Nano-Silver Particles Reduce Contaminations in Tissue Culture but Decrease Regeneration Rate and Slows Down Growth and Development of Aldrovanda vesiculosa Explants

Author:

Parzymies MarzenaORCID

Abstract

Aldrovanda vesiculosa is a carnivorous water plant which is endangered by extinction worldwide. The number of natural stands and populations has decreased; therefore, there is a need for its active protection. The best method would be an in vitro culture. One of the main problems is disinfection of the explants. Therefore, it was decided that we should treat the explants with nano-silver particles. The explants were shoot fragments which were disinfected with sodium hypochlorite and then placed in a liquid 1/5 MS medium, supplemented with silver nanoparticles (AgNPs) at a concentration of 5 mg·dm−3. It was observed that AgNPs reduced the number of contaminations but also led to necrosis of the shoots. The shoots, which undertook regeneration in presence of AgNPs, were smaller and did not form traps; however, after being moved to fresh media twice, they started to develop normal leaves. Taking into consideration both disinfection and regeneration rates, it might be advisable to disinfect aldrovanda shoots in sodium hypochlorite only, without AgNPs. The results of the research might indicate a toxic activity of AgNPs towards water plants, which seems a big problem, as nanoparticles are commonly used in all the fields of life. However, the matter should be studied further.

Funder

European Union through the Infrastructure and Environment Operational Programme

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference54 articles.

1. Assessment of habitat conditions using Self-Organizing Feature Maps for reintroduction/introduction of Aldrovanda vesiculosa L. in Poland

2. Restitution of Aldrovanda vesiculosa L. in Poland and Designation of Factors Responsible for Its Surviving in Temperate Climate (Restytucja Aldrowandy Pęcherzykowatej i Rozpoznanie Czynników Decydujących o jej Przetrwaniu w Klimacie Umiarkowanym);Kamiński,2006

3. An efficient in vitro protocol for important and highly valuable medicinal plant Rauwolfia serpentina: An endangered medicinal plant of India;Sharma;Vitr. Cell. Dev. Biol. Plant,2008

4. Researches ConcerningIn VitroConservation of the Rare Plant SpeciesDianthus NardiformisJanka

5. In Vitro Propagation of Rare and Endangered Serpentine Fern Species

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