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青霉 MFS 转运蛋白在病原菌-果实互作过程中可能发挥不同作用。

Penicilliumdigitatum MFS transporters can display different roles during pathogen-fruit interaction.

机构信息

Instituto Valenciano de Investigaciones Agrarias (IVIA), Centro de Protección Vegetal y Biotecnología, 46113 Moncada, Valencia, Spain.

Instituto Valenciano de Investigaciones Agrarias (IVIA), Centro de Protección Vegetal y Biotecnología, 46113 Moncada, Valencia, Spain.

出版信息

Int J Food Microbiol. 2021 Jan 16;337:108918. doi: 10.1016/j.ijfoodmicro.2020.108918. Epub 2020 Oct 22.

Abstract

Major facilitator superfamily (MFS) comprises a large family of fungal transporters. In this work four Penicillium digitatum MFS transporters named PdMFS2-5 were identified and functionally characterized through gene elimination and gene overexpression with aim of unveil the similarities and differences among members of the same family during pathogen-fruit interaction. Fungal mutants in which each of the MFS transporters were individually deleted, displayed a clear effect on their infective capacity during citrus fruit infection especially in two of them. In contrast, the observed effect on fungicide sensitivity limits PdMFS2 and PdMFS3 as transporters underlying fungicide resistance. Moreover, overexpression transformants confirmed P. digitatum MFS transporters function and PdMFS2 and PdMFS3 were able to confer fungicide resistance to P. digitatum strains originally fungicide sensitive. Gene transcription rate depended on each MFS transporter being PdMFS4 the one with higher gene expression. Transcriptional profiling was similar regardless the P. digitatum strain. The gene expression analysis showed an increase of PdMFSs transcription in all overexpression transformants, particularly in Pd27 strain. Expression analysis carried out during P. digitatum-citrus fruit interaction confirmed the contribution of all PdMFSs, excepting PdMFS5, in fungal virulence. These results indicate that MFS fungal transporters might be part of different processes and can replace other genes functions giving them a very high degree of versatility.

摘要

主要易化超家族(MFS)由大量真菌转运蛋白组成。在这项工作中,鉴定了四个青霉属(Penicillium digitatum)MFS 转运蛋白,分别命名为 PdMFS2-5,并通过基因消除和基因过表达进行了功能表征,旨在揭示同一家族成员在病原菌-果实相互作用过程中的相似性和差异性。在柑橘果实感染过程中,每个 MFS 转运蛋白单独缺失的真菌突变体,对其感染能力有明显影响,尤其是其中两个。相比之下,观察到的对杀真菌剂敏感性的影响限制了 PdMFS2 和 PdMFS3 作为杀真菌剂抗性的转运蛋白。此外,过表达转化体证实了 P. digitatum MFS 转运蛋白的功能,PdMFS2 和 PdMFS3 能够赋予原本对杀真菌剂敏感的 P. digitatum 菌株对杀真菌剂的抗性。基因转录率取决于每个 MFS 转运蛋白,其中 PdMFS4 的基因表达水平最高。转录谱分析无论 P. digitatum 菌株如何都相似。基因表达分析显示,所有过表达转化体中的 PdMFSs 转录都增加了,尤其是在 Pd27 菌株中。在 P. digitatum-柑橘果实相互作用期间进行的表达分析证实了所有 PdMFSs 的作用,除了 PdMFS5,它们都参与了真菌的毒力。这些结果表明,MFS 真菌转运蛋白可能参与不同的过程,并可以替代其他基因的功能,使它们具有非常高的多功能性。

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