Accumulation of economically important metabolites of diatoms Anomoeoneis elliptica Zakrz. growing on various nutrient media

Authors

  • S. A. Dzhokebaeva НИИ проблем биологии и биотехнологии КазНУ им.аль-Фараби
  • T. A. Karpenyuk НИИ проблем биологии и биотехнологии КазНУ им.аль-Фараби
  • S. B. Orazova НИИ проблем биологии и биотехнологии КазНУ им.аль-Фараби

Keywords:

diatoms, growth, pigments, proteins, lipids

Abstract

The accumulation of economically important metabolites A.elliptica depends on the medium. We defined culture media, providing high intensity of growth, photosynthesis and the accumulation of reserve substances. After cultivation on Chu 10 medium diatom cells accumulate approximately 70% lipids.

References

1 Putz O., Gross W. Valuable products from biotechnology of microalgae//Appl.Microbio.Biotechnol. - 2004. -Vol.65. - P. 635-648.

2 De Pauw N., Persone G. Microalgae in aquaculture. In: Microalgal biotechnology. - Cambridge: Univ.Press. -1988. - Р. 197-221.

3. Adarme-Vega T.C., Lim D.K.Y., Timmins M., Vernen F. et al. Microalgal biofactories: a promising approach
towards sustainable omega-3 fatty acid production // Microbial Cell Factories. – 2012. - № 11. - Р. 96-106.

4 Lee S.G., Karawita R., Affan A., et al. Potential of benthic diatoms Achnanthes longiceps, Amphora coffeaeformis
and Navicula sp. (Bacillariophyceae) as antioxidant sources // Algae. - 2009. - Vol. 24, № 1. - Р. 44-55.

5 Andrianasolo E.H., Haramaty L., Vardi A., Whiteet E. al. Apoptosis-inducing galactolipids from a cultured marine
diatom Phaeodactylum tricornutum // J. Nat. Prod. - 2008. - Vol. 25. - №5. - Р. 885–890.

6 Lebeau T., Robert J.M., Diatom cultivation and biotechnologically relevant products. Part II: Сurrent and putative
products // Appl. Microbiol. Biotechnol. -2003. - Vol. 60, №6. - P. 624-632.

7 Tantanasarit C., Englande A.J., Babel S. Nitrogen, phosphorus and silicon uptake kinetics by marine diatom
Chaetoceros calcitrans under high nutrient concentrations // J. Exp. Marine Biol. аnd Ecol. - 2013. - Vol. 446. - P. 67-
75.

8 Anantharaj K., Govindasamy C., Natanamurugaraj G., Jeyachandran S. Effect of heavy metals on marine diatom
Amphora coffeaeformis (Agardh. Kutz) // Global journal of environmental research. - 2011. - Vol. 5. - № 3. - P. 112-117.

9 Jamali A.A., Akbari F., Ghorakhlu M. M., de la Guardia M., et.al. Applications of diatoms as potential microalgae
in nanobiotechnology // BioImpacts. - 2012. - Vol. 2. - P. 83-89

10 Supriya G., Ramachandra T.V. Chronicle of marine diatom culturing techniques // Ind. journ. of Fund. and
Applied Life sciences. - 2011. - Vol. 1, № 3. – Р. 282-294

11 Mohan N., Rajaram M.G., Baskara Boopathy A., Rengasamy R. Biomass and lipid production of marine diatom
Amphiprora paludosa W.Smith. at different nutrient concentrations // J. Algal Biomass Utilization. - 2012. - Vol. 3,№4. - P. 52-59.

12 Забелина М.М., Киселев И.А., Прошкина-Лавренко А.И, Шешукова В.С. Диатомовые водоросли. - М.:Советская наука. - 1951. - 618 с.

13 Guillard R.R.L., Lorenzen C.J. Yellow green algae with chlorophyllide c // J. Phycol. - 1972. - Vol. 1, №4. -Р.10-14.

14 Cohn S.A., Pickett-Heaps J.D. The effects of colchicine and dinitrophenol on the in vivo rates of anaphase A
and B in the diatom Surirella // Eur. J. Cell. Biol. – 1988. - Р. 523-530.

15 Сиренко Л.А., Сакевич А.И., Осипов Л.Ф. Методы физиолого-биохимического исследования
водорослей в гидробиологической практике. - Киев: «Наукова думка», 1975. - 245 с.

16 Jeffrey S.W., Humphrey G.F. New spectrophotometric equations for determining chlorophylls a, b, c1 and c2
in higher plants, algae and natural phytyplankton // Biochem. Pflanz. - 1975. - № 167. - P. 191-194.

17 Кейтс М. Техника липидологии. - М.: Мир, 1975. - 234 с.

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