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Phylogenomic and functional domain analysis of polyketide synthases in iFusarium/i.

机译:i镰刀菌/i中聚酮合酶的系统发育和功能域分析。

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Fusarium species are ubiquitous in nature, cause a range of plant diseases, and produce a variety of chemicals often referred to as secondary metabolites. Although some fungal secondary metabolites affect plant growth or protect plants from other fungi and bacteria, their presence in grain-based food and feed is more often associated with a variety of diseases in plants and in animals. Many of these structurally diverse metabolites are derived from a family of related enzymes called polyketide synthases (PKSs). A search of genomic sequence of Fusarium verticillioides, Fusarium graminearum, Fusarium oxysporum, and Fusarium solani identified a total of 58 PKS genes. To gain insight into how this gene family evolved and to guide future studies, we conducted phylogenomic and functional domain analyses. The resulting geneaology suggested that Fusarium PKSs represent 34 different groups responsible for synthesis of different core metabolites. The analyses indicate that variation in the Fusarium PKS gene family is due to gene duplication and loss events as well as enzyme gain-of-function due to the acquisition of new domains or of loss-of-function due to nucleotide mutations. Transcriptional analysis indicates that the 16 F. verticillioides PKS genes are expressed under a range of conditions, further evidence that they are functional genes that confer the ability to produce secondary metabolites.
机译:镰刀菌属在自然界中无处不在,会引起一系列植物病害,并产生各种通常被称为次生代谢物的化学物质。尽管一些真菌次生代谢物会影响植物生长或保护植物免受其他真菌和细菌的侵害,但它们在谷物食品和饲料中的存在通常与植物和动物的各种疾病有关。这些结构多样化的代谢物中有许多来自称为聚酮合酶 (PKS) 的相关酶家族。对黄萎镰刀菌、禾谷镰刀菌、尖孢镰刀菌和茄镰刀菌基因组序列的检索共发现 58 个 PKS 基因。为了深入了解该基因家族的进化方式并指导未来的研究,我们进行了系统发育和功能域分析。由此产生的谱系学表明,镰刀菌PKSs代表了34个不同的组,负责合成不同的核心代谢物。分析表明,镰刀菌PKS基因家族的变异是由于基因复制和丢失事件以及由于获得新结构域而导致的酶功能获得或由于核苷酸突变导致的功能丧失。转录分析表明,16 个 F. verticillioides PKS 基因在一系列条件下表达,进一步证明它们是赋予产生次级代谢物能力的功能基因。

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