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Synchronous Activation of Cell Division by Light or Temperature Stimuli in the Dimorphic Yeast Schizosaccharomyces japonicus

机译:通过光或温度刺激在双态酵母日本裂殖酵母中同步激活细胞分裂。

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Many fungi respond to light and regulate fungal development and behavior. A blue light-activated complex has been identified in Neurospora crassa as the product of the wc-1 and wc-2 genes. Orthologs of WC-1 and WC-2 have hitherto been found only in filamentous fungi and not in yeast, with the exception of the basidiomycete pathogenic yeast Cryptococcus. Here, we report that the fission yeast Schizosaccharomyces japonicus responds to blue light depending on Wcs1 and Wcs2, orthologs of components of the WC complex. Surprisingly, those of ascomycete S. japonicus are more closely related to those of the basidiomycete. S. japonicus reversibly changes from yeast to hyphae in response to environmental stresses. After incubation at 30°C, a colony of yeast was formed, and then hyphal cells extended from the periphery of the colony. When light cycles were applied, distinct dark- and bright-colored hyphal cell stripes were formed because the growing hyphal cells had synchronously activated cytokinesis. In addition, temperature cycles of 30°C for 12 h and 35°C for 12 h or of 25°C for 12 h and 30°C for 12 h during incubation in the dark induced a response in the hyphal cells similar to that of light. The stripe formation of the temperature cycles was independent of the wcs genes. Both light and temperature, which are daily external cues, have the same effect on growing hyphal cells. A dual sensing mechanism of external cues allows organisms to adapt to daily changes of environmental alteration.
机译:许多真菌对光有反应并调节真菌的发育和行为。蓝藻中已鉴定出一种蓝色光激活复合物,它是 wc-1 wc-2 基因的产物。迄今为止,仅在丝状真菌中发现了WC-1和WC-2的直系同源物,在酵母菌中没有发现,除了致病性担子菌酵母隐球菌。在这里,我们报告裂变酵母日本裂殖酵母响应蓝光取决于Wcs1和Wcs2,WC复杂的组件的直系同源物。令人惊讶的是,日本子囊菌的那些与担子菌的那些更紧密相关。响应环境压力,日本链球菌可逆地从酵母变为菌丝。在30°C下孵育后,形成了酵母菌落,然后菌丝细胞从菌落的外围延伸。当进行轻循环时,由于生长的菌丝细胞具有同步激活的胞质分裂,形成了明显的深色和亮色的菌丝细胞条带。此外,在黑暗中孵育期间,温度循环分别为30°C 12小时和35°C 12小时或25°C 12小时和30°C 12小时,在菌丝细胞中诱导的反应类似于光。温度循环的条带形成与 wcs 基因无关。光和温度都是日常的外部提示,它们对生长的菌丝细胞具有相同的作用。外部线索的双重感应机制使生物能够适应环境变化的日常变化。

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