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青霉 PdSUT1 参与了柑橘果实感染过程中的杀菌剂敏感性和毒力。

Involvement of Penicillium digitatum PdSUT1 in fungicide sensitivity and virulence during citrus fruit infection.

机构信息

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

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

出版信息

Microbiol Res. 2017 Oct;203:57-67. doi: 10.1016/j.micres.2017.06.008. Epub 2017 Jul 10.

Abstract

A putative sucrose transporter PdSUT1 included in the same clade that Sut1p from Schizosaccharomyces pombe was identified in Penicillium digitatum, the major citrus postharvest pathogen. PdSUT1 gene was characterized using target gene disruption and gene overexpression. The ΔPdSUT1 mutants generated by gene elimination showed reduction in fungal virulence during citrus fruit infection assayed in mature fruit at 20°C. However, the overexpression mutants did not increased disease severity neither in the mutants coming from a high virulent nor from a low virulent P. digitatum progenitor strains. Moreover, fungicide sensitivity was affected in the deletant mutants but not in the overexpression transformants. The expression analysis of several genes involved in fungicide resistance showed an intensification of MFS transporters and a decrease of sterol demethylases transcriptional abundance in the ΔPdSUT1 mutants compare to the parental wild type strain. PdSUT1 appear not to be directly involved in fungicide resistance although can affect the gene expression of fungicide related genes. These results indicate that PdSUT1 contribute to P. digitatum fungal virulence and influence fungicide sensitivity through carbohydrate uptake and MFS transporters gene activation.

摘要

在青霉属中鉴定到了一个假定的蔗糖转运蛋白 PdSUT1,它与裂殖酵母中的 Sut1p 属于同一进化枝。采用靶基因敲除和基因过表达的方法对 PdSUT1 基因进行了特征描述。通过基因消除产生的ΔPdSUT1 突变体在 20°C 下对成熟果实的柑橘果实感染进行测定时,真菌毒力降低。然而,过表达突变体既没有增加高毒力也没有增加低毒力的青霉属原生菌株突变体的疾病严重程度。此外,在缺失突变体中,杀菌剂敏感性受到影响,但在过表达转化体中则没有。参与杀菌剂抗性的几个基因的表达分析表明,与亲本野生型菌株相比,ΔPdSUT1 突变体中 MFS 转运蛋白的表达增强,固醇去甲基酶的转录丰度降低。PdSUT1 似乎不直接参与杀菌剂抗性,尽管它可以影响与杀菌剂相关的基因的基因表达。这些结果表明,PdSUT1 通过碳水化合物摄取和 MFS 转运蛋白基因的激活,有助于青霉属真菌毒力,并影响杀菌剂敏感性。

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