Expression of Melocactus glaucescens SERK1 sheds new light on the mechanism of areolar activation in cacti
Areolar activation is the most popular in vitro propagation method for cacti. Even though it is relatively simple, few established protocols exist. Acquisition of a competent state has been linked to the expression of SOMATIC EMBRYOGENESIS RECEPTOR KINASE ( SERK ) during plant organogenesis. Here, c...
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Veröffentlicht in: | Plant cell, tissue and organ culture tissue and organ culture, 2021-12, Vol.147 (3), p.437-451 |
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Sprache: | eng |
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Zusammenfassung: | Areolar activation is the most popular in vitro propagation method for cacti. Even though it is relatively simple, few established protocols exist. Acquisition of a competent state has been linked to the expression of
SOMATIC EMBRYOGENESIS RECEPTOR KINASE
(
SERK
) during plant organogenesis. Here, cell competence acquisition and areolar activation were investigated during
Melocactus glaucescens
shoot organogenesis. Degenerate PCR primers and transcriptome data enabled the characterization of
MgSERK1
, the first known Cactaceae SERK sequence. Phylogenetic analysis based on SERKs from 23 angiosperm species revealed elevated similarity to other SERK Dicot S1/2 sequences and identified the corresponding
SERK1
orthologs. Treated explants had the areolar region punctured three times, and shoot organogenesis was induced by exposure to 17.76 µM 6-benzyladenine and 1.34 µM 1-naphthaleneacetic acid. Shoot organogenesis was analyzed by comparing treated and non-treated explants. Anatomical examination and in situ hybridization showed that shoot organogenesis occurred via areolar activation from procambial cells in the stem cortex. Wounding of the areola region activated the axillary bud and increased the number of shoots produced per explant. In situ expression revealed the association of
MgSERK1
with
M. glaucescens
shoot organogenesis in the areola, its adjacent regions, and the roots.
Key message
This is the first characterization of a
SERK1
gene in cacti. Its expression during areolar activation is associated with shoot and root organogenesis in
Melocactus glaucescens
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ISSN: | 0167-6857 1573-5044 |
DOI: | 10.1007/s11240-021-02137-9 |