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Fungal Virulence in a Lepidopteran Model Is an Emergent Property with Deterministic Features

机译:鳞翅目模型中的真菌毒力是具有确定性特征的新兴属性。

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Virulence has been proposed to be an emergent property, which by definition implies that it is not reducible to its components, but this application of a philosophical concept to the host-microbe interaction has not been experimentally tested. The goals of our study were to analyze the correlation of the phenotype with the ability to cause disease and to determine the dynamics of an experimental cryptococcal infection in Galleria mellonella and Acanthamoeba castellanii. By studying the outcome of infection as host death, we showed that the dynamics of virulence in the G.?mellonella/Cryptococcus neoformans interaction follow a predictable pattern. We also found that the experimental temperature and not the presence of virulence factors was a critical parameter defining the pathogenic potential of cryptococcal species. Our results established that cryptococcal species not considered pathogenic could be pathogens given suitable conditions. Our results support the idea that virulence is an emergent property that cannot be easily predicted by a reductionist approach and yet it behaves as a deterministic system in a lepidopteran cryptococcal infection. These findings provide a road map for evaluating whether host-microbe interactions in other systems are chaotic, deterministic, or stochastic, including those with public health importance. >IMPORTANCE Virulence is a complex phenotype that cannot be easily studied by analyzing its individual components in isolation. By studying the outcome of infection as the death of the host, we found that a given microbial phenotype does not necessarily correlate with its ability to cause disease and that the presence of so-called virulence factors does not predict pathogenicity, consistent with the notion that virulence is an emergent property. This paper reports that the dynamics of virulence in Galleria?mellonella larvae infected with the fungus Cryptococcus neoformans follows a predictable pattern. Establishing that virulence is an emergent property is important because it implies that it is not reducible to its components, and consequently, this phenomenon needs to be studied by a holistic approach.
机译:毒力已被提出是一种紧急性质,从定义上暗示它不能还原其成分,但是这种哲学概念在宿主-微生物相互作用中的应用尚未经过实验测试。我们的研究目的是分析表型与引起疾病的能力之间的相关性,以及确定实验性隐球菌感染的动态变化,这些实验是在梅勒菌壁和卡氏棘阿米巴中。通过研究作为宿主死亡的感染的结果,我们显示了 G.mellonella / 新型隐球菌相互作用中的毒力动力学遵循可预测的模式。我们还发现,实验温度而不是毒力因子的存在是定义隐球菌物种致病潜力的关键参数。我们的研究结果表明,在适当条件下,未被认为具有致病性的隐球菌可能是病原体。我们的结果支持这样的观点,即毒力是一种还原性方法无法轻易预测的新兴属性,但在鳞翅目隐球菌感染中却起着确定性系统的作用。这些发现为评估其他系统中宿主与微生物之间的相互作用是混乱,确定性还是随机(包括具有公共卫生重要性的相互作用)提供了路线图。 >重要性毒力是一种复杂的表型,无法通过单独分析其各个组成部分来轻松研究。通过研究感染作为宿主死亡的结果,我们发现给定的微生物表型不一定与其引起疾病的能力相关,并且所谓的毒力因子的存在并不能预测致病性,这与以下观点一致:毒力是一种紧急情况。本文报道了感染新型真菌隐球菌的幼虫中毒力的动态遵循可预测的模式。确定毒力是一种紧急属性很重要,因为它意味着毒力无法还原为其组成部分,因此,需要通过整体方法研究这种现象。

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