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首页> 外文期刊>Analytica chimica acta >Applying Parallel Factor Analysis models to HPLC diode array detector datasets reveals strain dependent regulation of polyketide biosynthesis in Fusarium graminearum, Fusarium culmorum and Fusarium pseudograminearum
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Applying Parallel Factor Analysis models to HPLC diode array detector datasets reveals strain dependent regulation of polyketide biosynthesis in Fusarium graminearum, Fusarium culmorum and Fusarium pseudograminearum

机译:将平行因子分析模型应用于HPLC二极管阵列检测器数据集揭示了禾本科镰刀菌,镰刀菌和假镰刀菌中聚酮化合物生物合成的应变依赖性调控

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摘要

Fungal secondary metabolites confer an indiscriminate resource of bioactive compounds with both pharmaceutical and industrial relevance. Synthesis of these compounds is tightly controlled through regulatory networks. These networks act in response to the environmental conditions in which the fungus grows. One class of fungal secondary metabolites that have drawn increased attention, is the polyketides produced by a high number of fungi and bacteria. The increasing number of publicly available genomic sequences of filamentous fungi, combined with new and highly efficient DNA-cloning techniques, has allowed the use of new efficient approaches to study the regulation and synthesis of these compounds. With the availability of new molecular genetic tools, a new bottleneck has occurred in fungal molecular biology; the analytical chemical analysis of the generated transgenic mutants. In this study, a method based on PARAFAC data analysis of HPLC data is presented and shown useful for gaining overview of complex and diverse datasets. Further, the strain specific and nutrient dependent regulation of polyketide synthesis is discussed.
机译:真菌次生代谢产物赋予了具有医学和工业相关性的生物活性化合物无区别的资源。这些化合物的合成是通过调节网络严格控制的。这些网络响应真菌生长的环境条件而起作用。一类引起人们越来越多关注的真菌次生代谢产物是由大量真菌和细菌产生的聚酮化合物。越来越多的丝状真菌基因组序列的公开获得,再加上新的高效DNA克隆技术,已经允许使用新的有效方法来研究这些化合物的调控和合成。随着新的分子遗传工具的出现,真菌分子生物学出现了新的瓶颈。产生的转基因突变体的化学分析。在这项研究中,提出了一种基于PARAFAC数据分析HPLC数据的方法,该方法对获得复杂多样的数据集概述很有用。此外,讨论了聚酮化合物合成的菌株特异性和营养依赖性调节。

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