Independent evolution of the prochlorophyte and green plant chlorophyll a/b light-harvesting proteins

The prochlorophytes are oxygenic prokaryotes differing from other cyanobacteria by the presence of a light-harvesting system containing both chlorophylls (Chls) a and b and by the absence of phycobilins. We demonstrate here that the Chl a/b binding proteins from all three known prochlorophyte genera...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 1996-12, Vol.93 (26), p.15244-15248
Hauptverfasser: La Roche, J. (Brookhaven National Laboratory, Upton, NY.), Staay, G.W.M. van der, Partensky, F, Ducret, A, Aebersold, R, Li, R, Golden, S.S, Hiller, R.G, Wrench, P.M, Larkum, A.W.D
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Sprache:eng
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Zusammenfassung:The prochlorophytes are oxygenic prokaryotes differing from other cyanobacteria by the presence of a light-harvesting system containing both chlorophylls (Chls) a and b and by the absence of phycobilins. We demonstrate here that the Chl a/b binding proteins from all three known prochlorophyte genera are closely related to IsiA, a cyanobacterial Chl a-binding protein induced by iron starvation, and to CP43, a constitutively expressed Chl a antenna protein of photosystem II. The prochlorophyte Chl a/b protein (pcb) genes do not belong to the extended gene family encoding eukaryotic Chl a/b and Chl a/c light-harvesting proteins. Although higher plants and prochlorophytes share common pigment complements, their light-harvesting systems have evolved independently
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.93.26.15244