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Subpopulations of hyphae secrete proteins or resist heat stress in Aspergillus oryzae colonies

机译:菌丝群分泌蛋白质或抵抗Aspergillus oryzae菌落中的热应激

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摘要

Hyphae at the outer part of colonies of Aspergillus niger and Aspergillus oryzae are heterogeneous with respect to transcriptional and translational activity. This heterogeneity is maintained by Woronin body mediated closure of septal pores that block interhyphal mixing of cytoplasm. Indeed, heterogeneity between hyphae is abolished in Delta hexA strains that lack Woronin bodies. The subpopulation of hyphae with high transcriptional and translational activity secretes enzymes that degrade the substrate resulting in breakdown products that serve as nutrients. The role of hyphae with low transcriptional and translational activity was not yet known. Here, we show that this subpopulation is more resistant to environmental stress in A. oryzae, in particular to temperature stress, when compared to hyphae with high transcriptional and translational activity. Notably, all hyphae of the Delta hexA strain of A. oryzae were sensitive to heat stress explained by the reduced heterogeneity in this strain. Together, we show that different subpopulations of hypha secrete proteins and resist heat stress showing the complexity of a fungal mycelium.
机译:菌丝在曲霉菌群和曲霉属植物菌落的外部的菌丝相对于转录和翻译活性是异质的。这种异质性由葡萄酒体介导的隔膜孔闭合,其阻断细胞质的眶间混合。实际上,菌丝之间的异质性被废除在缺乏葡萄酒体的δ·赫沙达菌株中。具有高转录和翻译活性的菌丝亚脱模分泌酶,使酶降解基材,导致作为营养成分的崩解产物。辣椒与低转录和翻译活动的作用尚不清楚。在这里,我们表明,与具有高转录和翻译活性的菌丝相比,该亚群对A族的环境应激更耐受环境压力。值得注意的是,A. Oryzae的Delta Hexa菌株的所有菌株对这种菌株中的异质性降低的热应激敏感。我们展示了菌丝分泌蛋白质的不同亚蛋白和抵抗热应激显示真菌菌丝体的复杂性。

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