首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Endogenous electrical currents in the water mold Blastocladiella emersonii during growth and sporulation.
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Endogenous electrical currents in the water mold Blastocladiella emersonii during growth and sporulation.

机译:在生长和孢子形成过程中水中的内生电流会塑造艾美氏菌。

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摘要

We have explored the pattern of electrical currents generated by single cells of the water mold Blastocladiella emersonii at several stages of its life cycle. Extracellular currents were measured with a vibrating probe constructed after the design of Jaffe and Nuccitelli [Jaffe, L. F. & Nuccitelli, R. (1974) J. Cell Biol. 63, 614-628]. In growing cells positive current, of the order of 1 microA/cm2, enters the rhizoid and leaves from the thallus; circumstantial evidence suggests that protons carry much of the current. Sporulation is associated with reversal of the current pattern, such that positive current enters the thallus and leaves from the rhizoidal region; the ions that carry the current have not been identified. These current patterns appear to play a role in the spatial localization of fungal growth and development.
机译:我们已经探究了水霉艾默生氏菌在其生命周期的几个阶段中,单细胞产生的电流模式。用Jaffe和Nuccitelli [Jaffe,L.F。&Nuccitelli,R。(1974)J.Cell Biol.Biol.215:403-10]设计后构造的振动探针测量细胞外电流。 63,614-628]。在生长的细胞中,大约1 microA / cm2的正电流进入根状茎并从丘脑中离开。间接证据表明,质子携带了大部分电流。孢子形成与电流模式的逆转有关,以使正电流进入球状体并从根状区域离开。载流离子尚未确定。这些当前的模式似乎在真菌生长和发育的空间定位中起作用。

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