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首页> 外文期刊>FEMS Microbiology Reviews >Neurons show the path: tip-to-nucleus communication in filamentous fungal development and pathogenesis
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Neurons show the path: tip-to-nucleus communication in filamentous fungal development and pathogenesis

机译:神经元显示道路:丝状真菌发育和发病机制中的尖端到核通信

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Multiple fungal species penetrate substrates and accomplish host invasion through the fast, permanent and unidirectional extension of filamentous cells known as hyphae. Polar growth of hyphae results, however, in a significant increase in the distance between the polarity site, which also receives the earliest information about ambient conditions, and nuclei, where adaptive responses are executed. Recent studies demonstrate that these long distances are overcome by signal transduction pathways which convey sensory information from the polarity site to nuclei, controlling development and pathogenesis. The present review compares the striking connections of the mechanisms for long-distance communication in hyphae with those from neurons, and discusses the importance of their study in order to understand invasion and dissemination processes of filamentous fungi, and design strategies for developmental control in the future.This comprehensive review compares polarity site-to-nucleus signaling mechanisms of neurons and hyphae, and highlights the importance of long-distance communication in the control of fungal development, stress response and pathogenicity.This comprehensive review compares polarity site-to-nucleus signaling mechanisms of neurons and hyphae, and highlights the importance of long-distance communication in the control of fungal development, stress response and pathogenicity.
机译:多种真菌物种穿透基质并通过丝状细胞的快速,永久性和单向延伸来完成宿主侵袭。然而,菌丝的极性生长结果在极性位点之间的距离显着增加,这也接收了关于环境条件的最早信息和核的信息,其中执行自适应响应。最近的研究表明,通过信号转导途径克服了这些长距离,该途径将来自极性位点的感官信息传达给核,控制发育和发病机制。本综述比较了与神经元的那些与神经元中的长距离通信机制的引人注目的连接进行了比较,并讨论了他们的研究的重要性,以了解丝状真菌的入侵和传播过程,以及未来发展控制的设计策略。这综合评论比较神经元和菌丝的极性位点对核信号机制,并突出了长途通信在控制真菌发育,应力响应和致病性中的重要性。本综合评论比较极性位点对核信号传导神经元和菌丝机制,并突出了长途通信在对真菌发育,应激反应和致病性控制中的重要性。

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