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In Vivo and In Vitro Anaerobic Mating in Candida albicans

机译:白色念珠菌的体内和体外厌氧交配

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Candida albicans cells of opposite mating types are thought to conjugate during infection in mammalian hosts, but paradoxically, the mating-competent opaque state is not stable at mammalian body temperatures. We found that anaerobic conditions stabilize the opaque state at 37°C, block production of farnesol, and permit in vitro mating at 37°C at efficiencies of up to 84%. Aerobically, farnesol prevents mating because it kills the opaque cells necessary for mating, and as a corollary, farnesol production is turned off in opaque cells. These in vitro observations suggest that naturally anaerobic sites, such as the efficiently colonized gastrointestinal (GI) tract, could serve as niches for C. albicans mating. In a direct test of mating in the mouse GI tract, prototrophic cells were obtained from auxotrophic parent cells, confirming that mating will occur in this organ. These cells were true mating products because they were tetraploid, mononuclear, and prototrophic, and they contained the heterologous hisG marker from one of the parental strains.
机译:在哺乳动物宿主中,相反交配类型的白色念珠菌细胞在感染过程中是共轭的,但自相矛盾的是,交配能力的不透明状态在哺乳动物体温下不稳定。我们发现厌氧条件稳定了37°C下的不透明状态,阻止了法呢醇的产生,并允许37°C下的体外交配效率高达84%。在有氧条件下,法呢醇阻止交配,因为它杀死了交配所必需的不透明细胞,因此,在不透明细胞中法呢醇的生产被关闭。这些体外观察表明,自然厌氧位点,例如有效定居的胃肠道(GI),可以作为 C的生态位。白色的人交配。在小鼠胃肠道中进行交配的直接测试中,从营养缺陷型亲本细胞中获得了原养细胞,证实了该器官中将发生交配。这些细胞是真正的交配产物,因为它们是四倍体,单核和原养型,并且含有一种亲本菌株的异源 hisG 标记。

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