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stilbene/kanep

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ArtiklidKliinilistes uuringutesPatendid
5 tulemused

A new biosensor for stilbenes and a cannabinoid enabled by genome mining of a transcriptional regulator.

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In vivo biosensors are powerful tools for metabolic engineering and synthetic biology applications. However, development of biosensors is hindered by the limited number of characterized transcriptional regulators. The versatile sensing abilities of microbes and genome sequences available hold great

Isolation and identification of a cannabinoid-like compound from Amorpha species.

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The petroleum ether extracts from several plants have been screened on the plates with the chromogenic reagent Fast Blue B. salt. Extracts from different plant parts of Amorpha fruticosa, A. nanna, and A. canescens gave several spots with color and Rf values similar to those of Cannabis sativa
UV-C radiation is known to induce metabolic modifications in plants, particularly to secondary metabolite biosynthesis. To assess these modifications from a global and untargeted perspective, the effects of the UV-C radiation of the leaves of three different model plant species, Cissus antarctica
The liverwort Radula marginata belongs to the bryophyte division of land plants and is a prospective alternate source of cannabinoid-like compounds. However, mechanistic insights into the molecular pathways directing the synthesis of these cannabinoid-like compounds have been hindered due to the

PKS activities and biosynthesis of cannabinoids and flavonoids in Cannabis sativa L. plants.

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Polyketide synthase (PKS) enzymatic activities were analyzed in crude protein extracts from cannabis plant tissues. Chalcone synthase (CHS, EC 2.3.1.74), stilbene synthase (STS, EC 2.3.1.95), phlorisovalerophenone synthase (VPS, EC 2.3.1.156), isobutyrophenone synthase (BUS) and olivetol synthase
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