| Literature DB >> 29454893 |
Mack Moyo1, Adeyemi O Aremu2, Lenka Plačková3, Lucie Plíhalová3, Aleš Pěnčík3, Ondřej Novák3, Jan Holub4, Karel Doležal3, Johannes Van Staden5.
Abstract
Clonal propagation plays a critical integral role in the growth and success of a global multi-billion dollar horticulture industry through a constant supply of healthy stock plants. The supply chain depends on continuously improving the micropropagation process, thus, understanding the physiology of in vitro plants remains a core component. We evaluated the influence of exogenously applied cytokinins (CKs, N6-benzyladenine = BA, isopentenyladenine = iP, meta-topolin = mT, 6-(3-hydroxybenzylamino)-9-(tetrahydropyran-2-yl)purine = mTTHP) in Murashige and Skoog (MS)-supplemented media on organogenic response and accumulation of endogenous CK and indole-3-acetic acid (IAA) metabolites. The highest shoot proliferation (30 shoots/explant) was obtained with 20 μM mT treatment. However, the best quality regenerants were produced in 10 μM mT treatment. Rooting of Amelanchier alnifolia in vitro plantlets was observed at the lowest CK concentrations, with the highest root proliferation (3 roots/explant) in 1 μM mTTHP regenerants. Similar to the organogenic response, high levels of endogenous bioactive CK metabolites (free bases, ribosides, and nucleotides) were detected in mT and mTTHP-derived regenerants. The level of O-glucosides was also comparatively high in these cultures. All CK-treated plants had high levels of endogenous free IAA compared to the control. This may suggest an influence of CKs on biosynthesis of IAA.Entities:
Keywords: Auxins; Endogenous cytokinins; Micropropagation; Organogenesis; Saskatoon berry; Topolins
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Year: 2018 PMID: 29454893 DOI: 10.1016/j.nbt.2018.02.001
Source DB: PubMed Journal: N Biotechnol ISSN: 1871-6784 Impact factor: 5.079