Architecture of the light-harvesting apparatus of the eustigmatophyte alga Nannochloropsis oceanica
We present proteomic, spectroscopic, and phylogenetic analysis of light-harvesting protein (Lhc) function in oleaginous Nannochloropsis oceanica (Eustigmatophyta, Stramenopila). N. oceanica utilizes Lhcs of multiple classes: Lhcr-type proteins (related to red algae LHCI), Lhcv (VCP) proteins (violax...
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Veröffentlicht in: | Photosynthesis research 2016-12, Vol.130 (1-3), p.137-150 |
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Sprache: | eng |
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Zusammenfassung: | We present proteomic, spectroscopic, and phylogenetic analysis of light-harvesting protein (Lhc) function in oleaginous
Nannochloropsis oceanica
(Eustigmatophyta, Stramenopila).
N. oceanica
utilizes Lhcs of multiple classes: Lhcr-type proteins (related to red algae LHCI), Lhcv (VCP) proteins (violaxanthin-containing Lhcs related to Lhcf/FCP proteins of diatoms), Lhcx proteins (related to Lhcx/LhcSR of diatoms and green algae), and Lhc proteins related to Red-CLH of
Chromera velia
. Altogether, 17 Lhc-type proteins of the 21 known from genomic data were found in our proteomic analyses. Besides Lhcr-type antennas, a RedCAP protein and a member of the Lhcx protein subfamily were found in association with Photosystem I. The free antenna fraction is formed by trimers of a mixture of Lhcs of varied origins (Lhcv, Lhcr, Lhcx, and relatives of Red-CLH). Despite possessing several proteins of the Red-CLH-type Lhc clade,
N. oceanica
is not capable of chromatic adaptation under the same conditions as the diatom
Phaeodactylum tricornutum
or
C. velia
. In addition, a naming scheme of
Nannochloropsis
Lhcs is proposed to facilitate further work. |
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ISSN: | 0166-8595 1573-5079 |
DOI: | 10.1007/s11120-016-0234-1 |