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Gene Replacement for the Generation of Designed Novel Avermectin Derivatives with Enhanced Acaricidal and Nematicidal Activities

机译:基因置换产生具有增强的杀螨和杀线虫活性的设计新型阿维菌素衍生物

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Avermectin (AVM) and ivermectin (IVM) are potent pesticides and acaricides which have been widely used during the past 30 years. As insect resistance to AVM and IVM is greatly increasing, alternatives are urgently needed. Here, we report two novel AVM derivatives, tenvermectin A (TVM A) and TVM B, which are considered a potential new generation of agricultural and veterinary drugs. The molecules of the TVMs were designed based on structure and pharmacological property comparisons among AVM, IVM, and milbemycin (MBM). To produce TVMs, a genetically engineered strain, MHJ1011, was constructed from Streptomyces avermitilis G8-17, an AVM industrial strain. In MHJ1011, the native aveA1 gene was seamlessly replaced with milA1 from Streptomyces hygroscopicus. The total titer of the two TVMs produced by MHJ1011 reached 3,400 mg/liter. Insecticidal tests proved that TVM had enhanced activities against Tetranychus cinnabarinus and Bursaphelenchus xylophilus, as desired. This study provides a typical example of exploration for novel active compounds through a new method of polyketide synthase (PKS) reassembly for gene replacement. The results of the insecticidal tests may be of use in elucidating the structure-activity relationship of AVMs and MBMs.
机译:阿维菌素(AVM)和伊维菌素(IVM)是有效的杀虫剂和杀螨剂,在过去的30年中被广泛使用。随着昆虫对AVM和IVM的抵抗力大大提高,迫切需要替代品。在这里,我们报告两种新颖的AVM衍生物,tenvermectin A(TVM A)和TVM B,它们被认为是潜在的新一代农业和兽药。根据AVM,IVM和米尔倍霉素(MBM)之间的结构和药理性质比较,设计TVM分子。为了生产TVM,用AVM工业菌株阿维链霉菌G8-17构建了基因工程菌株MHJ1011。在MHJ1011中,天然aveA1基因被吸水链霉菌的milA1无缝替换。 MHJ1011生产的两种TVM的总效价达到3400 mg / L。杀虫试验证明,TVM可根据需要增强对朱砂叶螨和木耳伯氏菌的活性。这项研究为通过基因置换的聚酮化合物合酶(PKS)重组新方法探索新型活性化合物提供了一个典型实例。杀虫试验的结果可用于阐明AVM和MBM的构效关系。

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