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Opaque cells signal white cells to form biofilms in Candida albicans

机译:不透明细胞向白细胞发出信号在白色念珠菌中形成生物膜

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摘要

Upon homozygosis from a/α to a/a or α/α, Candida albicans must still switch from the ‘white' to ‘opaque' phenotype to mate. It was, therefore, surprising to discover that pheromone selectively upregulated mating-associated genes in mating-incompetent white cells without causing G1 arrest or shmoo formation. White cells, like opaque cells, possess pheromone receptors, although their distribution and redistribution upon pheromone treatment differ between the two cell types. In speculating about the possible role of the white cell pheromone response, it is hypothesized that in overlapping white a/a and α/α populations in nature, rare opaque cells, through the release of pheromone, signal majority white cells of opposite mating type to form a biofilm that facilitates mating. In support of this hypothesis, it is demonstrated that pheromone induces cohesiveness between white cells, minority opaque cells increase two-fold the thickness of majority white cell biofilms, and majority white cell biofilms facilitate minority opaque cell chemotropism. These results reveal a novel form of communication between switch phenotypes, analogous to the inductive events during embryogenesis in higher eukaryotes.
机译:从a /α到a / a或α/α纯合后,白色念珠菌仍必须从“白色”表型转变为“不透明”表型才能交配。因此,令人惊讶地发现,信息素在不具有交配能力的白细胞中选择性地上调了与交配相关的基因,而没有引起G1停滞或shmoo的形成。像不透明细胞一样,白细胞也具有信息素受体,尽管在两种细胞类型中,它们在信息素处理后的分布和重新分布都不同。在推测白细胞信息素应答的可能作用时,假设在自然界中重叠的白色a / a和α/α种群中,稀有的不透明细胞通过释放信息素而向与之相反交配类型的大多数白细胞发出信号。形成促进交配的生物膜。为支持该假设,已证明信息素诱导白细胞之间的凝聚力,少数不透明细胞的厚度增加了多数白细胞生物膜的厚度的两倍,并且多数白细胞生物膜促进了少数不透明细胞的趋化性。这些结果揭示了开关表型之间的新型通信形式,类似于高等真核生物胚胎发生过程中的诱导事件。

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