2001•Israel Journal of Plant SciencesRequires access

Selection for salt tolerance in cotton tissue culture and plant regeneration from NaCl-tolerant embryogenic callus

Baohong Zhang, Fang Liu, WEN-SHENG ZHANG, Qinglian Wang

Open publisher page 2 citations

Abstract

Cotton embryogenic calli that were subcultured for at least one year were transferred to modified MS medium supplemented with 5–40 g/L NaCl for selecting salt-tolerant callus. The NaCl-tolerant calli were obtained by continuous selection on modified MS medium supplemented with various concentrations of NaCl. NaCl influenced not only the callus growth, survival, and morphology, but also somatic embryogenesis and plant regeneration. The half-lethal concentration of NaCl was between 5g/L and 10g/L; the lethal concentration of NaCl was 40g/L on cotton embryogenic callus. NaCl-tolerant callus grew relatively well on MS medium supplemented with 10g/L NaCl. Somatic embryos resistant to 20 g/L NaCl and regenerated plantlets resistant to 15g/L NaCl have been obtained. The selected tolerant callus and the reinitiated callus from the tolerant regenerated plant showed a higher tolerance to osmotic stress than the non-selected callus. The key factor for successfully obtaining salt-resistant regenerated plants was to s...

About this research paper

What this paper is about

Cotton embryogenic calli that were subcultured for at least one year were transferred to modified MS medium supplemented with 5–40 g/L NaCl for selecting salt-tolerant callus. The NaCl-tolerant calli were obtained by continuous selection on modified MS medium supplemented with various concentrations of NaCl. NaCl influenced not only the callus growth, survival, and morphology, but also somatic embryogenesis and plant regeneration. The half-lethal concentration of NaCl was between 5g/L and 10g/L; the lethal concentration of NaCl was 40g/L on cotton embryogenic callus. NaCl-tolerant callus grew relatively well on MS medium supplemented with 10g/L NaCl. Somatic embryos resistant to 20 g/L NaCl and regenerated plantlets resistant to 15g/L NaCl have been obtained. The selected tolerant callus and the reinitiated callus from the tolerant regenerated plant showed a higher tolerance to osmotic stress than the non-selected callus. The key factor for successfully obtaining salt-resistant regenerated plants was to s...

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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

Cotton embryogenic calli that were subcultured for at least one year were transferred to modified MS medium supplemented with 5–40 g/L NaCl for selecting salt-tolerant callus. The NaCl-tolerant calli were obtained by continuous selection on modified MS medium supplemented with various concentrations of NaCl. NaCl influenced not only the callus growth, survival, and morphology, but also somatic embryogenesis and plant regeneration. The half-lethal concentration of NaCl was between 5g/L and 10g/L; the lethal concentration of NaCl was 40g/L on cotton embryogenic callus. NaCl-tolerant callus grew relatively well on MS medium supplemented with 10g/L NaCl. Somatic embryos resistant to 20 g/L NaCl and regenerated plantlets resistant to 15g/L NaCl have been obtained. The selected tolerant callus and the reinitiated callus from the tolerant regenerated plant showed a higher tolerance to osmotic stress than the non-selected callus. The key factor for successfully obtaining salt-resistant regenerated plants was to s...

Key concepts: Callus, Somatic embryogenesis, Botany, Regeneration (biology), Salt (chemistry), Murashige and Skoog medium, Horticulture, Biology

Related papers

Back to paper searchBrowse research topicsOriginal source
Selection for salt tolerance in cotton tissue culture and plant regeneration from NaCl-tolerant embryogenic callus — Research Paper | ScholarLens