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Biology subjects

Hwang, C. Y.

Publications and source records attributed to Hwang, C. Y..

2 recordsLinked to original sources

Community-wide epigenetics provides novel perspectives on the ecology and evolution of marine microbiome

DNA methylation in prokaryotes is involved in many different cellular processes including cell cycle regulation and defense against viruses. To date, most prokaryotic methylation systems have been studied in culturable microorganisms, resulting in a limited understanding of DNA methylation from a microbial ecology perspective. Here, we analyze the distribution patterns of several microbial epigenetics marks in the ocean microbiome through genome-centric metagenomics across all domains of life. We show that overall, DNA methylation can readily be detected across dominant oceanic bacterial, archaeal, and viral populations, and microbial epigenetic changes correlate with population differentiation. Furthermore, our genome-wide epigenetic analysis of Pelagibacter suggests that GANTC, a DNA methyltransferase target motif, is related to the cell cycle and is affected by environmental conditions. Yet, the presence of this motif also partitions the phylogeny of the Pelagibacter phages, possibly hinting at a competitive co-evolutionary history and multiple effects of a single methylation mark. One-Sentence SummaryDNA methylation patterns are associated with ecological changes and virus-host dynamics in the marine microbiome.

microbiology↗

Assessment of Agaricus bisporus Mushroom as Protective Agent Against Ultraviolet Exposure

Mushrooms are versatile materials with applications including but not limited to food, cosmetics, and pharmaceutical industries. In this work, the potential of the common button mushroom, Agaricus bisporus, as a protective agent against ultraviolet exposure was assessed. The assessment was done by investigating the radical scavenging activity, sun protecting capability, and tyrosinase inhibiting properties of Agaricus bisporus ethanolic extract. The extraction was carried out using absolute ethanol as its solvent at low to room temperatures. The bioactive components of the ethanolic extract were analysed for its phenolic and flavonoid contents quantitatively, while other phytochemical agents were analysed qualitatively. The Agaricus bisporus ethanolic extract was found exhibit varying degree of activity in all of the assessment. We found low radical scavenging ability with %RSA IC50 of [~]5456 g/mL, low to moderate sun protecting factor of [~]5.355 at 5000 ppm concentration, and high tyrosinase inhibition property with IC50 of [~]2 g/mL. The high tyrosinase inhibition property was found to correlate with relatively high total phenolic content of [~]1143 mg GAE/100g for Agaricus bisporus and the presence of terpenoid in the ethanolic extract.

biochemistry↗