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Metschnikowia pulcherrima and Related Pulcherrimin-Producing Yeasts: Fuzzy Species Boundaries and Complex Antimicrobial Antagonism

机译:Metschnikowia pulcherrima和相关的润滑脂制成酵母:模糊物种界限和复杂的抗菌拮抗作用

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摘要

Yeasts affiliated with the clade (subclade) of the large ascomycetous genus frequently turn out to produce the characteristic maroon-red pulcherrimin when tested for pigment production and prove to exert antagonistic effects on many types of microorganisms. The determination of the exact taxonomic position of the strains is hampered by the shortage of distinctive morphological and physiological properties of the species of the clade and the lack of rDNA barcode gaps. The rDNA repeats of the type strains of the species are not homogenized and are assumed to evolve by a birth-and-death mechanism combined with reticulation. The taxonomic division is further hampered by the incomplete biological (reproductive) isolation of the species: certain type strains can be hybridized and genome sequencing revealed chimeric genome structures in certain strains that might have evolved from interspecies hybrids (alloploid genome duplication). Various mechanisms have been proposed for the antimicrobial antagonism. One is related to pulcherrimin production. The diffusible precursor of pulcherrimin, the pulcherriminic acid is secreted by the cells into the environment where it forms the insoluble pulcherrimin with the ferric ions. The lack of free iron caused by the immobilization of ferric ions inhibits the growth of many microorganisms. Recent results of research into the complexity of the taxonomic division of the pulcherrimin-producing yeasts and the mechanism(s) underlying their antimicrobial antagonism are discussed in this review.
机译:随着大染色属的思想(亚洲)的酵母经常出现在测试颜料生产并证明对许多类型的微生物产生拮抗作用时产生特征氧气红润滑蛋白。菌株的精确分类物理位置的确定因缺失的种类的独特形态学和生理特性以及缺乏rdna条形码空隙而受到阻碍。物质类型的RDNA重复不均质化,并假设通过与网状物结合的出生和死亡机制演变。通过物种的不完全生物学(繁殖)分离进一步阻碍了分类分类:某些类型的菌株可以杂交,并且基因组测序在某些菌株中显示出可能已经从杂交种(单桶组织基因组重复)的某些菌株中的嵌合基因组结构。已经提出了抗微生物拮抗作用的各种机制。一个与润滑油产生有关。润滑蛋白的扩散前体,润氯丙酮酸被细胞分泌到与铁离子形成不溶性润滑脂蛋白的环境中。由氟离子固定引起的自由铁抑制了许多微生物的生长。在本次审查中讨论了普拉金属蛋白产生酵母的分类分类分类的复杂性和其抗菌拮抗作用的机制的最新结果。

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