首页> 外文OA文献 >Transformation of \u3ci\u3eFusarium verticillioides\u3c/i\u3e with a polyketide gene cluster isolated from a fungal endophyte activates the biosynthesis of fusaric acid
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Transformation of \u3ci\u3eFusarium verticillioides\u3c/i\u3e with a polyketide gene cluster isolated from a fungal endophyte activates the biosynthesis of fusaric acid

机译:用真菌内生菌分离的聚酮化合物基因簇转化vert F F F F F F F F F activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ activ

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摘要

A large number of bioactive natural products have been isolated from plant endophytic fungi. However, molecular mechanisms for the biosynthesis of these metabolites have lagged behind because genetic and biochemical studies are difficult to perform within many of the endophytes. In this work, we describe our attempt to express a putative mycoepoxydiene (MED) biosynthetic gene cluster in Fusarium verticillioides, which has a well-developed genetic system for the study fungal polyketide biosynthesis. MED was isolated from Phomopsis sp. A123, a fungal endophyte of the mangrove plant, Kandelia candel. It has several unusual structural features and interesting biological activities. Integration of this Phomopsis gene cluster into the F. verticillioides genome led to the biosynthesis of multiple metabolites. The most highly activated metabolite was isolated and its structure was shown by 1D- and 2D-NMR to be fusaric acid, which is a mycotoxin in Fusarium species and is implicated in fungal pathogenesis. Although fusaric acid was isolated more than 70 years ago, its biosynthetic mechanism remains unclear. These transformants produced 30–35 mg fusaric acid per 100 ml culture. The high level production of fusaric acid will greatly facilitate the genetic and biochemical study of its biosynthetic mechanism. Although we have not detected MED or its analogs from the heterologous host, this work represents the first attempt to express a fungal endophytic gene cluster in a Fusarium species.
机译:从植物内生真菌中已经分离出许多具有生物活性的天然产物。但是,由于很难在许多内生菌内进行遗传和生化研究,因此这些代谢物生物合成的分子机制已经落后。在这项工作中,我们描述了我们尝试在枯萎病镰刀菌中表达推定的霉菌环氧二烯(MED)生物合成基因簇的尝试,该簇具有研究真菌聚酮化合物生物合成的成熟遗传系统。 MED分离自Phomopsis sp。 A123,红树植物Kandelia candel的真菌内生菌。它具有几种不同寻常的结构特征和有趣的生物学活性。该菌属基因簇整合到拟南芥基因组中导致多种代谢产物的生物合成。分离出活化度最高的代谢产物,并通过1D-NMR和2D-NMR显示其结构为镰孢酸,它是镰刀菌属种中的一种霉菌毒素,与真菌的发病机理有关。尽管富沙酸是70多年前分离出来的,但其生物合成机制仍不清楚。这些转化子每100毫升培养物产生30-35毫克富马酸。富马酸的高产量将极大地促进其生物合成机理的遗传和生化研究。尽管我们尚未从异源宿主中检测到MED或其类似物,但这项工作代表了在镰刀菌属物种中表达真菌内生基因簇的首次尝试。

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