ArticleWorld journal of microbiology & biotechnology2025
Induced effect of Na
Article in World journal of microbiology & biotechnology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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9 authors.
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Abstract
Metal ions critically regulate microbial secondary metabolism. This study investigated the regulatory roles of metal ions in Shiraia sp. Slf14, an endophytic fungus with exceptional perylenequinone (PQ) biosynthesis capacity. Among eight ions tested, Na⁺, K⁺, Mg²⁺, and high Ca²⁺ (1.0 g/L) markedly enhanced PQ yields, while Mn²⁺, Cu²⁺, Zn²⁺, and Fe³⁺ (≥ 0.5 g/L) exerted strong inhibition. Na⁺ emerged as the optimal elicitor, boosting production to 504.82 ± 8.62 mg/L (+ 57.96%) at 1.0 g/L without cytotoxicity. Na⁺ exhibited concentration- and time-dependent biphasic regulation. Critical innovation was achieved at 4 g/L Na⁺ added on day 4 (early-log phase), maximizing total PQ yield (1836.95 ± 45.21 mg/L, 5.75 × control), while concentrations > 12 g/L or late addition (≥ day 8) suppressed biosynthesis. Component-specific sensitivities were observed among five PQs. Furthermore, Na⁺ activated the calcineurin pathway: stress-induced Cam/Cna triggered calcineurin-mediated Crz1 nuclear translocation, upregulating key PQ genes (pksI, omef, hydroxylase). Concurrent induction of ena1 (Na⁺ exporter) and Ca²⁺-ATPase maintained ion homeostasis. In conclusion, our work pointed out monovalent cations (Na⁺/K⁺) as potent PQ biosynthetic stimulators in filamentous fungi and establish the Na⁺-calcineurin-PQ axis, offering a scalable strategy to overcome production bottlenecks in pharmaceutical PQ manufacturing.
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Registered trials
Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.