2012Unpublished venueRequires access

Callus Induction and Evaluation of Somaclones in Potato

Mahabubur Rahman, Rubaiyat Sharmin Sultana

Open publisher page 0 citations

Abstract

The technology of plant tissue culture is recognized worldwide as a creative, promising and feasible option for propagation and genetic manipulation of plant, particularly those with special demands. The most popular application of tissue culture method is in the genetic transformation system. As a tool of genetic engineering of plant, plant regeneration using tissue culture system is taken a crucial part. Another important use of tissue culture system is propagation of plant, which is an alternative method to vegetative plant multiplication. While using conventional propagation methods, one cutting produces one plant. In sexual propagation, one seed produces one plant. In contrast, one explant (a piece of stem, leaf, bud, root, anther, etc.) can produce an infinity number of plants using tissue culture system within a relatively short period. Somaclonal variation can occur when plant regeneration and multiplication involves tissue culture, particularly when there is a callus phase. Today, somaclonal variation tends to be viewed as a source of undesirable variants that need to be screened out of breeding programmes that involve plant regeneration.

About this research paper

What this paper is about

The technology of plant tissue culture is recognized worldwide as a creative, promising and feasible option for propagation and genetic manipulation of plant, particularly those with special demands. The most popular application of tissue culture method is in the genetic transformation system. As a tool of genetic engineering of plant, plant regeneration using tissue culture system is taken a crucial part. Another important use of tissue culture system is propagation of plant, which is an alternative method to vegetative plant multiplication. While using conventional propagation methods, one cutting produces one plant. In sexual propagation, one seed produces one plant. In contrast, one explant (a piece of stem, leaf, bud, root, anther, etc.) can produce an infinity number of plants using tissue culture system within a relatively short period. Somaclonal variation can occur when plant regeneration and multiplication involves tissue culture, particularly when there is a callus phase. Today, somaclonal variation tends to be viewed as a source of undesirable variants that need to be screened out of breeding programmes that involve plant regeneration.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The technology of plant tissue culture is recognized worldwide as a creative, promising and feasible option for propagation and genetic manipulation of plant, particularly those with special demands. The most popular application of tissue culture method is in the genetic transformation system. As a tool of genetic engineering of plant, plant regeneration using tissue culture system is taken a crucial part. Another important use of tissue culture system is propagation of plant, which is an alternative method to vegetative plant multiplication. While using conventional propagation methods, one cutting produces one plant. In sexual propagation, one seed produces one plant. In contrast, one explant (a piece of stem, leaf, bud, root, anther, etc.) can produce an infinity number of plants using tissue culture system within a relatively short period. Somaclonal variation can occur when plant regeneration and multiplication involves tissue culture, particularly when there is a callus phase. Today, somaclonal variation tends to be viewed as a source of undesirable variants that need to be screened out of breeding programmes that involve plant regeneration.

Key concepts: Somaclonal variation, Callus, Explant culture, Tissue culture, Plant tissue culture, Biology, Plant propagation, Regeneration (biology)

Related papers

Back to paper searchBrowse research topicsOriginal source
Callus Induction and Evaluation of Somaclones in Potato — Research Paper | ScholarLens