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Global regulation of fungal secondary metabolism in Trichoderma reesei by the transcription factor Ypr1,as revealed by transcriptome analysis
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作者 Jie Yang Jia-Xiang Li +1 位作者 Fei Zhang Xin-Qing Zhao 《Engineering Microbiology》 2023年第2期8-15,共8页
Trichoderma reesei Rut-C-30 is a well-known robust producer of cellulolytic enzymes,which are used to degrade lignocellulosic biomass for the sustainable production of biofuels and biochemicals.However,studies of its ... Trichoderma reesei Rut-C-30 is a well-known robust producer of cellulolytic enzymes,which are used to degrade lignocellulosic biomass for the sustainable production of biofuels and biochemicals.However,studies of its sec-ondary metabolism and regulation remain scarce.Ypr1 was previously described as a regulator of the biosynthesis of the yellow pigment sorbicillin(a bioactive agent with great pharmaceutical interest)in T.reesei and several other fungi.However,the manner in which this regulator affects global gene transcription has not been explored.In this study,we report the effect of Ypr1 on the regulation of both the secondary and primary metabolism of T.reesei Rut-C30.A global gene transcription profile was obtained using a comparative transcriptomic analysis of the wild-type strain T.reesei Rut-C-30 and its ypr1 deletion mutant.The results of this analysis suggest that,in addition to its role in regulating sorbicillin and the major extracellular(hemi)cellulases,Ypr1 also affects the transcription of genes encoding several other secondary metabolites.Although the primary metabolism of T.reeseiΔypr1 became less active compared with that of T.reesei Rut-C-30,several gene clusters involved in its secondary metabolism were activated,such as the gene clusters for the biosynthesis of specific polyketides and non-ribosomal peptides,together with the“sorbicillinoid-cellulase”super cluster,indicating that specific secondary metabolites and cellulases may be co-regulated in T.reesei Rut-C-30.The results presented in this study may benefit the development of genetic engineering strategies for the production of sorbicillin by T.reesei Rut-C-30,and provide insights for enhancing sorbicillin production in other filamentous fungal producers. 展开更多
关键词 Trichoderma reesei Comparative transcriptomic analysis Yellow pigment Sorbicillin ypr1 Gene cluster for secondary metabolism
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里氏木霉Set2通过调控转录因子Ypr1的表达进而控制sorbicillinoids的生物合成
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作者 王磊 刘佳龙 +3 位作者 李晓桐 陆昕 冯焱 解军 《微生物学报》 CAS CSCD 北大核心 2022年第8期3213-3223,共11页
【目的】Sorbicillinoids是里氏木霉合成的一类重要的天然活性物质,具有抗肿瘤、抗氧化及抗病毒等多种生物活性。本研究主要是为了阐明TrSet2在里氏木霉sorbicillinoids合成调控过程中的生物学功能及其作用机制。【方法】基于生物信息... 【目的】Sorbicillinoids是里氏木霉合成的一类重要的天然活性物质,具有抗肿瘤、抗氧化及抗病毒等多种生物活性。本研究主要是为了阐明TrSet2在里氏木霉sorbicillinoids合成调控过程中的生物学功能及其作用机制。【方法】基于生物信息分析技术鉴定里氏木霉TrSet2编码基因。采用基因敲除和过表达手段,分别构建Trset2基因敲除和过表达菌株并评估其sorbicillinoids合成能力。同时在Trset2基因敲除菌株中,过表达转录激活因子Ypr1,明确TrSet2和Ypr1之间的调控关系。【结果】Trset2基因敲除菌株完全丧失了合成sorbicillinoids的能力。相反,过表达Trset2导致sorbicillinoids合成的水平显著增加。进一步研究发现,在Trset2基因敲除菌株中过表达转录激活因子Ypr1逆转了其不能合成sorbicillinoids的表型。【结论】本研究明确了TrSet2在里氏木霉合成sorbicillinoids过程中的正向调控作用,其作用机制是通过控制转录因子Ypr1的表达水平实现的。这为基于调控机理控制里氏木霉发酵过程中sorbicillinoids的产生或构建高水平合成sorbicillinoids的细胞工厂提供了理论依据和指导。 展开更多
关键词 sorbicillinoids 次级代谢 TrSet2 ypr1 里氏木霉
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