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Dual transcriptional profiling of a bacterial/fungal confrontation: Collimonas fungivorans versus Aspergillus niger

机译:细菌/真菌对峙的双重转录分析:真菌天蛾与黑曲霉

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摘要

Interactions between bacteria and fungi cover a wide range of incentives, mechanisms and outcomes. The genus Collimonas consists of soil bacteria that are known for their antifungal activity and ability to grow at the expense of living fungi. In non-contact confrontation assays with the fungus Aspergillus niger, Collimonas fungivorans showed accumulation of biomass concomitant with inhibition of hyphal spread. Through microarray analysis of bacterial and fungal mRNA from the confrontation arena, we gained new insights into the mechanisms underlying the fungistatic effect and mycophagous phenotype of collimonads. Collimonas responded to the fungus by activating genes for the utilization of fungal-derived compounds and for production of a putative antifungal compound. In A. niger, differentially expressed genes included those involved in lipid and cell wall metabolism and cell defense, which correlated well with the hyphal deformations that were observed microscopically. Transcriptional profiles revealed distress in both partners: downregulation of ribosomal proteins and upregulation of mobile genetic elements in the bacteria and expression of endoplasmic reticulum stress and conidia-related genes in the fungus. Both partners experienced nitrogen shortage in each other's presence. Overall, our results indicate that the Collimonas/Aspergillus interaction is a complex interplay between trophism, antibiosis and competition for nutrients.
机译:细菌和真菌之间的相互作用涉及多种诱因,机制和结果。 Collimonas属由土壤细菌组成,这些土壤细菌以其抗真菌活性和生长能力而闻名,但以活真菌为代价。在与黑曲霉菌进行的非接触对抗试验中,Collimonas fungivorans表现出生物量的积累,同时抑制了菌丝的扩散。通过对峙领域细菌和真菌mRNA的微阵列分析,我们获得了对准直虫的真菌作用和霉菌表型潜在机制的新见解。 Collimonas通过激活基因来利用真菌衍生的化合物并产生推定的抗真菌化合物,从而对真菌作出反应。在黑曲霉中,差异表达的基因包括参与脂质和细胞壁代谢以及细胞防御的基因,这些基因与在显微镜下观察到的菌丝变形密切相关。转录谱显示双方都感到困扰:核糖体蛋白的下调和细菌中可移动遗传元件的上调以及真菌中内质网应激和分生孢子相关基因的表达。双方在彼此的同伴中都经历了氮的短缺。总的来说,我们的结果表明,Collimonas /曲霉菌的相互作用是营养,抗微生物和营养竞争之间的复杂相互作用。

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