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Transcriptome of different fruiting stages in the cultivated mushroom Cyclocybe aegerita suggests a complex regulation of fruiting and reveals enzymes putatively involved in fungal oxylipin biosynthesis

机译:栽培蘑菇CycARCybe Aegerita的不同结果阶段的转录组表明,对果实的复杂调节,揭示了患有真菌oxylipin生物合成的酶

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Cyclocybe aegerita (syn. Agrocybe aegerita) is a commercially cultivated mushroom. Its archetypal agaric morphology and its ability to undergo its whole life cycle under laboratory conditions makes this fungus a well-suited model for studying fruiting body (basidiome, basidiocarp) development. To elucidate the so far barely understood biosynthesis of fungal volatiles, alterations in the transcriptome during different developmental stages of C. aegerita were analyzed and combined with changes in the volatile profile during its different fruiting stages. A transcriptomic study at seven points in time during fruiting body development of C. aegerita with seven mycelial and five fruiting body stages was conducted. Differential gene expression was observed for genes involved in fungal fruiting body formation showing interesting transcriptional patterns and correlations of these fruiting-related genes with the developmental stages. Combining transcriptome and volatilome data, enzymes putatively involved in the biosynthesis of C8 oxylipins in C. aegerita including lipoxygenases (LOXs), dioxygenases (DOXs), hydroperoxide lyases (HPLs), alcohol dehydrogenases (ADHs) and ene-reductases could be identified. Furthermore, we were able to localize the mycelium as the main source for sesquiterpenes predominant during sporulation in the headspace of C. aegerita cultures. In contrast, changes in the C8 profile detected in late stages of development are probably due to the activity of enzymes located in the fruiting bodies. In this study, the combination of volatilome and transcriptome data of C. aegerita revealed interesting candidates both for functional genetics-based analysis of fruiting-related genes and for prospective enzyme characterization studies to further elucidate the so far barely understood biosynthesis of fungal C8 oxylipins.
机译:Cyclocybe Aegerita(SYN。AGROCYBE AEGERITA)是商业栽培的蘑菇。它的原型伞形形态及其在实验室条件下进行其整个生命周期的能力使得这种真菌能够研究果实(底漆,巴斯迪科普)发展的良好模型。为了阐明到目前为止勉强理解真菌挥发物的生物合成,分析了C.Aegerita的不同发育阶段的转录组中的改变,并与其不同的结果阶段的挥发性曲线的变化结合。在C.Aegerita的结果开发期间,在七分之一的七分霉菌和五种果实阶段进行的转录组研究。对于参与真菌果实形成的基因,观察到差异基因表达,显示出有趣的转录模式和这些结果相关基因与发育阶段的相关性。组合转录组和波动组数据,鉴于C.Aegerita中C8氧化铟镁的生物合成中的酶组合,包括脂氧基酶(LOXS),二氧基酶(DOX),氢过氧化物酶(HPLS),醇脱氢酶(ADH)和烯还原酶。此外,我们能够将菌丝体本地化为在C.Aegerita培养物的顶部空间中孢子中的孢子萜烯的主要来源。相反,在发育后期阶段检测到的C8曲线的变化可能是由于位于果实中的酶活性的可能性。在该研究中,C.Aegerita的挥发物组和转录组数据的组合揭示了对结果遗传学的基于功能遗传学的分析以及前瞻性酶表征研究的有趣候选者,以进一步阐明迄今为止的真菌C8氧基普林的生物合成。

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