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Spatial Differentiation in the Vegetative Mycelium of Aspergillus niger

机译:黑曲霉营养菌丝体的空间分化

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Fungal mycelia are exposed to heterogenic substrates. The substrate in the central part of the colony has been (partly) degraded, whereas it is still unexplored at the periphery of the mycelium. We here assessed whether substrate heterogeneity is a main determinant of spatial gene expression in colonies of Aspergillus niger. This question was addressed by analyzing whole-genome gene expression in five concentric zones of 7-day-old maltose- and xylose-grown colonies. Expression profiles at the periphery and the center were clearly different. More than 25% of the active genes showed twofold differences in expression between the inner and outermost zones of the colony. Moreover, 9% of the genes were expressed in only one of the five concentric zones, showing that a considerable part of the genome is active in a restricted part of the colony only. Statistical analysis of expression profiles of colonies that had either been or not been transferred to fresh xylose-containing medium showed that differential expression in a colony is due to the heterogeneity of the medium (e.g., genes involved in secretion, genes encoding proteases, and genes involved in xylose metabolism) as well as to medium-independent mechanisms (e.g., genes involved in nitrate metabolism and genes involved in cell wall synthesis and modification). Thus, we conclude that the mycelia of 7-day-old colonies of A. niger are highly differentiated. This conclusion is also indicated by the fact that distinct zones of the colony grow and secrete proteins, even after transfer to fresh medium.
机译:真菌菌丝体暴露于异质底物。菌落中央部分的底物已被(部分)降解,而在菌丝体的周围仍未被探索。我们在这里评估了底物异质性是否是黑曲霉菌落中空间基因表达的主要决定因素。通过分析7天龄麦芽糖和木糖生长菌落的五个同心区的全基因组基因表达,解决了这个问题。外周和中央的表达谱明显不同。超过25%的活性基因在菌落的内部区域和最外部区域之间表现出两倍的表达差异。而且,9%的基因仅在五个同心区之一中表达,这表明基因组的相当一部分仅在菌落的受限部分具有活性。对已经转移到或未转移到新鲜的含木糖培养基中的菌落表达谱的统计分析表明,菌落中的差异表达是由于培养基的异质性(例如,涉及分泌的基因,编码蛋白酶的基因和参与木糖代谢)以及不依赖培养基的机制(例如,参与硝酸盐代谢的基因以及参与细胞壁合成和修饰的基因)。因此,我们得出结论, A为7天大的菌丝体。尼日尔是高度分化的。即使在转移到新鲜培养基中之后,菌落的不同区域也会生长并分泌蛋白质,这一事实也表明了这一结论。

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