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Combined Comparative Genomics and Gene Expression Analyses Provide Insights into the Terpene Synthases Inventory in

机译:结合的比较基因组学和基因表达分析为萜烯合成酶库存提供见解

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摘要

Trichoderma is a fungal genus comprising species used as biocontrol agents in crop plant protection and with high value for industry. The beneficial effects of these species are supported by the secondary metabolites they produce. Terpenoid compounds are key players in the interaction of Trichoderma spp. with the environment and with their fungal and plant hosts; however, most of the terpene synthase (TS) genes involved in their biosynthesis have yet not been characterized. Here, we combined comparative genomics of TSs of 21 strains belonging to 17 Trichoderma spp., and gene expression studies on TSs using T. gamsii T6085 as a model. An overview of the diversity within the TS-gene family and the regulation of TS genes is provided. We identified 15 groups of TSs, and the presence of clade-specific enzymes revealed a variety of terpenoid chemotypes evolved to cover different ecological demands. We propose that functional differentiation of gene family members is the driver for the high number of TS genes found in the genomes of Trichoderma. Expression studies provide a picture in which different TS genes are regulated in many ways, which is a strong indication of different biological functions.
机译:Trichoderma是一种真菌属,包括用作农作物植物保护中的生物控制剂和工业价值高的物种。这些物种对它们产生的次级代谢物支持的有益效果。 Terpenoid化合物是Trichoderma SPP相互作用的关键球员。随着环境和他们的真菌和植物主持人;然而,涉及其生物合成的大多数萜烯合酶(TS)基因尚未表征。在此,我们组合了属于17个Trichoderma SPP的21个菌株的TSS的比较基因组学和使用T.Gamsii T6085作为模型的TSS的基因表达研究。提供了TS-Gene系列中的多样性和TS基因调节的概述。我们确定了15组TSS,并且特异性酶的存在揭示了各种萜类化学物质,以弥补不同的生态需求。我们提出基因家族成员的功能分化是用于在Trichoderma的基因组中发现的大量TS基因的驾驶员。表达研究提供了一种在许多方面调节不同TS基因的图片,这是不同生物功能的强烈指示。

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