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Photoinduced chlorophyll charge transfer state identified in the light-harvesting complex II from a marine green alga Bryopsis corticulans.


ABSTRACT: The light-harvesting complex II of Bryopsis corticulans (B-LHCII), a green alga, differs from that of spinach (S-LHCII) in chlorophyll (Chl) and carotenoid (Car) compositions. We investigated ultrafast excitation dynamics of B-LHCII with visible-to-near infrared time-resolved absorption spectroscopy. Absolute fluorescence quantum yield (Φ FL) of LHCII and spectroelectrochemical (SEC) spectra of Chl a and b were measured to assist the spectral analysis. Red-light excitation at Chl Qy-band, but not Car-band, induced transient features resembling the characteristic SEC spectra of Chl a ⋅+ and Chl b ⋅-, indicating ultrafast photogeneration of Chl-Chl charge transfer (CT) species; Φ FL and 3Car declined whereas CT species increased upon prolonging excitation wavelength, showing positive correlation of 1Chl deactivation with Chl-Chl CT formation. Moreover, ultrafast Chl b-to-Chl a and Car-to-Chl singlet excitation transfer were illustrated. The red-light induction of Chl-Chl CT species, as also observed for S-LHCII, is considered a general occurrence for LHCIIs in light-harvesting form.

SUBMITTER: Li DH 

PROVIDER: S-EPMC9804108 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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Photoinduced chlorophyll charge transfer state identified in the light-harvesting complex II from a marine green alga <i>Bryopsis corticulans</i>.

Li Dan-Hong DH   Wang Wenda W   Zhou Cuicui C   Zhang Yan Y   Zhao Songhao S   Zhou Yi-Ming YM   Gao Rong-Yao RY   Yao Hai-Dan HD   Fu Li-Min LM   Wang Peng P   Shen Jian-Ren JR   Kuang Tingyun T   Zhang Jian-Ping JP  

iScience 20221207 1


The light-harvesting complex II of <i>Bryopsis corticulans</i> (<i>B</i>-LHCII), a green alga, differs from that of spinach (<i>S</i>-LHCII) in chlorophyll (Chl) and carotenoid (Car) compositions. We investigated ultrafast excitation dynamics of <i>B</i>-LHCII with visible-to-near infrared time-resolved absorption spectroscopy. Absolute fluorescence quantum yield (<i>Φ</i> <sub>FL</sub>) of LHCII and spectroelectrochemical (SEC) spectra of Chl <i>a</i> and <i>b</i> were measured to assist the sp  ...[more]

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