Handbook of Plant and Crop Physiology

(Steven Felgate) #1

  1. DJ Kyle, S Zalik. Development of the photochemical activity in relation to pigment and membrane protein ac-
    cumulation in chloroplasts of barley and its virescens mutant. Plant Physiol 69:1392–1400, 1988.

  2. SP Mayfield, WC Taylor. Carotenoid-deficient maize seedlings fail to accumulate light-harvesting chlorophyll
    a/bbinding protein (LHCP) mRNA. Eur J Biochem 144:79–84, 1984.

  3. JA Sullivan, JC Gray. Plastid translocation is required for the expression of nuclear photosynthesis genes in the
    dark and in roots of the pea lip1 mutant. Plant Cell 11:901–910, 1999.

  4. R Barbato, ML Di Paolo, F Rigoni, GM Giacometti. Identification of a stable precursor of the apoprotein of
    the PSII antenna complex CP29. J Plant Physiol 136:468–471, 1990.

  5. WC Taylor. Regulatory interactions between nuclear and plastic genomes. Annu Rev Plant Physiol Plant Mol
    Biol 40:211–233, 1989.

  6. J Duggan, M Gassman. Induction of porphyrin synthesis in etiolated bean leaves by chelators of iron. Plant
    Physiol 53:206–215, 1974.

  7. U Kittsteiner, H Brunner, W Rüdiger. The greening process in cress seedlings. II. Complexing agents and 5-
    aminolevulinate inhibit accumulation of cab-mRNA coding for the light-harvesting chlorophyll a/bprotein.
    Physiol Plant 81:190–196.

  8. U Oster, H Brunner, W Rüdiger. The greening process in cress seedlings. V. Possible interference of chloro-
    phyll precursors, accumulated after thujaplicin treatment, with light-regulated expression of Lhc genes. J Pho-
    tochem Photobiol 36:255–261, 1996.

  9. U Johanningmeier. Possible control of transcript levels by chlorophyll precursors in Chlamydomonas. Eur J
    Biochem 177:417–424, 1988.

  10. U Kittsteiner, H Brunner, W Rüdiger. The greening process in cress seedlings. I. Pigment accumulation and ul-
    trastructure after application of 5-aminolevulinate and complexing agents. Physiol Plant 81:190–196, 1991.

  11. R Guo, M Luo, JD Weinstein. Magnesium-chelatase from developing pea leaves. Characterization of a solu-
    ble extract from chloroplast and resolution into three required protein fractions. Plant Physiol 116:605–615,



  12. U Johanningmeier, SH Howell. Regulation of light-harvesting chlorophyll-binding protein mRNA accumula-
    tion in Chlamydomonas reinhardtii. Possible involvement of chlorophyll precursors. J Biol Chem
    259:13541–13549, 1984.

  13. PA Castelfranco, JTO Jones. Protoheme turnover and chlorophyll synthesis in greening barley tissue. Plant
    Physiol 55:485–490, 1975.

  14. D Jahn. Complex formation between glutamyl-tRNA synthase and glutamyl-tRNA reductase during tRNA-de-
    pendent synthesis of 5-aminolevulinic acid in Chlamydomonas. FEBS Lett 314:77–80, 1992.

  15. PA Castelfranco, X Zheng. Regulation of 5-aminolevulinic acid biosynthesis in developing chloroplasts. IV.
    An endogenous inhibitor from the thylakoid membranes. Plant Physiol 97:1–6, 1991.

  16. J Thomas, JD Weinstein. Measurements of heme efflux and heme content in isolated chloroplasts. Plant Phys-
    iol 94:1414–1423, 1990.

  17. J Lascelles, TP Hatch. Bacteriochlorophyll and heme synthesis in Rhodopseudomonas spheroides: possible
    role of heme in regulation of the branched biosynthetic pathways. J Bacteriol 98:712–720, 1969.

  18. JI Liro. Die Photochemische Chlorophyllbindung bei den Phanerogamen. Ann Acad Sci Fenn Ser A1:1–147,



  19. EC Sisler, WH Klein. The effect of age and various chemicals on the lag phase of chlorophyll synthesis in dark-
    grown bean seedlings. Physiol Plant 16:315–322, 1963.

  20. G Akoyunoglou, JH Argyroudi-Akoyunoglou. Effect of intermittent and continuous light on chlorophyll for-
    mation in etiolated plants at various age. Physiol Plant 22:288–295, 1966.

  21. AN Misra, SM Sahu, F Dilnawaz, P Mohapatra, M Misra, NK Ramaswamy, TS Desai. Photosynthetic pig-
    ment-protein content, electron transport activity and thermoluminescence properties of chloroplasts along the
    developmental gradient in greening wheat (Triticum aestivumL.) leaves. In: G Garab, ed. Photosynthesis:
    Mechanisms and Effects. Vol 4. Dordrecht: Kluwer Academic Publishers, 1998, pp 3179–3182.

  22. PA Castelfranco, PM Rich, SI Beale. The abolition of the lag phase in greening cucumber cotyledons by ex-
    ogenous-ALA aminolevulinic acid. Plant Physiol 53:615–618, 1974.

  23. K Apel, K Kloppstech. The effect of the light on the biogenesis of the light-scattering chlorophyll a/bprotein.
    Evidence for the requirement of chlorophyll afor the stabilization of the apoprotein. Planta 150:426–430, 1980.

  24. J Bennett. Biosynthesis of the light-harvesting chlorophyll a/bprotein. Polypeptide turnover in darkness. Eur
    J Biochem 118:61–70, 1981.

  25. FG Plumley, GW Schmidt. Light-harvesting chlorophyll a/bcomplexes: interdependent pigment synthesis and
    protein assembly. Plant Cell 7:689–704, 1995.

  26. B Schoefs, M Bertrand, Y Lemoine. Pigment biosynthesis during the first photoperiod of greening (16 h) of 2-
    d-old and 10-d-old bean leaves. In: G. Garab, ed. Photosynthesis: Mechanisms and Effects. Vol III. Dordrecht:
    Kluwer Academic Publishers, 1998, pp 3277–3280.

  27. LJ Rodgers, SPJ Shah, TW Goodwin. Compartmentation of terpenoid biosynthesis in green plants. Biochem J
    114:395–405, 1966.

  28. A Heintze, J Görlach, C Leuschner, P Hoppe, P Hagelstein, D Schulze-Siebert, G Schulze. Plastidic isoprenoid
    synthesis during chloroplast development. Plant Physiol 93:1121–1127, 1990.


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