首页> 外文期刊>ACS Chemical Biology >Chemically Induced Cryptic Sesquiterpenoids and Expression of Sesquiterpene Cyclases in Botrytis cinerea Revealed New Sporogenic (+)-4-Epieremophil-9-en-11-ols
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Chemically Induced Cryptic Sesquiterpenoids and Expression of Sesquiterpene Cyclases in Botrytis cinerea Revealed New Sporogenic (+)-4-Epieremophil-9-en-11-ols

机译:化学诱导的隐性倍半萜类化合物和灰葡萄孢中倍半萜环化酶的表达揭示了新的致孔性(+)-4-表观电子蛋白9-en-11-ols

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摘要

The sequencing of the genomes of the B05.10 and T4 strains of the fungus Botrytis cinerea revealed an abundance of novel biosynthetic gene clusters, the majority of which were unexpected on the basis of the previous analyses of the fermentation of these and closely related species. By systematic alteration of easy accessible cultivation parameters, using chemical induction with copper sulfate, we have found a cryptic sesquiterpenoid family with new structures related to eremophil-9-ene, which had the basic structure of the sesquiterpene (+)-5-epiaristolochene ((+)-4-epieremophil-9-ene). An expression study of the sesquiterpene cyclase genes present in the Botrytis cinerea gnome, under culture conditions, is reported. In general, a 3 day delay and a higher BcSTC genes expression were observed when copper (5 ppm) was fed to the fermentation broth. In addition, to the observed effect on the BcBOT2 (BcSTC1) gene, involved in the biosynthesis of the botrydial toxin, a higher expression level for BcSTC3 and BcSTC4 was observed with respect to the control in the strain B05.10. Interestingly, under copper conditions, the BcSTC4 gene was the most expressed gene in the Botrytis cinerea UCA992 strain. In vitro evaluation of the biological role of these metabolites indicates that they contributed to the conidial development in B. cinerea and appear to be involved in self-regulation of the production of asexual spores. Furthermore, they promoted the formation of complex appressoria or infection cushions.
机译:灰葡萄孢菌B05.10和T4菌株的基因组测序显示出大量新的生物合成基因簇,根据先前对这些和密切相关物种发酵的分析,其中大多数是出乎意料的。通过使用硫酸铜的化学诱导系统改变易获得的栽培参数,我们发现了一种神秘的倍半萜类家族,具有与eremophil-9-ene有关的新结构,该结构具有倍半萜(+)-5-epiaristolochene( (+)-4-表麻亲子-9-烯)。据报道,在培养条件下,灰葡萄孢菌中的倍半萜烯环化酶基因的表达研究。通常,将铜(5 ppm)加入发酵液中时,观察到了3天的延迟和较高的BcSTC基因表达。此外,除了观察到对参与芽孢杆菌毒素生物合成的BcBOT2(BcSTC1)基因的影响外,与菌株B05.10中的对照相比,观察到了更高的BcSTC3和BcSTC4表达水平。有趣的是,在铜条件下,BcSTC4基因是灰葡萄孢UCA992菌株中表达最多的基因。这些代谢物的生物学作用的体外评估表明,它们促进了灰质芽孢杆菌的分生孢子发育,并似乎参与了无性孢子生产的自我调节。此外,它们促进了复杂的压迫感或感染垫的形成。

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