In vitro shoot organogenesis and comparative analysis of endogenous phytohormones in kohlrabi (Brassica oleracea var. gongylodes): effects of genotype, explant type and applied cytokinins

@article{osi2015InVS,
  title={In vitro shoot organogenesis and comparative analysis of endogenous phytohormones in kohlrabi (Brassica oleracea var. gongylodes): effects of genotype, explant type and applied cytokinins},
  author={Tatjana {\'C}osi{\'c} and V{\'a}clav Motyka and Martin Raspor and Jelena Savi{\'c} and Aleksandar Cingel and Branka Vinterhalter and Dragan Vinterhalter and Alena Tr{\'a}vn{\'i}{\vc}kov{\'a} and Petre Ivanov Dobrev and Borut Bohanec and Slavica Ninkovi{\'c}},
  journal={Plant Cell, Tissue and Organ Culture (PCTOC)},
  year={2015},
  volume={121},
  pages={741-760}
}
Kohlrabi (Brassica oleracea var. gongylodes) cultivars Vienna Purple (VP) and Vienna White (VW) were tested for their ability of de novo organogenesis in vitro. Root, cotyledon, hypocotyl explants and intact seedlings were cultivated on Murashige and Skoog (MS) media supplemented with different cytokinins: benzyladenine (BA), thidiazuron (TDZ), trans- or cis-zeatin. All tested cytokinins, including cis-zeatin, induced shoot regeneration from hypocotyl explants and intact seedlings, with… 
Sucrose interferes with endogenous cytokinin homeostasis and expression of organogenesis-related genes during de novo shoot organogenesis in kohlrabi
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Histological and endogenous plant growth regulators changes associated with adventitious shoot regeneration from in vitro leaf explants of strawberry (Fragaria × ananassa cv. ‘Honeoye’)
TLDR
The results suggested that the histological variations were consistent with the plant hormonal changes during shoot regeneration, and that changes in hormone concentration could be used as a reference to characterize the mode of shoot regeneration.
HISTOLOGICAL CHANGES ACCOMPANYING ADVENTITOUS SHOOTS FROMATION OF FRAGRAIA X ANANASSA IN VITRO LEAVES
TLDR
This study included the histological and morphological responses of strawberry leaves with TDZ treatments in relation to some biochemical components and showed that 6.75 mmol l-1 of TDZ treatment significantly increases the number of shootlets per explant as compared with other treatments.
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