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More articles from MEMBRANES, TRANSPORT, AND BIOENERGETICS

  • Paralogs of the C-Terminal Domain of the Cyanobacterial Orange Carotenoid Protein Are Carotenoid Donors to Helical Carotenoid Proteins
    Open Access
    Paralogs of the C-Terminal Domain of the Cyanobacterial Orange Carotenoid Protein Are Carotenoid Donors to Helical Carotenoid Proteins
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    Plant Physiol. Nov 2017, 175 (3) 1283-1303; DOI: https://doi.org/10.1104/pp.17.01040

    The cyanobacterial CTDHs, homodimers sharing one carotenoid molecule, are capable of taking the carotenoid from membranes and easily giving it to other proteins.

  • Phloem Loading through Plasmodesmata: A Biophysical Analysis
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    Phloem Loading through Plasmodesmata: A Biophysical Analysis
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    A mathematical model of symplastic loading addresses the mechanisms and roles of active and passive phloem loading.

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    You have accessRestricted Access
    TransDetect Identifies a New Regulatory Module Controlling Phosphate Accumulation
    Sikander Pal, Mushtak Kisko, Christian Dubos, Benoit Lacombe, Pierre Berthomieu, Gabriel Krouk, Hatem Rouached
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    TransDetect uses nondynamic transcriptomes to define regulatory pathways controlling phosphate accumulation in zinc-deficient plants.

  • A Light Harvesting Complex-Like Protein in Maintenance of Photosynthetic Components in <em>Chlamydomonas</em>
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    A Light Harvesting Complex-Like Protein in Maintenance of Photosynthetic Components in Chlamydomonas
    Lei Zhao, Dongmei Cheng, Xiahe Huang, Mei Chen, Luca Dall’Osto, Jiale Xing, Liyan Gao, Lingyu Li, Yale Wang, Roberto Bassi, Lianwei Peng, Yingchun Wang, Jean-David Rochaix, Fang Huang
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    Msf1 is required for the maintenance of PSI and chlorophyll-binding proteins mainly under stress conditions in Chlamydomonas.

  • A Dual Role for the OsK5.2 Ion Channel in Stomatal Movements and K<sup>+</sup> Loading into Xylem Sap
    You have accessRestricted Access
    A Dual Role for the OsK5.2 Ion Channel in Stomatal Movements and K+ Loading into Xylem Sap
    Thanh Hao Nguyen, Shouguang Huang, Donaldo Meynard, Christian Chaine, Rémy Michel, M. Rob G. Roelfsema, Emmanuel Guiderdoni, Hervé Sentenac, Anne-Aliénor Véry
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    The rice K+ channel OsK5.2 is necessary for rapid stomatal closure and contributes to shoot K+ supply from the root, thus highlighting the differing functional distribution of Shaker channels compared to Arabidopsis.

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    Altering the expression of a vacuolar iron transporter doubles iron content in white wheat flour.

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    Chlamydomonas flavodiiron proteins FlvA and FlvB massively drive the photosynthetic electron flow to O2 during the induction of photosynthesis and are critical for growth in fluctuating light.

  • Role of Type 2 NAD(P)H Dehydrogenase NdbC in Redox Regulation of Carbon Allocation in <em>Synechocystis</em>
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    Role of Type 2 NAD(P)H Dehydrogenase NdbC in Redox Regulation of Carbon Allocation in Synechocystis
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    Plant Physiol. Jul 2017, 174 (3) 1863-1880; DOI: https://doi.org/10.1104/pp.17.00398

    NdbC has a significant function in regulating carbon allocation between storage and the biosynthesis pathways but also affects cell division.

  • A Magnesium Transporter OsMGT1 Plays a Critical Role in Salt Tolerance in Rice
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    A Magnesium Transporter OsMGT1 Plays a Critical Role in Salt Tolerance in Rice
    Zhi Chang Chen, Naoki Yamaji, Tomoaki Horie, Jing Che, Jian Li, Gynheung An, Jian Feng Ma
    Plant Physiol. Jul 2017, 174 (3) 1837-1849; DOI: https://doi.org/10.1104/pp.17.00532

    Magnesium transported by OsMGT1 in rice roots is required for enhancing transport activity of OsHKT1;5, which confers salt tolerance through retrieval of Na from xylem vessels.

  • PSA3, a Protein on the Stromal Face of the Thylakoid Membrane, Promotes Photosystem I Accumulation in Cooperation with the Assembly Factor PYG7
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    PSA3, a Protein on the Stromal Face of the Thylakoid Membrane, Promotes Photosystem I Accumulation in Cooperation with the Assembly Factor PYG7
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    Plant Physiol. Jul 2017, 174 (3) 1850-1862; DOI: https://doi.org/10.1104/pp.17.00524

    PSA3 cooperates with the tetratricopeptide repeat protein PYG7 to promote PSI biogenesis in angiosperms.

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In this issue

Plant Physiology: 179 (2)
Plant Physiology
Vol. 179, Issue 2
Feb 2019
  • Table of Contents
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