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Chlamydospore Formation during Hyphal Growth in Cryptococcus neoformans

机译:新型隐球菌菌丝生长过程中的衣原体形成

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Cryptococcus neoformans, a basidiomycetous fungal pathogen, infects hosts through inhalation and can cause fatal meningoencephalitis in individuals if untreated. This fungus undergoes a dimorphic transition from yeast to filamentous growth during mating and monokaryotic fruiting, which leads to the production of hyphae and airborne infectious basidiospores. Here we characterized a novel morphological feature associated with the filamentous stages of the life cycle of C. neoformans which resembles resting or survival structures known as chlamydospores in other fungi. The C. neoformans chlamydospore-like structure is rich in glycogen, suggesting that it might have a role as an energy store. However, characterization of mutants with decreased or increased levels of glycogen production showed that glycogen levels have little effect on filamentous growth, sporulation, or chlamydospore formation. These results suggest that the formation of chlamydospores is independent of glycogen accumulation level. We also show that chlamydospore formation does not require successful sporulation and that the presence of chlamydospores is not sufficient for sporulation. Although the biological functions of chlamydospores remain to be established for this pathogenic fungus, their formation appears to be an integral part of the filamentation process, suggesting that they could be necessary to support sexual sporulation under adverse conditions and thereby facilitate the production of infectious basidiospores or long-term survival propagules in harsh environments.
机译:新型隐球菌是担子菌的真菌病原体,通过吸入感染宿主,如果不及时治疗,可能导致致命的脑膜脑炎。这种真菌在交配和单核生果过程中经历了从酵母到丝状生长的双态转变,这导致了菌丝和空气传播的担子孢子的产生。在这里,我们描述了与 C生命周期的丝状阶段相关的新形态特征。新菌,类似于其他真菌中称为衣原体孢子的静止或存活结构。 C。新甲虫的衣原体状结构富含糖原,表明它可能具有储能作用。但是,表征糖原产生水平降低或增加的突变体表明,糖原水平对丝状生长,孢子形成或衣原体孢子形成几乎没有影响。这些结果表明,衣原体的形成与糖原积累水平无关。我们还表明,衣原体的形成并不需要成功的孢子形成,而衣原体的存在还不足以形成孢子。尽管衣原体的生物学功能尚待确定,但其形成似乎是丝状化过程不可或缺的一部分,这表明在不利条件下它们可能是支持性孢子形成所必需的,从而促进了传染性担子孢子的产生。恶劣环境下的长期生存繁殖。

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