首页> 美国卫生研究院文献>other >Carbon Dioxide is a Powerful Inducer of Monokaryotic Hyphae and Spore Development in Cryptococcus gattii and Carbonic Anhydrase Activity is Dispensable in This Dimorphic Transition
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Carbon Dioxide is a Powerful Inducer of Monokaryotic Hyphae and Spore Development in Cryptococcus gattii and Carbonic Anhydrase Activity is Dispensable in This Dimorphic Transition

机译:二氧化碳是加泰隐球菌单核菌丝和孢子发育的强大诱导物而碳酸酐酶活性在这种双态转变中是必不可少的

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摘要

Cryptococcus gattii is unique among human pathogenic fungi with specialized ecological niche on trees. Since leaves concentrate CO2, we investigated the role of this gaseous molecule in C. gattii biology and virulence. We focused on the genetic analyses of β-carbonic anhydrase (β-CA) encoded by C. gattii CAN1 and CAN2 as later is critical for CO2 sensing in a closely related pathogen C. neoformans. High CO2 conditions induced robust development of monokaryotic hyphae and spores in C. gattii. Conversely, high CO2 completely repressed hyphae development in sexual mating. Both CAN1 and CAN2 were dispensable for CO2 induced morphogenetic transitions. However, C. gattii CAN2 was essential for growth in ambient air similar to its reported role in C. neoformans. Both can1 and can2 mutants retained full pathogenic potential in vitro and in vivo. These results provide insight into C. gattii adaptation for arboreal growth and production of infectious propagules by β-CA independent mechanism(s).
机译:加蒂隐球菌在人类致病真菌中是独特的,在树木上具有专门的生态位。由于叶子会浓缩CO2,因此我们研究了这种气态分子在C. gattii生物学和毒力中的作用。我们着重于由加迪梭菌CAN1和CAN2编码的β-碳酸酐酶(β-CA)的遗传分析,因为后者对于密切相关的病原体新孢子虫中的CO2传感至关重要。高CO2条件导致加蒂梭菌的单核菌丝菌丝和孢子旺盛发育。相反,高CO2完全抑制了性交中的菌丝发育。 CAN1和CAN2都可用于CO2诱导的形态发生转变。然而,加地衣甘蓝CAN2对环境空气的生长至关重要,类似于其在新甲状结肠中的作用。 can1和can2突变体在体外和体内均具有完全的致病潜力。这些结果通过β-CA独立机制深入研究了加迪梭菌对树木生长和感染性繁殖体生产的适应性。

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