首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Gravity-induced absorption changes in Phycomyces blakesleeanus during parabolic flights: first spectral approach in the visible
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Gravity-induced absorption changes in Phycomyces blakesleeanus during parabolic flights: first spectral approach in the visible

机译:在抛物线飞行过程中引力引起的Phycomyces blakesleeanus吸收变化:可见光中的第一种光谱方法

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摘要

Gravity-induced absorption changes as experienced during a series of parabolas on the Airbus 300 Zero-G have been measured previously pointwise on the basis of dual-wavelength spectroscopy. Only the two wavelengths of 460 and 665 nm as generated by light-emitting diodes have been utilised during our first two parabolic-flight campaigns. In order to gain complete spectral information throughout the wavelength range front 400 to 900 inn, a miniaturized rapid scan spectrophotometer was designed. The difference of spectra taken at 0 g and 1.8 g presents the first gravity-induced absorption change spectrum measured on wild-type Phycomyces blakesleeanus sporangiophores, exhibiting a broad positive hump in the visible range and negative Values in the near infrared with an isosbestic point new 735 run. The control experiment performed with the stiff mutant A909 of Phycomyces blakesleeanus does not show this structure. These results are in agreement with those obtained with an array spectrophotometer. In analogy to the more thoroughly understood so-called light-induced absorption changes. we assume that gravity-induced absorption changes reflect redox changes of electron transport components such as flavins and cytochromes localised within the plasma membrane.
机译:先前已在双波长光谱仪的基础上逐点测量了在空客300 Zero-G上一系列抛物线期间重力引起的吸收变化。在我们的前两次抛物线飞行活动中,仅利用了由发光二极管产生的两个460和665 nm波长。为了获得整个波长范围(从400到900 inn)的完整光谱信息,我们设计了一种小型化的快速扫描分光光度计。在0 g和1.8 g处拍摄的光谱的差异是在野生型Phycomyces blakesleeanus sporangiophores上测得的第一个重力诱导的吸收变化光谱,在可见光范围内显示出宽的正驼峰,在近红外处表现出负等值点,具有等吸收点。 735跑用枯草芽孢杆菌的刚性突变体A909进行的对照实验未显示该结构。这些结果与用阵列分光光度计获得的结果一致。与更彻底理解的所谓光诱导吸收变化类似。我们假设重力引起的吸收变化反映了电子传递成分的氧化还原变化,例如定位在质膜内的黄素和细胞色素。

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