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izvor podataka: crosbi

Characterization of a lipid-producing thermotolerant marine photosynthetic pico-alga in the genus Picochlorum (Trebouxiophyceae) (CROSBI ID 284022)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Mucko, Maja ; Padisák, Judit ; Gligora Udovič, Marija ; Pálmai, Tamás ; Novak, Tihana ; Medić, Nikola ; Gašparović, Blaženka ; Peharec Štefanić, Petra ; Orlić, Sandi ; Ljubešić, Zrinka Characterization of a lipid-producing thermotolerant marine photosynthetic pico-alga in the genus Picochlorum (Trebouxiophyceae) // European journal of phycology, 55 (2020), 4; 384-399. doi: 10.1080/09670262.2020.1757763

Podaci o odgovornosti

Mucko, Maja ; Padisák, Judit ; Gligora Udovič, Marija ; Pálmai, Tamás ; Novak, Tihana ; Medić, Nikola ; Gašparović, Blaženka ; Peharec Štefanić, Petra ; Orlić, Sandi ; Ljubešić, Zrinka

engleski

Characterization of a lipid-producing thermotolerant marine photosynthetic pico-alga in the genus Picochlorum (Trebouxiophyceae)

A new marine strain of picoplanktonic algae, PMPFPPE4, was isolated from a mixed net- phytoplankton sample taken from the upper euphotic layer of the southeastern Adriatic Sea. Evaluation of the new strain included morphological investigation (by light and electron microscopy), phylogenetic analysis (utilizing plastid 16S rRNA and nuclear 18S rRNA genes), and physiological characterization (screening of pigment/lipid composition and capturing photosynthesis measurements). The new strain was proven to belong to the genus Picochlorum and the lipid composition revealed an unexpected accumulation of triacylglycerols, indicating an evolutionary adaptation for growth under unfavourable conditions. In addition, lipid remodelling in the exponential to stationary growth phase was characterized by an increased share of membrane-forming digalactosyldiacylglycerols and phosphatidylcholines. Maximum photosynthetic activity measured was at 30°C, but the most rapid increase of photosynthetic activity was at lower temperatures (15–20°C). Moreover, the thermotolerant strain did not exhibit photoinhibition below 40°C and survived a one- month cultivation period in complete darkness. The strain’s survival in low light and dark conditions suggests a potential shift from autotrophy to mixotrophy under unfavourable growth conditions. Thus, the unique physiological attributes represented by a high growth rate, thermotolerance, phototolerance and high triacylglycerol synthesis may render the strain highly attractive for biofuel production and growth in large outdoor systems.

Morphology ; Picochlorum ; photosynthetic picoeukaryotes ; phylogeny ; physiology

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Podaci o izdanju

55 (4)

2020.

384-399

objavljeno

1469-4433

10.1080/09670262.2020.1757763

Povezanost rada

Interdisciplinarne prirodne znanosti

Poveznice