首页> 外文期刊>Environmental microbiology >The septal pore cap is an organelle that functions in vegetative growth and mushroom formation of the wood-rot fungus Schizophyllum commune
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The septal pore cap is an organelle that functions in vegetative growth and mushroom formation of the wood-rot fungus Schizophyllum commune

机译:间隔孔帽是一种细胞器,在木腐真菌Schizophyllum com的营养生长和蘑菇形成中起作用

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摘要

Mushroom-forming basidiomycetes colonize large areas in nature. Their hyphae are compartmentalized by perforated septa, which are usually covered by a septal pore cap (SPC). Here, we describe, for the first time, the composition and function of SPCs using the model system Schizophyllum commune. The SPC of S. commune was shown to consist of a proteinaceous matrix covered by a lipid membrane. The matrix was demonstrated to define the ultrastructure of the SPC and to consist of two main proteins, Spc14 and Spc33. Gene spc14 encodes a protein of 86 amino acids, which lacks known domain, signal or localization sequences. Gene spc33 encodes a 239 and a 340 amino acid variant. Both forms contain a predicted signal anchor that targets them to the ER. Immuno-localization showed the presence of Spc33 in the SPC but not in ER. From this and previous reports it is concluded that the SPC is derived from this organelle. Inactivation of spc33 resulted in loss of SPCs and the inability to close septa. The latter may well explain why vegetative growth and mushroom formation were severely reduced in strains in which spc33 was inactivated.
机译:形成蘑菇的担子菌定居在自然界中的大片区域。它们的菌丝被穿孔的隔片分隔开,这些隔片通常被隔片孔盖(SPC)覆盖。在这里,我们首次使用Schizophyllum commune模型系统描述了SPC的组成和功能。已显示出公链霉菌的SPC由被脂质膜覆盖的蛋白质基质组成。已证明该基质定义了SPC的超微结构,并由两个主要蛋白Spc14和Spc33组成。基因spc14编码一个86个氨基酸的蛋白质,该蛋白质缺少已知的结构域,信号或定位序列。基因spc33编码239和340个氨基酸变体。两种形式均包含将其靶向到ER的预测信号锚。免疫定位显示SPC中存在Spc33,而ER中不存在。根据该报告和以前的报告,可以得出结论,SPC来源于该细胞器。 spc33的失活导致SPC丢失以及无法关闭隔垫。后者可以很好地解释为什么在spc33失活的菌株中营养生长和蘑菇形成会严重降低。

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