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Cordyceps, Caterpillar Fungus · 2026 · Research Article

High relevance

Discovery of functional compounds from dimorphic edible Ophiocordyceps sinensis fungus in host haemolymph.

Ophiocordyceps sinensis

Energy & fatigueRespiratory
SpeciesCordyceps, Caterpillar Fungus
JournalSynthetic and systems biotechnology
Year2026

Key points

  • Chinese cordyceps, with a fruiting body of Ophiocordyceps sinensis from insect cadaver, is well-known health food
  • In this study, key metabolites and signaling pathways for blastospore or prehypha development in larval haemolymph were identified
  • Sodium 3-(3,4-dihydroxyphenyl)-2-hydroxypropanoate (Sodium Danshensu), an important compound not only for stimulating the transition of prehyphae from blastospores, but also for anti-cardiovascular and cerebral diseases, and anti-tumor, was discovered
  • PMeOH (18:2/18:2), PMeOH (18:2/18:3), PG (18:1/18:2), and Sodium Danshensu were identified as metabolite biomarkers for pre-hyphae development. l-kynurenine, lysoPC (14:1(9Z)), 2-arachidonyl glycerol ether and dl-methionine sulfoxide were favored by blastospores
  • NAD + and adenosine were regarded as biomarkers for milky fungal cells. 4-methyl-5-thiazoleethanol may inhibit the blastospore-to-prehypha transition
  • Gene expression related to biomarker synthesis was quantified using qRT-PCR, confirming these compounds' regulatory effect on fungal dimorphic transition

Metadata-grounded summary

Citation abstract

Chinese cordyceps, with a fruiting body of Ophiocordyceps sinensis from insect cadaver, is well-known health food. During formation, O. sinensis experiences a dimorphic transition from blastospores to hyphae in Thitarodes host haemolymoph. In this study, key metabolites and signaling pathways for blastospore or prehypha development in larval haemolymph were identified. Sodium 3-(3,4-dihydroxyphenyl)-2-hydroxypropanoate (Sodium Danshensu), an important compound not only for stimulating the transition of prehyphae from blastospores, but also for anti-cardiovascular and cerebral diseases, and anti-tumor, was discovered. PMeOH (18:2/18:2), PMeOH (18:2/18:3), PG (18:1/18:2), and Sodium Danshensu were identified as metabolite biomarkers for pre-hyphae development. l-kynurenine, lysoPC (14:1(9Z)), 2-arachidonyl glycerol ether and dl-methionine sulfoxide were favored by blastospores. NAD + and adenosine were regarded as biomarkers for milky fungal cells. 4-methyl-5-thiazoleethanol may inhibit the blastospore-to-prehypha transition. Biomarkers were quantified by chemical analysis and verified via bioassay. Gene expression related to biomarker synthesis was quantified using qRT-PCR, confirming these compounds' regulatory effect on fungal dimorphic transition. The data provide insight into the metabolic environment for dimorphic transition in O. sinensis and for commercial cultivation of Chinese cordyceps.

Citation

Sun T, Yang Y, Xie J, Rao Z, Han R, Cao L (2026). Discovery of functional compounds from dimorphic edible Ophiocordyceps sinensis fungus in host haemolymph. Synthetic and systems biotechnology https://doi.org/10.1016/j.synbio.2026.03.016 PMID: 42022005

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