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Evolution of modular conidiophore development in the aspergilli

机译:曲霉菌中模态分枝孔发育的演变

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Conidiophores are reproductive structures that enable filamentous fungi to produce and disseminate large numbers of asexual spores. The diversity in conidiophore morphology is sufficiently large to serve as a basis for fungal systematics. Aspergillus and Penicillium species are members of the family Trichocomaceae that form conidiophores with characteristic architecture. Whereas the Penicillium conidiophore appears to be a modified branched hyphal structure, the Aspergillus conidiophore is seemingly more complex and includes additional cell types. Here, it is proposed that the "aspergillioid" conidiophore may have evolved from a "penicillioid" ancestor via changes in expression of key regulators of the cell cycle and the GTPase Cdc42. Because the transcriptional regulatory network that controls conidiophore development in Aspergillus is well characterized, further study of how this network links to regulators of the cell cycle and Cdc42 should provide fundamental insight into the evolution of developmental morphogenesis in fungi (i.e., fungal evo-devo).
机译:分枝体是生殖结构,使丝状真菌能够产生和传播大量无性孢子。分枝体形态的多样性足够大,以作为真菌系统学的基础。曲霉菌和青霉素种类是家庭毛皮科学的成员,形成具有特征架构的康钝。然而,卵霉素癌细胞似乎是一种改性的支链螺旋结构,曲霉菌均似乎更复杂并且包括额外的细胞类型。在此,提出“曲石蛋白”胚轴可以通过细胞周期和GTPAseDC42的关键调节剂表达的变化来从“一甲基吡喹酮”祖先的祖先演变。由于控制曲霉在血小霉素的转录调节网络的特征很好,进一步研究该网络链接到细胞周期和CDC42的监管机构如何为真菌发育形态发生的演变提供基础洞察(即真菌Evo-Devo) 。

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