Literature DB >> 30888718

Electron transport pathways in isolated chromoplasts from Narcissus pseudonarcissus L.

Magda Grabsztunowicz1, Paula Mulo1, Frauke Baymann2, Risa Mutoh3, Genji Kurisu3, Pierre Sétif4, Peter Beyer5, Anja Krieger-Liszkay4.   

Abstract

During daffodil flower development, chloroplasts differentiate into photosynthetically inactive chromoplasts having lost functional photosynthetic reaction centers. Chromoplasts exhibit a respiratory activity reducing oxygen to water and generating ATP. Immunoblots revealed the presence of the plastid terminal oxidase (PTOX), the NAD(P)H dehydrogenase (NDH) complex, the cytochrome b6 f complex, ATP synthase and several isoforms of ferredoxin-NADP+ oxidoreductase (FNR), and ferredoxin (Fd). Fluorescence spectroscopy allowed the detection of chlorophyll a in the cytochrome b6 f complex. Here we characterize the electron transport pathway of chromorespiration by using specific inhibitors for the NDH complex, the cytochrome b6 f complex, FNR and redox-inactive Fd in which the iron was replaced by gallium. Our data suggest an electron flow via two separate pathways, both reducing plastoquinone (PQ) and using PTOX as oxidase. The first oxidizes NADPH via FNR, Fd and cytochrome bh of the cytochrome b6 f complex, and does not result in the pumping of protons across the membrane. In the second, electron transport takes place via the NDH complex using both NADH and NADPH as electron donor. FNR and Fd are not involved in this pathway. The NDH complex is responsible for the generation of the proton gradient. We propose a model for chromorespiration that may also be relevant for the understanding of chlororespiration and for the characterization of the electron input from Fd to the cytochrome b6 f complex during cyclic electron transport in chloroplasts.
© 2019 The Authors The Plant Journal © 2019 John Wiley & Sons Ltd.

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Keywords:  zzm321990Narcissus pseudonarcissuszzm321990; NAD(P)H dehydrogenase; chromoplast; chromorespiration; cytochrome b6f complex; electron transport chain; plastid terminal oxidase

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Year:  2019        PMID: 30888718     DOI: 10.1111/tpj.14319

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  2 in total

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Authors:  Wei-Liang Kong; Tong-Yue Wen; Ya-Hui Wang; Xiao-Qin Wu
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  2 in total

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