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Roles of three Fusarium oxysporum calcium ion (Ca2+) channels in generating Ca2+ signatures and controlling growth

机译:三个尖镰孢钙离子(Ca2 +)通道在产生Ca2 +信号和控制生长中的作用

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Spatial and temporal changes of cytoplasmic calcium ions ([Ca2+](c)), caused by external stimuli, are known as the Ca2+ signature and presumably control cellular and developmental responses. Multiple types of ion channels, pumps, and transporters on plasma and organellar membranes modulate influx and efflux of Ca2+ to and from the extracellular environment and internal Ca2+ stores to form Ca2+ signatures. Expression of a fluorescent protein-based Ca2+ probe, Cameleon YC3.60, in Fusarium oxysporum enabled us to study how disruption of three Ca2+ channel genes, including FoCCH1, FoMID1 and FoYVC1, affects Ca2+ signature formation at polarized hyphal tips and whether specific changes in the Ca2+ signature caused by these mutations are related to growth-related phenotypes. Resulting mutants displayed altered amplitude, interval, and duration of Ca2+ pulses under various external Ca2+ concentrations as well as changes in sporulation and growth. Loss of FoMID1 and F0CCH1, genes encoding putative plasma membrane channel proteins, had a major impact on Ca2+ signatures and growth, while disruption of FoYVC1, which encodes a vacuolar channel, only subtly affected both traits. Results from our study provide new insights into the underpinning of Ca2+ signaling in fungi and its role in controlling growth and also raise several new questions. (C) 2015 Elsevier Inc. All rights reserved.
机译:由外部刺激引起的细胞质钙离子([Ca2 +](c))的时空变化被称为Ca2 +信号,可能控制细胞和发育反应。质膜和细胞器质膜上的多种类型的离子通道,泵和转运蛋白可调节Ca2 +流入和流出细胞外环境和内部Ca2 +存储库的流入和流出,从而形成Ca2 +标记。在尖孢镰刀菌中基于荧光蛋白的Ca2 +探针Cameleon YC3.60的表达使我们能够研究三个Ca2 +通道基因(包括FoCCH1,FoMID1和FoYVC1)的破坏如何影响极化的菌丝尖端的Ca2 +签名形成,以及是否特定变化。这些突变引起的Ca2 +信号与生长相关的表型有关。产生的突变体在各种外部Ca2 +浓度下显示出改变的Ca2 +脉冲幅度,间隔和持续时间,以及孢子形成和生长的变化。编码假定的质膜通道蛋白的基因FoMID1和F0CCH1的丢失对Ca2 +签名和生长具有重大影响,而编码液泡通道的FoYVC1的破坏仅微妙地影响了这两个性状。我们的研究结果为真菌中Ca2 +信号转导的基础及其在控制生长中的作用提供了新的见解,并提出了一些新的问题。 (C)2015 Elsevier Inc.保留所有权利。

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