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Dielectric behavior of wild-type yeast and vacuole-deficient mutant over a frequency range of 10 kHz to 10 GHz.

机译:野生型酵母和空泡缺陷突变体在10 kHz至10 GHz频率范围内的介电行为。

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摘要

Dielectric behavior of Saccharomyces cerevisiae wild-type and vacuole-deficient mutant cells has been studied over a frequency range of 10 kHz to 10 GHz. Both types of cells harvested at the early stationary growth phase showed dielectric dispersion that was phenomenologically formulated by a sum of three separate dispersion terms: beta 1-dispersion (main dispersion) and beta 2-dispersion (additional dispersion) and gamma-dispersion due to orientation of water molecules. The beta 1-dispersion centered at a few MHz, which has been extensively studied so far, is due to interfacial polarization (or the Maxwell-Wagner effect) related to the plasma membrane. The beta 2-dispersion for the vacuole-deficient mutant centered at approximately 50 MHz was explained by taking the cell wall into account, whereas, for the wild-type cells, the beta 2-dispersion around a few tens MHz involved the contributions from the vacuole and cell wall.
机译:酿酒酵母野生型和液泡缺陷突变细胞的介电行为已在10 kHz至10 GHz的频率范围内进行了研究。两种在静止早期生长阶段收获的细胞均表现出介电弥散,其现象学是由三个独立的弥散项之和构成的:β1弥散(主弥散)和β2弥散(附加弥散),以及由于水分子的取向。迄今为止,已经广泛研究的以1 MHz为中心的β1色散是由于与质膜有关的界面极化(或麦克斯韦-瓦格纳效应)。考虑到细胞壁,说明了液泡缺陷型突变体的β2弥散集中在大约50 MHz处,而对于野生型细胞,几十MHz的β2弥散涉及到细胞壁的贡献。液泡和细胞壁。

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