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高产生产除草性噻枯菌素及其类似物在非致病链霉菌菌株中。

High-Yield Production of Herbicidal Thaxtomins and Thaxtomin Analogs in a Nonpathogenic Streptomyces Strain.

机构信息

Department of Medicinal Chemistry, Center for Natural Products, Drug Discovery and Development, University of Florida, Gainesville, Florida, USA.

Department of Plant Pathology, Institute of Food and Agricultural Sciences, University of Florida, Gainesville, Florida, USA.

出版信息

Appl Environ Microbiol. 2018 May 17;84(11). doi: 10.1128/AEM.00164-18. Print 2018 Jun 1.

Abstract

Thaxtomins are virulence factors of most plant-pathogenic strains. Due to their potent herbicidal activity, attractive environmental compatibility, and inherent biodegradability, thaxtomins are key active ingredients of bioherbicides approved by the U.S. Environmental Protection Agency. However, the low yield of thaxtomins in native producers limits their wide agricultural applications. Here, we describe the high-yield production of thaxtomins in a heterologous host. The thaxtomin gene cluster from 87.22 was cloned and expressed in J1074 after chromosomal integration. The production of thaxtomins and nitrotryptophan analogs was observed using liquid chromatography-mass spectrometry (LC-MS) analysis. When the engineered J1074 was cultured in the minimal medium Thx defined medium supplemented with 1% cellobiose (TDMc), the yield of the most abundant and herbicidal analog, thaxtomin A, was 10 times higher than that in 87.22, and optimization of the medium resulted in the highest yield of thaxtomin analogs at about 222 mg/liter. Further engineering of the thaxtomin biosynthetic gene cluster through gene deletion led to the production of multiple biosynthetic intermediates important to the chemical synthesis of new analogs. Additionally, the versatility of the thaxtomin biosynthetic system in J1074 was capitalized on to produce one unnatural fluorinated analog, 5-fluoro-thaxtomin A (5-F-thaxtomin A), whose structure was elucidated by a combination of MS and one-dimensional (1D) and 2D nuclear magnetic resonance (NMR) analyses. Natural and unnatural thaxtomins demonstrated potent herbicidal activity in radish seedling assays. These results indicated that J1074 has the potential to produce thaxtomins and analogs thereof with high yield, fostering their agricultural applications. Thaxtomins are agriculturally valuable herbicidal natural products, but the productivity of native producers is limiting. Heterologous expression of the thaxtomin gene cluster in J1074 resulted in the highest yield of thaxtomins ever reported, representing a significant leap forward in its wide agricultural use. Furthermore, current synthetic routes to thaxtomins and analogs are lengthy, and two thaxtomin biosynthetic intermediates produced at high yields in this work can provide precursors and building blocks to advanced synthetic routes. Importantly, the production of 5-F-thaxtomin A in engineered J1074 demonstrated a viable alternative to chemical methods in the synthesis of new thaxtomin analogs. Moreover, our work presents an attractive synthetic biology strategy to improve the supply of herbicidal thaxtomins, likely finding general applications in the discovery and production of many other bioactive natural products.

摘要

Thaxtomins 是大多数植物病原菌株的毒力因子。由于其强大的除草活性、吸引人的环境相容性和固有的生物降解性,thaxtomins 是美国环境保护署批准的生物除草剂的关键活性成分。然而,天然生产者中 thaxtomins 的产量低限制了其在农业上的广泛应用。在这里,我们描述了在异源宿主中 thaxtomins 的高产生产。从 87.22 中克隆了 thaxtomin 基因簇,并在染色体整合后在 J1074 中表达。使用液相色谱-质谱(LC-MS)分析观察到 thaxtomins 和硝基色氨酸类似物的产生。当工程化的 J1074 在补充了 1%纤维二糖(TDMc)的最小培养基 Thx 定义培养基中培养时,最丰富和除草类似物 thaxtomin A 的产量比 87.22 高 10 倍,并且通过优化培养基,thaxtomin 类似物的产量最高约为 222mg/L。通过基因缺失进一步工程化 thaxtomin 生物合成基因簇,导致产生了对新类似物化学合成很重要的多种生物合成中间体。此外,J1074 中 thaxtomin 生物合成系统的多功能性被利用来生产一种非天然氟化类似物,5-氟-thaxtomin A(5-F-thaxtomin A),其结构通过 MS 与一维(1D)和二维(2D)核磁共振(NMR)分析的组合来阐明。天然和非天然 thaxtomins 在萝卜幼苗测定中表现出很强的除草活性。这些结果表明,J1074 具有高产生产 thaxtomins 和类似物的潜力,促进了它们在农业上的应用。Thaxtomins 是具有农业价值的除草天然产物,但天然生产者的生产力有限。在 J1074 中异源表达 thaxtomin 基因簇导致了迄今为止报道的最高 thaxtomin 产量,这是其在广泛农业用途中的重大飞跃。此外,目前合成 thaxtomins 和类似物的路线很长,本工作中以高产生产的两种 thaxtomin 生物合成中间体可为高级合成路线提供前体和构建块。重要的是,在工程化的 J1074 中生产 5-F-thaxtomin A 为新 thaxtomin 类似物的合成提供了一种替代化学方法的可行方法。此外,我们的工作提出了一种有吸引力的合成生物学策略来改善除草 thaxtomins 的供应,可能会在许多其他生物活性天然产物的发现和生产中找到普遍应用。

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