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毛霉属光生长反应的系统分析。光感受器和向性突变体。

System analysis of Phycomyces light-growth response. Photoreceptor and hypertropic mutants.

作者信息

Palit A, Pratap P, Lipson E D

出版信息

Biophys J. 1986 Oct;50(4):661-8. doi: 10.1016/S0006-3495(86)83506-8.

Abstract

The light-growth responses of Phycomyces behavioral mutants, defective in genes madB, madC, and madH, were studied with the sum-of-sinusoids method of system identification. Modified phototropic action spectra of these mutants have indicated that they have altered photoreceptors (P. Galland and E.D. Lipson, 1985, Photochem. Photobiol. 41:331). In the two preceding papers, a kinetic model of the light-growth response system was developed and applied to wild-type frequency kernels at several wavelengths and temperatures. The present mutant studies were conducted at wavelength 477 nm. The log-mean intensity was 6 X 10(-2)W m-2 for the madB and madC night-blind mutants, and 10(-4)W m-2 for the madH hypertropic mutant. The prolonged light-growth responses of the madB and madC mutants are reflected in the reduced dynamic order of their frequency kernels. The linear response of the hypertropic mutant is essentially normal, but its nonlinear behavior shows modified dynamics. The behavior of these mutants can be accounted for by suitable modifications of the parametric model of the system. These modifications together support the hypothesis that an integrated complex mediates sensory transduction in the light responses and other responses of the sporangiophore.

摘要

利用系统识别的正弦波总和法研究了在madB、madC和madH基因上存在缺陷的毛霉行为突变体的光生长反应。这些突变体的修正向光作用光谱表明它们的光感受器发生了改变(P. 加兰德和E.D. 利普森,1985年,《光化学与光生物学》41:331)。在前两篇论文中,建立了光生长反应系统的动力学模型,并将其应用于几个波长和温度下的野生型频率核。目前对突变体的研究是在波长477 nm下进行的。对于madB和madC夜盲突变体,对数平均强度为6×10(-2)W m-2,对于madH向光性增强突变体,对数平均强度为10(-4)W m-2。madB和madC突变体延长的光生长反应反映在其频率核的动态阶数降低上。向光性增强突变体的线性反应基本正常,但其非线性行为显示出动态变化。这些突变体的行为可以通过对系统参数模型进行适当修改来解释。这些修改共同支持了这样一种假设,即一个整合复合体介导了孢子囊柄在光反应和其他反应中的感觉转导。

相似文献

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Light and dark adaptation in Phycomyces phototropism.毛霉向光性中的明暗适应
J Gen Physiol. 1984 Jul;84(1):101-18. doi: 10.1085/jgp.84.1.101.

本文引用的文献

2
Light and dark adaptation in Phycomyces phototropism.毛霉向光性中的明暗适应
J Gen Physiol. 1984 Jul;84(1):101-18. doi: 10.1085/jgp.84.1.101.

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