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Results: 1-21 |
Results: 21

Authors: Engdahl, S Aronsson, H Sundqvist, C Timko, MP Dahlin, C
Citation: S. Engdahl et al., Association of the NADPH : protochlorophyllide oxidoreductase (POR) with isolated etioplast inner membranes from wheat, PLANT J, 27(4), 2001, pp. 297-304

Authors: Ren, N Timko, MP
Citation: N. Ren et Mp. Timko, AFLP analysis of genetic polymorphism and evolutionary relationships amongcultivated and wild Nicotiana species, GENOME, 44(4), 2001, pp. 559-571

Authors: Ouedraogo, JT Maheshwari, V Berner, DK St-Pierre, CA Belzile, F Timko, MP
Citation: Jt. Ouedraogo et al., Identification of AFLP markers linked to resistance of cowpea (Vigna unguiculata L.) to parasitism by Striga gesnerioides, THEOR A GEN, 102(6-7), 2001, pp. 1029-1036

Authors: Seyedi, M Timko, MP Sundqvist, C
Citation: M. Seyedi et al., The distribution of protochlorophyllide and chlorophyll within seedlings of the lip1 mutant of pea, PLANT CEL P, 42(9), 2001, pp. 931-941

Authors: Seyedi, M Selstam, E Timko, MP Sundqvist, C
Citation: M. Seyedi et al., The cytokinin 2-isopentenyladenine causes partial reversion to skotomorphogenesis and induces formation of prolamellar bodies and protochlorophyllide(657) in the lip1 mutant of pea, PHYSL PLANT, 112(2), 2001, pp. 261-272

Authors: Aronsson, H Sundqvist, C Timko, MP Dahlin, C
Citation: H. Aronsson et al., Characterisation of the assembly pathway of the pea NADPH : protochlorophyllide (Pchlide) oxidoreductase (POR), with emphasis on the role of its substrate, Pchlide, PHYSL PLANT, 111(2), 2001, pp. 239-244

Authors: Aronsson, H Sundqvist, C Timko, MP Dahlin, C
Citation: H. Aronsson et al., The importance of the C-terminal region and Cys residues for the membrane association of the NADPH : protochlorophyllide oxidoreductase in pea, FEBS LETTER, 502(1-2), 2001, pp. 11-15

Authors: Lebedev, N Karginova, O McIvor, W Timko, MP
Citation: N. Lebedev et al., Tyr275 and Lys279 stabilize NADPH within the catalytic site of NADPH : protochlorophyllide oxidoreductase and are involved in the formation of the enzyme photoactive state, BIOCHEM, 40(42), 2001, pp. 12562-12574

Authors: Cahoon, AB Timko, MP
Citation: Ab. Cahoon et Mp. Timko, yellow-in-the-dark mutants of chlamydomonas lack the CHLL subunit of light-independent protochlorophyllide reductase, PL CELL, 12(4), 2000, pp. 559-568

Authors: Wang, JM Sheehan, M Brookman, H Timko, MP
Citation: Jm. Wang et al., Characterization of cDNAs differentially expressed in roots of tobacco (Nicotiana tabacum cv Burley 21) during the early stages of alkaloid biosynthesis, PLANT SCI, 158(1-2), 2000, pp. 19-32

Authors: Gowda, BS Riopel, JL Timko, MP
Citation: Bs. Gowda et al., NRSA-1: a resistance gene homolog expressed in roots of non-host plants following parasitism by Striga asiatica (witchweed), PLANT J, 20(2), 1999, pp. 217-230

Authors: Riechers, DE Timko, MP
Citation: De. Riechers et Mp. Timko, Structure and expression of the gene family encoding putrescine N-methyltransferase in Nicotiana tabacum: new clues to the evolutionary origin of cultivated tobacco, PLANT MOL B, 41(3), 1999, pp. 387-401

Authors: Skinner, JS Timko, MP
Citation: Js. Skinner et Mp. Timko, Differential expression of genes encoding the light-dependent and light-independent enzymes for protochlorophyllide reduction during development in loblolly pine, PLANT MOL B, 39(3), 1999, pp. 577-592

Authors: Dahlin, C Aronsson, H Wilks, HM Lebedev, N Sundqvist, C Timko, MP
Citation: C. Dahlin et al., The role of protein surface charge in catalytic activity and chloroplast membrane association of the pea NADPH: protochlorophyllide oxidoreductase (POR) as revealed by alanine scanning mutagenesis, PLANT MOL B, 39(2), 1999, pp. 309-323

Authors: Seyyedi, M Timko, MP Sundqvist, C
Citation: M. Seyyedi et al., Protochlorophyllide, NADPH-protochlorophyllide oxidoreductase, and chlorophyll formation in the lip1 mutant of pea, PHYSL PLANT, 106(3), 1999, pp. 344-354

Authors: Lebedev, N Timko, MP
Citation: N. Lebedev et Mp. Timko, Protochlorophyllide oxidoreductase B-catalyzed protochlorophyllide photoreduction in vitro: Insight into the mechanism of chlorophyll formation in light-adapted plants, P NAS US, 96(17), 1999, pp. 9954-9959

Authors: Timko, MP Cahoon, AB
Citation: Mp. Timko et Ab. Cahoon, Transgenic plants for the production of human therapeutics, APPLIED PLANT BIOTECHNOLOGY, 1999, pp. 155-179

Authors: Aronsson, H Almkvist, J Sundqvist, C Timko, MP Dahlin, C
Citation: H. Aronsson et al., Characterization of the plastid import reaction of the pea NADPH: Protochlorophyllide oxidoreductase (POR)., NATO ASI 3, 64, 1999, pp. 167-170

Authors: Cahoon, AB Timko, MP
Citation: Ab. Cahoon et Mp. Timko, Effects of nuclear y mutations on expression of plastid genes required forlight-independent chlorophyll formation in Chlamydomonas, NATO ASI 3, 64, 1999, pp. 195-200

Authors: Seyyedi, M Timko, MP Sundqvist, C
Citation: M. Seyyedi et al., Protochlorophyllide and POR in the lip1 mutant of pea, NATO ASI 3, 64, 1999, pp. 207-212

Authors: Lebedev, N Timko, MP
Citation: N. Lebedev et Mp. Timko, Protochlorophyllide photoreduction, PHOTOSYN R, 58(1), 1998, pp. 5-23
Risultati: 1-21 |