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解析梨火疫病菌对唑类药物和丰原素脂肽敏感性降低的机制。

Deciphering the mechanisms involved in reduced sensitivity to azoles and fengycin lipopeptide in Venturia inaequalis.

机构信息

JUNIA, UMRt BioEcoAgro 1158-INRAE, Plant Secondary Metabolites Team, Charles Viollette Institute, Lille F-59000, France; University of Lille, UMRt BioEcoAgro 1158-INRAE, Microbial Secondary Metabolites team, Charles Viollette Institute, Lille F-59000, France; University of Liège, UMRt BioEcoAgro 1158-INRAE, Microbial Secondary Metabolites team, TERRA Teaching and Research Centre, Gembloux Agro-Bio Tech, Gembloux B-5030, Belgium.

JUNIA, UMRt BioEcoAgro 1158-INRAE, Plant Secondary Metabolites Team, Charles Viollette Institute, Lille F-59000, France.

出版信息

Microbiol Res. 2024 Sep;286:127816. doi: 10.1016/j.micres.2024.127816. Epub 2024 Jun 27.

Abstract

Apple scab, caused by the hemibiotrophic fungus Venturia inaequalis, is currently the most common and damaging disease in apple orchards. Two strains of V. inaequalis (S755 and Rs552) with different sensitivities to azole fungicides and the bacterial metabolite fengycin were compared to determine the mechanisms responsible for these differences. Antifungal activity tests showed that Rs552 had reduced sensitivity to tebuconazole and tetraconazole, as well as to fengycin alone or in a binary mixture with other lipopeptides (iturin A, pumilacidin, lichenysin). S755 was highly sensitive to fengycin, whose activity was close to that of tebuconazole. Unlike fengycin, lipopeptides from the iturin family (mycosubtilin, iturin A) had similar activity on both strains, while those from the surfactin family (lichenysin, pumilacidin) were not active, except in binary mixtures with fengycin. The activity of lipopeptides varies according to their family and structure. Analyses to determine the difference in sensitivity to azoles (which target the CYP51 enzyme involved in the ergosterol biosynthesis pathway) showed that the reduced sensitivity in Rs552 is linked to (i) a constitutive increased expression of the Cyp51A gene caused by insertions in the upstream region and (ii) greater efflux by membrane pumps with the involvement of ABC transporters. Microscopic observations revealed that fengycin, known to interact with plasma membranes, induced morphological and cytological changes in cells from both strains. Sterol and phospholipid analyses showed a higher level of ergosta-7,22-dien-3-ol and a lower level of PI(C16:0/C18:1) in Rs552 compared with S755. These differences could therefore influence the composition of the plasma membrane and explain the differential sensitivity of the strains to fengycin. However, the similar antifungal activities of mycosubtilin and iturin A in the two strains indirectly indicate that sterols are probably not involved in the fengycin resistance mechanism. This leads to the conclusion that different mechanisms are responsible for the difference in susceptibility to azoles or fengycin in the strains studied.

摘要

苹果黑星病是由半活体真菌梨形孢引起的,是目前苹果园中最常见和最具破坏性的病害。为了确定导致这些差异的机制,比较了两种对唑类杀菌剂和细菌代谢产物丰素具有不同敏感性的梨形孢(S755 和 Rs552)菌株。抗真菌活性测试表明,Rs552 对戊唑醇和三唑酮的敏感性降低,单独使用丰素或与其他脂肽(iturin A、pumilacidin、lichenysin)的二元混合物也是如此。S755 对丰素高度敏感,其活性接近戊唑醇。与丰素不同,来自iturin 家族的脂肽(mycosubtilin、iturin A)对两种菌株的活性相似,而来自 surfactin 家族的脂肽(lichenysin、pumilacidin)则没有活性,除非与丰素形成二元混合物。脂肽的活性因其家族和结构而异。对唑类(靶向参与麦角固醇生物合成途径的 CYP51 酶)敏感性差异的分析表明,Rs552 敏感性降低与(i)上游区域插入导致 Cyp51A 基因组成型过表达和(ii)膜泵的外排增加有关,涉及 ABC 转运蛋白。显微镜观察表明,丰素已知与质膜相互作用,诱导两种菌株细胞的形态和细胞学变化。甾醇和磷脂分析表明,与 S755 相比,Rs552 中的麦角甾-7,22-二烯-3-醇水平较高,PI(C16:0/C18:1)水平较低。因此,这些差异可能会影响质膜的组成,并解释菌株对丰素的敏感性差异。然而,两种菌株中 mycosubtilin 和 iturin A 的相似抗真菌活性间接表明,甾醇可能不参与丰素抗性机制。这得出结论,不同的机制导致研究菌株对唑类或丰素的敏感性不同。

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