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Biology subjects

Sari, M. N.

Publications and source records attributed to Sari, M. N..

2 recordsLinked to original sources

Anticancer potential of soil-associated actinobacterium DHE 6-7 isolated from Enggano Island, Indonesia

The growing demand for pharmaceuticals has driven a shift towards developing medicinal products through bioprospecting by utilising sustainable sources. This involves exploring the potential of beneficial bacteria, such as Actinobacteria, known for producing diverse secondary metabolites with medicinal applications. In a previous study, 422 Actinobacteria were successfully isolated from Lombok, Bali, and Enggano Islands in Indonesia, and subjected to various bioactivity tests. Notably, Isolate DHE 6-7 from Enggano Island showed promising potential as a drug candidate. This study aimed to evaluate anticancer activity of DHE 6-7 isolates in T47D breast cancer cell lines and pinpoint the key metabolite contributing to its anticancer activity. The secondary metabolites from the DHE 6-7 culture were extracted using ethyl acetate by liquid-liquid extraction and its bioactive compound was analysed using thin layer chromatography. Subsequently, the extract underwent cytotoxic and antiproliferative assays in T47D cells. While Actinomycin-D was previously identified as a major bioactive compound in methanolic extract of DHE 6-7 isolate, this study confirmed that ethyl acetate extraction was able to retain the Actinomycin-D content from DHE 6-7 isolate. Interestingly however, the ethyl acetate extract of DHE 6-7 (EAE of DHE 6-7) showed superior cytotoxic activity in T47D cells compared to actinomycin-D alone. This may suggest the contribution of additional secondary metabolites in the EAE of DHE 6-7 to its anticancer activity. Notably, the combination of the EAE of DHE 6-7 isolate and 5-FU (5-fluorouracil) exhibited a synergistic effect, indicating the potential use of these compound(s) as a co-chemotherapeutic agent.

microbiology↗

Influence of past climate changes and human-mediated introduction on patterns of genetic diversity distribution of the Papuan nutmeg (Myristica argentea) Warb.

Understanding the distribution of genetic diversity of endemic food tree species holds significant importance for conservation planning and the formulation of effective management strategies. Natural and anthropogenic factors can influence species geographic range and distribution of genetic diversity. Here, we tested the relative influence of barriers to gene flow (rivers, mountains and past climate change) and recent human activities on the evolutionary history of an endemic species from Fakfak district, Papua Island, Myristica argentea Warb (Myristicaceae), better known as Papuan nutmeg. Myristica argentea is a spice tree species used by local populations since centuries/millennia. The species has been introduced in other locations from the region. Fourteen microsatellite markers (nSSRs), whole chloroplast (cp) genome, and nuclear-targeted sequence genes (nrDNA sequence) were used to characterize the genetic diversity, population structure, and demographic history of the species across its distribution range (native and introduced populations). We found that native populations of the species in Fakfak present higher levels of genetic diversity than introduced populations. We further detected the presence of a moderate genetic structure (FST = 0.143), and the presence of three intraspecific genetic clusters. Additionally, our findings indicate that population fragmentation within the native range of the species in Fakfak, may have been influenced by the presence of riparian networks, mountain ranges and by Pleistocene climatic fluctuations. Our results suggest that all introduced populations were sourced mainly from the native population of Raduria, in the South of Fakfak region. Given the population genetic variation across the ranges of Papuan nutmeg, management plans should not treat them as single populations, but rather consider the broader genetic diversity within its range.

evolutionary biology↗