Long-term shoot regeneration from pampas grass (Cortaderia selloana Schult.) through manipulation of growth regulators in vitro

@article{Robacker2004LongtermSR,
  title={Long-term shoot regeneration from pampas grass (Cortaderia selloana Schult.) through manipulation of growth regulators in vitro},
  author={Carol D. Robacker},
  journal={Plant Cell Reports},
  year={2004},
  volume={14},
  pages={689-693}
}
  • C. Robacker
  • Published 1 August 1995
  • Biology, Medicine
  • Plant Cell Reports
A regeneration system for ‘Pumila’ pampas grass (Cortaderia selloana Schult.) that yields plants over many months and allows control of morphogenesis was developed. Immature inflorescence explants cultured for three 4-week passages on MS basal medium supplemented with 4.5 μM 2,4-D and 8.9 μM BA yielded a dark green callus that organized into shoot primordia. Rate of shoot development was increased after transfer of shoot primordia to medium supplemented with 9.8 μM IBA. Subculture every 4–6… 
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References

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Plant Regeneration of Pampas Grass from Immature Inflorescences Cultured in Vitro
TLDR
A micropropagati on system to obtain plants from inflorescences of pampas grass (Cortaderia selloana Schult) was developed and several thou- sand plants can be obtained from a single inflorescence in 1 year.
High frequency plant-regeneration through direct shoot development and somatic embryogenesis from immature inflorescence cultures of finger millet (Eleusine coracana Gaertn)
TLDR
Plant regeneration from cultured immature inflorescence segments of Eleusine coracana was obtained by direct shoot development and somatic embryogenesis and the majority of the regenerated plants showed the diploid chromosome constitution in their root tips.
A revised medium for rapid growth and bio assays with tobacco tissue cultures
TLDR
In vivo redox biosensing resolves the spatiotemporal dynamics of compartmental responses to local ROS generation and provide a basis for understanding how compartment-specific redox dynamics may operate in retrograde signaling and stress 67 acclimation in plants.