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1             These polypeptides resembled the cytochrome b6 and su IV subunits of chloroplast cytochro
2 s of N-limited cells have reduced amounts of cytochrome b6, cytochrome f, and light-harvesting comple
3 to oxygen accompanied by inactivation of the cytochrome b6 f complex leading to attenuation of the ph
4 s carried out on the ISP hinge region of the cytochrome b6 f complex using the cyanobacterium Synecho
5 des to introduce two distinctive features of cytochrome b6 f complexes.
6  chloroplast gene encoding subunit IV of the cytochrome b6.f complex, forms a stable RNA-protein comp
7 ng the example of the petC gene (involved in cytochrome b6/f and thus impacting photosynthesis) that
8 oregulation model that has been proposed for cytochrome b6/f complex assembly in Chlamydomonas.
9 of the wild-type (WT) petD mRNA level and no cytochrome b6/f complex subunit IV, which is the petD ge
10 ) II supercomplex and depleted of PS II, the cytochrome b6/f complex, and ATP synthase.
11 en petD pre-mRNA, encoding subunit IV of the cytochrome b6/f complex, and chloroplast proteins.
12  tobacco, which encode three subunits of the cytochrome b6/f complex, and compared our results to tho
13 ynthetic Chlamydomonas mutant that lacks the cytochrome b6/f complex, due to a 236 bp deletion that r
14 petD mRNA and its product, subunit IV of the cytochrome b6/f complex, which is essential for photosyn
15 ce, consistent with the loss of a functional cytochrome b6/f complex.
16  mutation mcd1-1 and fails to accumulate the cytochrome b6/f complex.
17 otinamide adenine dinucleotide (reduced) and cytochrome b6/f complexes, were much more abundant in th
18 es for phycobilisome, photosystems I and II, cytochrome b6/f, and ATP synthase indicated reduced ligh
19 ochrome f may be decreased in the absence of cytochrome b6 or SUIV.
20 ng of Rieske Fe-S protein (encoded by petC), cytochrome b6 (petB), subunit IV (petD), and a diheme cy
21 from the aqueous phase via Asp20 and Arg207 (cytochrome b6 subunit) to quinone bound axially to heme
22 d ferredoxin, of 0.8 heme equivalents of the cytochrome b6 subunit.
23 s involved in the ci heme binding pathway to cytochrome b6) to FtsH.
24 h-resolution taxonomic marker petB, encoding cytochrome b6, was used to recruit reads out of 109 meta