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Cryopreservation of embryogenic cell suspensions of <Emphasis Type="Italic">Catharanthus roseus</Emphasis> L. (G) Don.
Authors:Samar Fatima  A Mujib  SA Nasim  ZH Siddiqui
Institution:(1) Plant Tissue Culture Division, Central Institute of Medicinal and Aromatic Plants P.O. CIMAP, Lucknow, 226015, UP, India;(2) Present address: Department of Genetics, University of Delhi, South Campus, New Delhi, 110021, India;(3) Department of Botany, H.N.B. Garhwal University, Pauri Campus, Srinagar Garhwal, Uttrakhand, India
Abstract:The present study describes the potential of in vitro grown adventitious roots of Hypericum perforatum L. commonly known as St. John’s wort at low nutrient and auxin levels in the liquid medium for micropropagation. Roots were regenerated from shoot-derived callus on MS medium containing 4.0 mg l−1 Indole-3 acetic acid (IAA). IAA and Indole-3 butyric acid (IBA) were equally effective for the induction of roots from shoot cultures. Half strength MS medium containing 1.0 mg l−1 IAA was most found suitable for culturing roots in liquid medium. A total biomass of 4.13 ± 0.67 g comprising 226 ± 34.4 shoots and shoot buds along with roots was obtained per culture starting with 200 mg roots inoculum. Pretreatment with kinetin (2.0 mg l−1) enhanced the shoot multiplication. Shoots proliferated profusely from excised roots in static liquid medium supported with glass bead matrix. Growtek vessel was found suitable and cost effective system for high throughput plantlet production. In vitro grown roots regardless of their source of origin were an excellent and easy to handle source of explant for aseptic production of plantlets without loosing the morphogenetic potential over the generations. The plants exhibited 84–99% similarity among themselves through RAPD. The in vitro shoots produced can either be multiplied or rooted perpetually, and alternatively they can also be explored for the in vitro production of hypericin and hyperforin.
Keywords:Depression  Growtek  Glass beads            Hypericum perforatum            Hypericin  Hyperforin  Micropropagation  RAPD  RFLP
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