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基因组范围内调查参与柑橘青霉对 imazalil 抗性的 DNA 元件和 ABC 转运蛋白。

Genomewide investigation into DNA elements and ABC transporters involved in imazalil resistance in Penicillium digitatum.

机构信息

Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Biotechnology, Zhejiang University, Hangzhou, Zhejiang, China.

出版信息

FEMS Microbiol Lett. 2013 Nov;348(1):11-8. doi: 10.1111/1574-6968.12235. Epub 2013 Sep 2.

Abstract

Penicillium digitatum, causing citrus green mold, is one of the most devastating pathogenic fungi for postharvest fruits. The disease control is becoming less efficient because of the dispersal of fungicide-resistant strains. However, genome-scale analyses of its resistance mechanism are scarce. In this work, we sequenced the whole genome of the R1 genotype strain Pd01-ZJU and investigated the genes and DNA elements highly associated with drug resistance. Variation in DNA elements related to drug resistance between P. digitatum strains was revealed in both copy number and chromosomal location, indicating that their recent and frequent translocation might have contributed to environmental adaptation. In addition, ABC transporter proteins in Pd01-ZJU were characterized, and the roles of typical subfamilies (ABCG, ABCC, and ABCB) in imazalil resistance were explored using real-time PCR. Seven ABC proteins, including the previously characterized PMR1 and PMR5, were induced by imazalil, which suggests a role in drug resistance. In summary, this work presents genome information of the R1 genotype P. digitatum and systematically investigates DNA elements and ABC proteins associated with imazalil resistance for the first time, which would be indicative for studying resistant mechanisms in other pathogenic fungi.

摘要

桔青霉(Penicillium digitatum)是一种破坏性极强的病原菌,可导致柑橘绿霉病,是采后水果的主要致病菌之一。由于抗药性菌株的传播,杀菌剂的防治效果越来越差。然而,其抗药性机制的全基因组分析还很少见。在这项工作中,我们对 R1 基因型菌株 Pd01-ZJU 的全基因组进行了测序,并研究了与耐药性高度相关的基因和 DNA 元件。桔青霉菌株中与耐药性相关的 DNA 元件在数量和染色体位置上都存在差异,表明它们最近频繁发生的易位可能有助于环境适应。此外,我们还对 Pd01-ZJU 中的 ABC 转运蛋白进行了表征,并通过实时 PCR 探讨了典型亚家族(ABCG、ABCC 和 ABCB)在咪鲜胺抗性中的作用。包括先前表征的 PMR1 和 PMR5 在内的 7 种 ABC 蛋白被咪鲜胺诱导,这表明它们在耐药性中发挥作用。综上所述,本研究提供了 R1 基因型桔青霉的基因组信息,并首次系统地研究了与咪鲜胺抗性相关的 DNA 元件和 ABC 蛋白,这将有助于研究其他病原菌的耐药机制。

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