, such enhanced immunity or greater functionalities. The ideal plasmid for RDT is a bacterial one.

Step : 5 Tissue engineering or gene therapy - Mammalian cells.

Gene therapy, often known as TE, is a method of mending and reusing the gene or tissue that aids in treating numerous ailments. Enzymes in mammalian cells perform extremely complex roles.

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