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Updated: May 5, 2026

Gibberella zeae Ascospore Production and Collection for Microarray Experiments.
Published on: November 30, 2006
High frequency androgenesis from isolated microspores of maize
S M Pescitelli1, J C Mitchell, A M Jones
1United AgriSeeds, Inc., P.O. Box 4011, 61820, Champaign, IL, USA.
Abstract:
Anthers from a highly androgenic genotype of maize (139/39-02), when cultured in a modified, liquid YP medium, dehisced within 2-7 days resulting in a stationary suspension of microspores. After 12-15 days, the microspore suspension was found to contain multicellular masses which went on to produce macroscopic embryo-like structures within 20-25 days of culture initiation. Embryogenic callus could be obtained by transferring microspore-derived embryos onto a modified N6 medium supplemented with 2.5 mg/l dicamba and 0.1 mg/l 2,4-D. Subculture onto hormone-free medium resulted in plant regeneration. Over 400 embryo-like structures per 100 anthers cultured have been obtained from liquid induction medium as compared to 55 embryos per 100 anthers cultured on an agar-solidified medium. Approximately 5-25% of these embryo-like structures went on to produce callus from which plants could be recovered. Mechanical isolation of microspores from anthers precultured for 0, 3, and 7 days also resulted in embryo production and plant regeneration. This represents the first report of plant recovery from isolated maize microspores. The use of a liquid induction medium applied to a highly androgenic genotype allows for the production of large numbers of microspore-derived plants and provides a single, haploid cell regeneration system for maize.
Insights
This study demonstrates successful plant regeneration from isolated maize microspores using a novel liquid culture method. This breakthrough enables efficient haploid plant production for maize breeding programs.
Area of Science:
- Plant Science
- Agricultural Biotechnology
- Genetics
Background:
- Maize haploid plant production is crucial for breeding.
- Previous methods for maize microspore culture were inefficient.
Purpose of the Study:
- To develop an efficient method for maize haploid plant regeneration from isolated microspores.
- To establish a single, haploid cell regeneration system for maize.
Main Methods:
- Anthers from a highly androgenic maize genotype were cultured in a modified liquid YP medium.
- Microspore-derived embryos were transferred to N6 medium with dicamba and 2,4-D for callus induction.
- Plant regeneration was achieved via subculture onto hormone-free medium.
Main Results:
- Liquid induction medium yielded over 400 embryo-like structures per 100 anthers, significantly higher than agar-solidified medium (55 embryos).
- Approximately 5-25% of these structures developed into callus, leading to plant recovery.
- Mechanical isolation of microspores also resulted in embryo production and plant regeneration.
Conclusions:
- This study reports the first successful plant recovery from isolated maize microspores.
- The liquid induction medium method enhances the efficiency of haploid plant production in maize.
- This technique provides a valuable single, haploid cell regeneration system for maize improvement.
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