A new model of phycobilisome in Spirulina platensis


Autoria(s): Zhang, YZ; Chen, XL; Zhou, BC; Zeng, CK; Liu, J; Shi, DX; Pang, SJ
Data(s)

01/02/1999

Resumo

Phycobilisomes (PBS) were isolated from blue-green alga Spirulina platensis. Scanning tunneling microscope was used to investigate the three-dimensional structure of PBS deposited on freshly cleaved highly oriented pyrolytic graphite (HOPG) in ambient condition at room temperature. The results showed that the rods of PBS radiated from the core to different directions in the space other than arrayed in one plane, which was different from the typical hemi-discoidal model structure. The diameter of PBS was up to 70 nm, and the rod was approximately 50 nm in length. Similar results were observed in Langmuir-Blodgett (LB) film of PBS. The dissociated PBS could reaggregate into rod-like structures and easily form two-dimensional membrane while being absorbed on HOPG, however, no intact PBS was observed. The filling-space model structure of PBS in Spirulina platensis with STM from three-dimensional real space at nanometer scale was found, which showed that this new structural model of PBS surely exists in blue-green algae and red algae. The function of this structural model of PBS was also discussed.

Phycobilisomes (PBS) were isolated from blue-green alga Spirulina platensis. Scanning tunneling microscope was used to investigate the three-dimensional structure of PBS deposited on freshly cleaved highly oriented pyrolytic graphite (HOPG) in ambient condition at room temperature. The results showed that the rods of PBS radiated from the core to different directions in the space other than arrayed in one plane, which was different from the typical hemi-discoidal model structure. The diameter of PBS was up to 70 nm, and the rod was approximately 50 nm in length. Similar results were observed in Langmuir-Blodgett (LB) film of PBS. The dissociated PBS could reaggregate into rod-like structures and easily form two-dimensional membrane while being absorbed on HOPG, however, no intact PBS was observed. The filling-space model structure of PBS in Spirulina platensis with STM from three-dimensional real space at nanometer scale was found, which showed that this new structural model of PBS surely exists in blue-green algae and red algae. The function of this structural model of PBS was also discussed.

Identificador

http://ir.qdio.ac.cn/handle/337002/3363

http://www.irgrid.ac.cn/handle/1471x/166336

Idioma(s)

英语

Fonte

Zhang, YZ; Chen, XL; Zhou, BC; Zeng, CK; Liu, J; Shi, DX; Pang, SJ.A new model of phycobilisome in Spirulina platensis,SCIENCE IN CHINA SERIES C-LIFE SCIENCES,1999,42(1):74-79

Palavras-Chave #Biology #Spirulina platensis #phycobilisomes #scanning tunneling microscope
Tipo

期刊论文