2011•Plant BreedingRequires access

Improved production of doubled haploids in Brassica rapa through microspore culture

Yun Zhang, Aijie Wang, Yang Liu, Yushu Wang, Hui Feng

Open publisher page 22 citations

Abstract

With 1 figure and 7 tables Abstract The current study aims at producing doubled haploid Brassica rapa plants through isolated microspore culture. Genotypic differences in embryogenic response and regenerative ability of microspore‐derived embryos to plants were observed. Compared with the longer incubation period (72 h), heat shock treatment at 33°C for 24 or 48 h was more beneficial for microspore embryogenesis. Microspore embryogenesis was improved with the addition of 6‐benzylaminopurine and naphthalene acetic acid to the NLN medium. The highest frequency of microspore embryogenesis was achieved in ‘SH‐8’ (21.1 embryos/bud), whereas ‘SH‐6’ had the best regeneration ability (67.4%). In total, 1112 regenerated plants were produced from 2025 embryos in a series of experiments using different modifications of microspore culture technique. The average spontaneous doubling frequency of the different genotypes of B. rapa was 57.5%.

About this research paper

What this paper is about

With 1 figure and 7 tables Abstract The current study aims at producing doubled haploid Brassica rapa plants through isolated microspore culture. Genotypic differences in embryogenic response and regenerative ability of microspore‐derived embryos to plants were observed. Compared with the longer incubation period (72 h), heat shock treatment at 33°C for 24 or 48 h was more beneficial for microspore embryogenesis. Microspore embryogenesis was improved with the addition of 6‐benzylaminopurine and naphthalene acetic acid to the NLN medium. The highest frequency of microspore embryogenesis was achieved in ‘SH‐8’ (21.1 embryos/bud), whereas ‘SH‐6’ had the best regeneration ability (67.4%). In total, 1112 regenerated plants were produced from 2025 embryos in a series of experiments using different modifications of microspore culture technique. The average spontaneous doubling frequency of the different genotypes of B. rapa was 57.5%.

Why it matters

OpenAlex reports 22 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

With 1 figure and 7 tables Abstract The current study aims at producing doubled haploid Brassica rapa plants through isolated microspore culture. Genotypic differences in embryogenic response and regenerative ability of microspore‐derived embryos to plants were observed. Compared with the longer incubation period (72 h), heat shock treatment at 33°C for 24 or 48 h was more beneficial for microspore embryogenesis. Microspore embryogenesis was improved with the addition of 6‐benzylaminopurine and naphthalene acetic acid to the NLN medium. The highest frequency of microspore embryogenesis was achieved in ‘SH‐8’ (21.1 embryos/bud), whereas ‘SH‐6’ had the best regeneration ability (67.4%). In total, 1112 regenerated plants were produced from 2025 embryos in a series of experiments using different modifications of microspore culture technique. The average spontaneous doubling frequency of the different genotypes of B. rapa was 57.5%.

Key concepts: Microspore, Brassica rapa, Biology, Doubled haploidy, Ploidy, Microspora, Botany, Embryogenesis

Related papers

Back to paper searchBrowse research topicsOriginal source
Improved production of doubled haploids in Brassica rapa through microspore culture — Research Paper | ScholarLens