ATING YUNIARTI
Department of Aquaculture, Faculty of Fisheries and Marine Science, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia

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Application of wheat flour (Triticum aestivum) on spore density and sporulation efficiency of Bacillus megaterium isolated from Litopenaeus vannamei gastrointestinal tract I MADE DEDI MAHARIAWAN; WAHYU ENDRA KUSUMA; ATING YUNIARTI; M.A.G. BELTRAN; ANIK MARTINAH HARIATI
Biodiversitas Journal of Biological Diversity Vol. 22 No. 9 (2021)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d220914

Abstract

Abstract. Mahariawan IMD, Kusuma WE, Yuniarti A, Beltran MAG, Hariati AM. 2021. Application of wheat flour (Triticum aestivum) on spore density and sporulation efficiency of Bacillus megaterium isolated from Litopenaeus vannamei gastrointestinal tract. Biodiversitas 22: 3709-3715. Bacillus megaterium is frequently used in fish farming, such as white shrimp (Litopenaeus vannamei) pond, which can produce spores with high stability in its implementation. Currently, spore production still requires the availability of high-cost carbon sources. The objective of this research was to evaluate the effect of different wheat flour doses on spore density and sporulation efficiency of B. megaterium BM1. In flasks, 50 mL of each test medium was treated with different doses of wheat (10, 20, 30 and 40 g. L-1, respectively) and glucose was used as a control. Each treatment was inoculated with B. megaterium BM1 (2.6 x 108 CFU. mL-1) and incubated in a shaker incubator (120 rpm) at 37 °C for 120 hours. The results showed that the highest vegetative cell concentration (17 x 108 CFU. mL-1), growth rate (0.8 hour-1) and spore (14.7 x 108 spores. mL-1) were found in the wheat flour dose of 30 g. L-1. Furthermore, the highest sporulation efficiency was achieved at 20 g. L-1 of wheat (91.30%) and germination should be done at a dose less than 40 g. L-1. The size of the spores was 1.35-1.39 µm. Thus, 30 g. L-1 of wheat flour is a potential dose to produce spore for probiotic candidates.  
Squalene-producing thraustochytrids isolated from mangrove habitats in the Sidoarjo District, Indonesia, and the antioxidant activity of the isolated strain NASRULLAH BAI ARIFIN; MUHAMMAD FAKHRI; ATING YUNIARTI; MUHAMMAD MUSA; ANIK MARTINAH HARIATI
Biodiversitas Journal of Biological Diversity Vol. 26 No. 4 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260446

Abstract

Abstract. Arifin NB, Fakhri M, Yuniarti A, Musa M, Hariati AM. 2025. Squalene-producing thraustochytrids isolated from mangrove habitats in the Sidoarjo District, Indonesia, and the antioxidant activity of the isolated strain. Biodiversitas 26: 1975-1982. Squalene, a polyunsaturated triterpenic hydrocarbon, is commonly used in the pharmaceutical, cosmetic, and nutraceutical industries because of its antioxidant and anti-inflammatory properties; however, traditional sources such as deep-sea shark liver oil and plant-based alternatives such as the olive Olea europaea present sustainability challenges. This study aimed to isolate and characterize squalene-producing thraustochytrids from mangrove habitats in Sidoarjo, Indonesia, and evaluate their potential antioxidant activity. Isolation was performed from fallen mangrove leaves and was identified based on morphological and molecular analysis using 18S rRNA sequencing. The lipid and squalene contents were quantified through solvent extraction and high-performance liquid chromatography, whereas the antioxidant activity was assessed using the DPPH radical scavenging assay. A total of 14 strains were successfully isolated, which showed cell morphologies including circular and/or ameboid-like shapes and the presence of tetrad cell division. Molecular analysis showed that all isolates were close to the genus Aurantiochytrium. Seven of the isolated strains exhibited high lipid contents (>35% of dry cell weight). Among these strains, AB12 produced the highest lipid content (54.77%), whereas AB14 exhibited the highest squalene yield (2.18 mg g?1 dry cell weight). Antioxidant analysis revealed that lipid extracts from AB12 displayed significant radical scavenging activity, outperforming pure squalene, thereby indicating potential synergistic effects with other bioactive compounds. These Indonesian mangrove-derived isolates represent a promising alternative for sustainable squalene production, addressing the limitations of conventional sources. This study provides novel insights into squalene-producing Aurantiochytrium strains from Indonesian mangrove forests.