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Hyphal heterogeneity in Aspergillus oryzae is the result of dynamic closure of septa by Woronin bodies

机译:米曲霉的菌丝异质性是Woronin体动态封闭隔垫的结果

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Hyphae of higher fungi are compartmentalized by septa. These septa contain a central pore that allows for inter-compartmental and inter-hyphal cytoplasmic streaming. The cytoplasm within the mycelium is therefore considered to be a continuous system. In this study, however, we demonstrate by laser dissection that 40% of the apical septa of exploring hyphae of Aspergillus oryzae are closed. Closure of septa correlated with the presence of a peroxisome-derived organelle, known as Woronin body, near the septal pore. The location of Woronin bodies in the hyphae was dynamic and, as a result, plugging of the septal pore was reversible. Septal plugging was abolished in a ΔAohex1 strain that cannot form Woronin bodies. Notably, hyphal heterogeneity was also affected in the ΔAohex1 strain. Wild-type strains of A.oryzae showed heterogeneous distribution of GFP between neighbouring hyphae at the outer part of the colony when the reporter was expressed from the promoter of the glucoamylase gene glaA or the α-glucuronidase gene aguA. In contrast, GFP fluorescence showed a normal distribution in the case of the ΔAohex1 strain. Taken together, it is concluded that Woronin bodies maintain hyphal heterogeneity in a fungal mycelium by impeding cytoplasmic continuity.
机译:高级真菌的菌丝被隔片隔开。这些隔垫包含一个中央孔,可以进行隔室和菌丝间的细胞质流。因此,菌丝体内的细胞质被认为是一个连续的系统。然而,在这项研究中,我们通过激光解剖证实了米曲霉菌丝探索菌丝的顶部间隔是40%封闭的。隔垫的闭合与隔垫孔附近存在过氧化物酶体细胞器(称为沃罗宁体)有关。 Woronin体在菌丝中的位置是动态的,因此,隔孔的堵塞是可逆的。不能形成Woronin体的ΔAohex1株消除了隔膜的堵塞。值得注意的是,菌丝异质性在ΔAohex1菌株中也受到影响。当从葡糖淀粉酶基因glaA或α-葡糖醛酸糖苷酶基因aguA的启动子表达报告基因时,野生型米曲霉菌株在菌落外部相邻菌丝之间显示GFP的异质分布。相反,在ΔAohex1株的情况下,GFP荧光显示正态分布。两者合计,得出的结论是,沃洛宁体通过阻止细胞质的连续性而在真菌菌丝体中保持菌丝异质性。

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