Squalen Bulletin of Marine and Fisheries Postharvest and Biotechnology
Vol 19, No 2 (2024): August 2024

Characterization and Potential Utilizations of A Marine Euglenophyte from Okinawa, Japan

Prabowo, Danang Ambar (Unknown)
Suda, Shoichiro (Unknown)



Article Info

Publish Date
31 Aug 2024

Abstract

mong many microalgae species, certain euglenophytes stand out asexcellent sources of valuable natural components with diversebiotechnological applications. This study focused on investigating the identityand potential utilizations of a green marine euglenophyte, namely EKoku01,isolated from the brackish Kokuba River in Naha City, Okinawa, Japan.Morphologically, cells of EKoku01 were 12-30m long and 8-10 m wide,displaying dynamic changes during euglenoid motility with a distinctivelystriated pellicular body. Notable features included two uneven flagella, aneyespot, and multiple green discoid chloroplasts. The 18S rDNA molecularphylogeny positioned Ekoku01 within Clade 1 of Eutreptiella, comprisingstrain CCMP389, CCMP-1594, and LIS 2000, which was distantly related toother known marine euglenophytes (i.e., the genus Eutreptia and Clade 2 ofEutreptiella). Based on the morphology and molecular phylogeny, EKoku01was identified as Eutreptiella sp., representing the first recorded species ofthis genus in Okinawa, Japan. EKoku01 showed an optimum growthperformance at 20 oC (max. =0.17 ± 0.037 day-1) and exhibited an unusuallystrong positive phototaxis response towards a light source. Its fatty acid (FAs)profile comprised predominantly saturated FAs (69.8%), polyunsaturated FAs(15.1%, with two omega-3 FAs), monounsaturated FAs (3.6%), and branchedFAs (4.4%), while ~7.1% remaining unidentified. Based on its growthperformance, FAs composition, and light sensitivity, we proposed severalpotential utilizations of this strain (e.g., as a source for nutraceutical,pharmaceutical, food, and aquaculture applications), including the use ofEKoku01 as a model organism for developing an innovative light-driven cellconcentration system based on phototaxis.

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Journal Info

Abbrev

squalen

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology Environmental Science Immunology & microbiology

Description

Squalen publishes original and innovative research to provide readers with the latest research, knowledge, emerging technologies, postharvest, processing and preservation, food safety and environment, biotechnology and bio-discovery of marine and fisheries. The key focus of the research should be ...