By H. Zuber (auth.), Professor Dr. Maria Elisabeth Michel-Beyerle (eds.)
The workshop on "Antennas and response facilities of Photosynthetic Bac teria" was once held at Feldafing, Bavaria (F. R. G. )' March 23-25, 1985. This workshop focussed on fundamental methods with emphasis on constitution, inter activities and dynamics. It assessed structural, spectroscopic and dynamic facts that have collected lately, offering an outline of the mech anism of the purchase, garage and beneficial disposal of strength in bacterial photosynthesis. This quantity is a checklist of the invited papers offered on the workshop. the fabric was once equipped into 5 sections: I. Antennas: constitution and effort move II. response facilities: constitution and Interactions III. Electron move: concept and version platforms IV. response Cen,ters: constitution and Dynamics V. version platforms on functionality of Antennas and response facilities i want to precise my gratitude to the entire individuals within the paintings store for his or her contributions, and to the authors for the well timed guidance in their manuscripts. i'm indebted to the contributors of the organizing committee, Professors Sighart F. Fischer and Hugo Scheer for his or her Most worthy counsel and recommendation. The workshop do not need been such a success with out assistance from my secretary, Frau Petra KahlfuB, and my coworkers in its association. I thank Frau KahlfuB really additionally for her suggestions within the training of those court cases. The workshop used to be equipped less than the auspices of the Technical Uni versity of Munich, the Max-Planck-Society and the college of Munich.
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Additional info for Antennas and Reaction Centers of Photosynthetic Bacteria: Structure, Interactions and Dynamics
The apparent time resolution of this system is approx. 25 ps without deconvolution procedur, ! it allows measurements w~th low excitation intensities (10 photons per pulse and cm ). 26 From the fluorescence decay curves measured with the analyzer parallel, (I (t», and orthogonal, (I (t», to the polarization of the exBiting beam the expressio~s I(t)=I (t)+2*I (t) and D(t)=I (t)-I (t) are calculated. I(t) measuresPthe dec~y of the exc~ted s~ate population (electronic lifetime) as does a measurement, where the analyzer is set under the magic angle to the excitation polarization.
All spectra were recorded 5min after the sample had reached the temperature indicated. All measurements were done with fresh samples. Other details as in Fig. 5. , ................ ,...... ; " \. •. \ \ ... \ \.... \ so \ ~ \ \ \ \ \ \ \ q\.. \ \ \ \ ... \ ... "\. •. \ \ ... \. ~ '. oj ---~:;;. ~-- 20 60 40 80 ·C t--------------.. . _" ··· · ··· ·· ·· ·· ~ . f •. • •f f ....... ..... .. _-s '--_ _ _ _ _ _ _ _ _ _ _ _ _--1 ••f .... Fig. 9: Difference spectra for the photoreaction of PC in the presence of urea (5M).
Lb) can be fit by bi-exponentials with lifetimes of 20 and 1300 ps, resp. e. the allophycocyanins. Since the amplitude of the "100 ps"- component turns negative for long-wavelength monitoring, it can be assigned to the average energy-transfer time between phycocyanin and allophycocyanin. 28 Table 1 : Fit parameters derived from the fluorescence decay curves I(t) and D(t) of functionally intact phycobilisomes, isolated from Mastigocladus laminosus, by means of a least square fit procedure. Exc. (nm)/Obs.
Antennas and Reaction Centers of Photosynthetic Bacteria: Structure, Interactions and Dynamics by H. Zuber (auth.), Professor Dr. Maria Elisabeth Michel-Beyerle (eds.)