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TrichoGate: An Improved Vector System for a Large Scale of Functional Analysis of Trichoderma Genes

机译:Trichogate:一种改进的richoderma基因功能分析的改进载体系统

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摘要

Species of the genus Trichoderma are ubiquitous in the environment and are widely used in agriculture, as biopesticides, and in the industry for the production of plant cell wall-degrading enzymes. Trichoderma represents an important genus of endophytes, and several Trichoderma species have become excellent models for the study of fungal biology and plant–microbe interactions; moreover, are exceptional biotechnological factories for the production of bioactive molecules useful in agriculture and medicine. Next-generation sequencing technology coupled with systematic construction of recombinant DNA molecules provides powerful tools that contribute to the functional analysis of Trichoderma genetics, thus allowing for a better understanding of the underlying factors determining its biology. Here, we present the creation of diverse vectors containing (i) promoter-specific vectors for Trichoderma, (ii) gene deletions (using hygromycin phosphotransferase as selection marker), (iii) protein localization (mCherry and eGFP, which were codon-optimized for Trichoderma), (iv) gene complementation (neomycin phosphotransferase) and (v) overexpression of encoding gene proteins fused to fluorescent markers, by using the Golden Gate cloning technology. Furthermore, we present the design and implementation of a binary vector for Agrobacterium-mediated transformation in Trichoderma to increase the homologous recombination rate and the generation of a novel selection marker based on carboxin resistance.
机译:Trichoderma属的种类在环境中普遍存在,广泛用于农业,作为生物农药,以及生产植物细胞壁降解酶的行业。 Trichoderma代表了内心生物学和植物微生物相互作用研究的几个richoderma物种的重要模型;此外,对于在农业和医学中产生生物活性分子的生物技术工厂是特殊的生物技术工厂。再加上下一代测序技术与系统构建的重组DNA分子提供了有助于Trichoderma遗传学功能分析的强力工具,从而允许更好地了解确定其生物学的潜在因素。在这里,我们介绍了含有(i)特异性特异性培养物的不同载体的创建,(ii)基因缺失(使用潮霉素磷酸转移酶作为选择标记),(iii)蛋白质定位(MCherry和EGFP,其是密码子优化的Trichoderma),(iv)基因互补(NeoMycin磷酸转移酶)和(v)通过使用金门克隆技术编码与荧光标记物融合的基因蛋白的过表达。此外,我们介绍了Trichoderma中农杆菌介导的转化的二元载体的设计和实现,以增加基于羧蛋白抗性的同源重组率和新颖选择标志物的产生。

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