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Paul Galland

  • Živanović B., Ullrich K., Spasić S.Z., Galland P. (2023) Auxin- and pH-induced guttation in Phycomyces sporangiophores: relation between guttation and diminished elongation growth. Protoplasma 260, 1109-1133. 

  • Dhiman S.K., Wu F., Galland P. (2023) Effects of weak static magnetic fields on the development of seedlings of Arabidopsis thaliana. Protoplasma 260, 767-786. 

  • Živanović B., Danilović Luković J., Korać A., Stanić M., Spasić S.Z., Galland P. (2022) Signal transduction in Phycomyces sporangiophores: columella as a novel sensory organelle mediating auxin-modulated growth rate and membrane potential. Protoplasma 259, 917-935.

  • Dümmer M., Spasić S.Z., Feil M., Michalski C., Forreiter C., Galland P. (2021) Tangent algorithm for photogravitropic balance in plants and Phycomyces blakesleeanus: roles for EHB1 and NPH3 of Arabidopsis thaliana. J Plant Physiol. 260, 153396.

  • Rath M., Dümmer M., Galland P., C. Forreiter (2020) A gravitropic stimulus alters the distribution of EHB1, a negative effector of root gravitropism in Arabidopsis. Plant Direct 4, 1–14.

  • Corrochano L.M. and Galland P. (2019) Measurement of phototropism of the sporangiophore of Phycomyces blakesleeanus. In: Methods in Molecular Biology (MIMB, Vol 1924): Chapter 10 Phototropism (ed. K.T. Yamamoto), pp 63-81, Humana Press, New York, NY.

  • Dhiman S.K. and P. Galland (2018) Effects of weak static magnetic fields on the gene expression of Arabidopsis thaliana. J Plant Physiol. 231, 9 – 18.

  • Živanović B., Ullrich K. K., Steffens B., Spasić S., Galland P. (2018) The effect of auxin (indole-3-acetic acid) on the growth rate and tropism of the sporangiophore of Phycomyces blakesleeanus and identification of auxin-related genes. Protoplasma 255, 1331–1347.

  • Michalski C, Dümmer M., Galland P., Forreiter C. (2017) Impact of EHB1 and AGD12 on root and hypocotyl phototropism in Arabidopsis thaliana. J Plant Growth Regulation 36, 660–668.

  • Dümmer M., C. Michalski, L.-O. Essen, M. Rath, P. Galland, Forreiter C. (2016) EHB1 and AGD12, two calcium-dependent proteins affect gravitropism antagonistically in Arabidopsis thaliana. J Plant Physiol. 206, 114-124.

  • Corrochano L.M. and P. Galland (2016) Photomorphogenesis and Gravitropism. In: Mycota Vol. I, Growth, Differentiation and Sexuality. 3rd edition (Ed. J. Wendland). Springer International Publishing. Chapter 11, pp. 235 – 256.

  • Dümmer M., Michalski, Forreiter C., P. Galland (2016) Phenotypic reversal in Arabidopsis thaliana: sucrose as a signal molecule controlling the phenotype of gravi- and phototropism mutants. J. Plant Growth Regulation 35, 430-439.

  • Dümmer M., C. Forreiter, P. Galland (2015) Gravitropism in Arabidopsis thaliana: root-specific action of the ehb gene and violation of the resultant law. J. Plant Physiol. 189, 24-33.

  • Grolig, F., J. Moch, A. Schneider, P. Galland (2014) Actin cytoskeleton and organelle movement in the sporangiophore of the zygomycete Phycomyces blakesleeanus. Plant Biology (Suppl. 1) 16, 167-178.

  • Göttig M. and P. Galland (2014) Gravitropism in Phycomyces: violation of the so-called resultant law - evidence for two response components. Plant Biology (Suppl. 1) 16, 158-66.

  • Galland, P. (2014) The sporangiophore of Phycomyces blakesleeanus: a tool to investigate fungal gravireception and graviresponses. Plant Biology (Suppl. 1) 16, 58-68.

  • Sineshchekov V., L. Koppel, E. Shor, G. Kochetova, P. Galland, Zeidler M. (2013) Protein phosphatase activity and acidic/alkaline balance as factors regulating the state of phytochrome A and its two native pools in the plant cell. Photochem. Photobiol. Sci. 89, 83-96.

  • Bayram Ö., C. Biesemann, S. Krappmann, P. Galland, G.H. Braus (2008) More than a repair enzyme: Aspergillus nidulans photolyase-like CryA is a regulator of sexual development. Mol. Biol. Cell 19, 3254-3262.

  • Galland, P., V. Fries, F. Grolig and W. Schmidt (2007) Gravireception of the sporangiophore of Phycomyces blakesleeanus. Adv. Space Res.

  • Ahmad M., P. Galland, T. Ritz, R. Wiltschko and W. Wiltschko (2007) Magnetic intensity affects cryptochrome-dependent responses in Arabidopsis thaliana. Planta 225, 615-624.

  • Grolig, F., M. Döring and P. Galland (2006) Gravisusception by buoyancy: a mechanism ubiquitous among fungi? Protoplasma 229, 117-123.

  • Corrochano L. M. and P. Galland (2006) Photomorphogenesis and Gravitropism in Fungi. In: The Mycota I, Growth, Differentiation and Sexuality. (Eds. U. Kues, R. Fischer). Springer-Verlag Berlin Heidelberg, pp. 231-257.

  • Galland, P. and A. Pazur (2005) Magnetoreception in Plants. J. Plant Res. 118, 371-389.

  • Galland, P., H. Finger and Y. Wallacher (2004) Gravitropism in Phycomyces: threshold determination on a clinostat centrifuge. J. Plant Phys. 161, 733-739.

  • Grolig, F., H. Herkenrath, T. Pumm, A. Gross and P. Galland (2004) Gravity susception by buoyancy: floating lipid globules in sporangiophores of Phycomyces. Planta 218, 658-667.

  • Tsolakis, G., N. K. Moschonas, P. Galland and K. Kotzabasis (2004) Involvement of G proteins in the mycelial photoresponses of Phycomyces. Photochem. Photobiol. 79, 360-370.

  • Schmidt, W. and P. Galland (2004) Optospectroscopic detection of primary reactions associated with the graviperception of Phycomyces: effects of micro- and hypergravity. Plant Physiol. 135, 183-92.

  • Galland, P. and N. Tölle (2003) Light-induced fluorescence changes in Phycomyces: evidence for blue light-receptor associated flavo-semiquinones. Planta 217, 971-982.

  • Galland, P. (2003) Phototropism. In: Handbook of Organic Photochemistry and Photobiology. Photobiology (W. M. Horspool and F. Lenci, eds.). pp. 132-1 – 132-17. Uniscience Series, CRC Press, Boca Raton, Florida, USA.

  • Ahmad, M., N. Grancher, M. Heil, R.C. Black, B. Giovani, P. Galland and D. Lardemer (2002). Action spectrum for cryptochrome-dependent hypocotyl growth inhibition in Arabidopsis. Plant Physiol. 129, 774-785.

  • Galland, P. (2002) Tropisms of Avena coleoptiles: sine law for gravitropism, exponential law for photogravitropic equilibrium. Planta 215, 779-784

  • Galland, P. (2002) Photogravitropic equilibrium in Avena coleoptiles: fluence rate-response relationships and dependence on dark adaptation and clinostating. J. Plant Res. 115, 131-140.

  • Galland, P., Y. Wallacher, H. Finger, M. Hannappel, S. Tröster, E. Bold and F. Grolig (2002) Tropisms in Phycomyces: sine law for gravitropism, exponential law for photogravitropic equilibrium. Planta 214, 931-938.

  • Ogorodnikova, U., O. Sineshchekov and P. Galland (2002) Blue-light perception in stage-1 sporangiophores of Phycomyces: a role for apical lipid globules? J. Plant Physiol. 159, 205-209.

  • Fries, V., T. Krockert, F. Grolig and P. Galland (2002) Statoliths in Phycomyces: spectrofluorometric characterization of octahedral protein crystals. J. Plant Physiol. 159, 39-47.

  • Zivanovic, B., K. Köhler, P. Galland and M.H. Weisenseel (2001) Intracellular measurements of the membrane potential of Phycomyces sporangiophores. Electr. Magnetobiol. 20, 343-362.

  • Blasco, J.L., D. Roeßink, E.A. Iturriaga, A.P. Eslava and P. Galland (2001) Photocarotenogenesis in Phycomyces: expression of the carB gene encoding phytoene dehydrogenase. J. Plant Res. 114, 25- 31.

  • Galland, P. (2001) Phototropism in Phycomyces. In: Comprehensive Series in Photosciences, Vol. 1Photomovement (D.-P. Häder, M. Lebert, eds.). pp. 621-657. Elsevier, Amsterdam

  • Eibel, P., C. Schimek, V. Fries, F. Grolig, T. Schapat, W. Schmidt, H. Schneckenburger, T. Ootaki and P. Galland (2000) Statoliths in Phycomyces: characterization of octahedral protein crystals. Fungal Gen. Biol. 29, 211-220.

  • Grolig, F., P. Eibel, C. Schimek, T. Schapat, D.S. Dennison and P. Galland (2000) Interaction between gravitropism and phototropism in sporangiophores of Phycomyces. Plant Physiol. 123, 765-776.

  • Schmidt, W. and P. Galland (2000) Gravity-induced absorbance changes in Phycomyces: a novel method for detecting primary reactions of gravitropism. Planta 210, 848-852.

  • Tsolakis, G., E. Parashi, P. Galland and K. Kotzabasis (1999) Blue light signaling chains in Phycomyces: phototransduction of carotenogenesis and morphogenesis involves distinct protein kinase/phosphatase elements. Fungal. Gen. Biol. 28, 201-213.

  • Schimek, C., P. Eibel, T. Horie, P. Galland and T. Ootaki (1999) Protein crystals in Phycomyces sporangiophores are involved in graviperception. Adv. Space Res. 24, 687-696.

  • Schimek, C., P. Eibel., F. Grolig, T. Horie, T. Ootaki and P. Galland (1999) Gravitropism in Phycomyces: a role for sedimenting protein crystals and for floating lipid globules. Planta 210, 132-142.

  • Schmidt, W. and P. Galland (1999) Light-induced absorbance changes in Phycomyces: evidence for cryptochrome-associated flavosemiquinones.Planta 208, 274-282.

  • Galland, P. (1998) Blue-light reception in plants and fungi. In: Progress in Botanical Research. Proceedings of the 1st Balkan Botanical Congress. (I. Tsekos and M. Moustakas, eds.). pp. 587-594. Kluwer Academic Publishers, Dordrecht Boston London.

  • Galland, P. (1998) Reception of far-ultraviolet light in Phycomyces: antagonistic interaction with blue and red light. Planta 205, 269-276.

  • Geiß, D., H. Senger and P. Galland (1998) Photoreception in Euglena gracilis: fluence-rate and time dependence of photoaccumulation and photodispersal. J. Plant Res. 111, 431-440.

  • Galland, P., A.P. Eslava and M.I. Alvarez (1997) Photoreception and phototropism in Phycomyces: antagonistic interaction between far-UV, blue, and red light. Photochem. Photobiol. 66, 879-884.

  • Geiß, D., H. Senger and P. Galland (1997) Pigments associated with the flagellum of Euglena gracilis. J. Plant Res. 110, 421-433.

  • Campuzano, V., P. Galland, M.I. Alvarez and A.P. Eslava (1996) Blue-light receptor requirement for gravitropism, autochemotropism and ethylene response in Phycomyces. Photochem. Photobiol. 63, 686-694.

  • Galland, P. (1996) Ultraviolet killing and photoreactivation of Phycomyces spores. Microbiol. Res. 151, 9-17.

  • Tillmanns, S., H. Senger and P. Galland (1995) Reduced Near-UV sensitivity in Phycomyces mutants affected in the biosynthesis of 6,7-dimethyl-8-ribityllumazine. Photochem. Photobiol. 62, 588-595.

  • Galland, P., S. Amon, H. Senger and V.E.A. Russo (1995) Blue-light reception in Phycomyces: Red-light sensitization in madC mutants. Bot. Acta 108, 344-350.

  • Campuzano, V., P. Galland, A.P. Eslava and M.I. Alvarez. (1995) Genetic characterization of two phototropism mutants of Phycomyces with defects in the genes madI and madJ. Curr. Genet. 27,524-527.

  • Campuzano, V., P. Galland, H. Senger, M.I. Alvarez and A.P. Eslava (1994) Isolation and characterization of phototropism mutants of Phycomyces insensitive to ultraviolet light. Curr. Genetics. 26, 49-53.

  • Sineshchekov, V.A., D. Geiß, O.A. Sineshchekov, P. Galland and H. Senger (1994) Fluorimetric characterization of the photoreceptor system of Euglena gracilis: evidence for energy migration. J. Photochem. Photobiol. B: Biol. 23, 225-237.

  • Hohl, N., P. Galland , H. Senger and A. Eslava (1992) Altered pterin patterns in photoreceptor mutants of Phycomyces blakesleeanus with defective madI gene. Bot. Acta 105, 441-448.

  • Galland, P. (1992) Fourty years of blue-light research and no anniversary. Photochem. Photobiol. 56,847-854.

  • Hermsmeier, D., E. Mala, J. Thielmann, R. Schulz, P. Galland and H. Senger (1992) Regulation of thephotosynthetic adaptation in Scenedesmus obliquus depending on blue and red light. In: Regulation of Chloroplast Biogenesis (J.H. Argyroudi-Akoyunoglou, ed.). pp. 499-504. Plenum Publishing Company, London.

  • Hohl, N., P. Galland and H. Senger (1992) Altered pterin patterns in photobehavioral mutants of Phycomyces blakesleeanus. Photochem. Photobiol. 55, 239-245.

  • Galland, P. and H. Senger (1991) Guest Editorial. Special issue, Photobiology and Plant Molecular Biology. J. Photochem. Photobiol. B: Biol. 11, 103-105.

  • Hermsmeier, D., E. Mala, J. Thielmann, R. Schulz, P. Galland and H. Senger (1991) Antagonistic blue and red-light regulation of cab-gene expression during photosynthetic adaptation in Scenedesmus obliquus. J. Photochem. Photobiol. B: Biol. 11, 189-202.

  • Galland, P. (1991) Yearly Review. Photosensory adaptation in aneural organisms. Photochem. Photobiol. 54, 1119-1134.

  • Nebenführ, A., A. Schäfer, P. Galland, H. Senger and R. Hertel (1991) Riboflavin binding sites associated with flagella of Euglena: A candidate for blue-light photoreceptor? Planta 185, 65-71

  • Galland, P. and H. Senger (1991) Flavins as possible blue-light photoreceptors. In: Photoreceptor Evolution and Function (G.H. Holmes, ed.). pp. 65-124. Academic Press, London New York.

  • Thielmann, J. and P. Galland (1991) Action spectra for photosynthetic adaptation in Scenedesmus obliquus. II. Chlorophyll biosynthesis under heterotrophic conditions. Planta 183, 340-346.

  • Thielmann, J., P. Galland and H. Senger (1991) Action spectra for photosynthetic adaptation in Scenedesmus obliquus. I. Chlorophyll biosynthesis under autotrophic conditions. Planta 183, 334- 339.

  • Pratt, L. H., H. Senger and P. Galland (1990) Phytochrome and other receptors. In: Methods in Plant Biochemistry. Vol. 4 Lipids, Membranes and Aspects of Photobiology (J.R. Bowyer and J. Harwood, eds.). pp. 185-230. Academic Press, London New York.

  • Schmidt, W., P. Galland, H. Senger and M. Furuya (1990) Microspectrophotometry of Euglena gracilis.

  • Pterin- and flavin-like fluorescence in the paraflagellar body. Planta 182, 375-381. Schmidt et al 1990.pdf

  • Galland, P. (1990) Phototropism of the Phycomyces sporangiophore: a comparison with higher plants. Photochem. Photobiol. 52, 233-248.

  • Galland, P., P. Keiner, D. Dörnemann, H. Senger, B. Brodhun and D.-P. Häder (1990) Pterin- and flavinlike fluorescence associated with isolated flagella of Euglena gracilis. Photochem. Photobiol. 51, 675- 680.

  • Palit, A., P. Galland and E.D. Lipson (1989) High- and low-intensity photosystems in Phycomyces phototropism: effect of mutations in genes madA, madB, and madC. Planta 177, 547-553.

  • Galland, P., M. Orejas and E.D. Lipson (1989) Light-controlled adaptation in Phycomyces: evidence for a novel yellow-light absorbing pigment. Photochem. Photobiol. 49, 493-500.

  • Galland, P., L.M. Corrocháno and E.D. Lipson (1989) Subliminal light control of dark adaptation bkinetics in Phycomyces phototropism. Photochem. Photobiol. 49, 485-492.

  • Galland, P. (1989) Photosensory adaptation in plants. Bot. Acta 102, 11-20.

  • Corrochano, L.M., P. Galland, E.D. Lipson and E. Cerdá-Olmedo (1988) Photomorphogenesis in Phycomyces: fluence-response curves and action spectra. Planta 174, 315-320.

  • Bürger, J., S. Miyachi, P. Galland and H. Senger (1988) Quantum requirements of photosyntheticoxygen evolution and 77 K-fluorescence emission spectra in unicellular green algae grown under low and high CO2-conditions. Bot. Acta 101, 229-232.

  • Galland, P. and H. Senger (1988) The role of pterins in the photoreception and metabolism of plants. Photochem. Photobiol. 48, 811-820.

  • Galland, P. and H. Senger (1988) The role of flavins in blue-light reception. J. Photochem. Photobiol. B: Biol. 1, 277-294.

  • Presti, D. and P. Galland (1987) Photoreceptor biology of Phycomyces. In: Phycomyces. (E. Cerdá-Olmedo and E.D. Lipson, eds.). pp. 93-126. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY, USA.

  • Lipson, E.D. and P. Galland (1987) Measurement of Phycomyces light responses. In: Phycomyces (E. Cerdá-Olmedo and E.D. Lipson, eds.). pp. 367-374. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY, USA.

  • Galland, P. and T. Ootaki (1987) Differentiation and Cytology. In: Phycomyces (E. Cerdá-Olmedo and E.D. Lipson, eds.). pp. 281-316. Cold Spring Harbor Press, Cold Spring Harbor, NY, USA.

  • Galland, P. and E.D. Lipson (1987) Light calibrations and radiometric units. In: Phycomyces (E. Cerdá- Olmedo and E.D. Lipson, eds.). pp. 375-380. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY, USA.

  • Galland, P. and E.D. Lipson (1987) Light physiology of Phycomyces sporangiophore. In: Phycomyces (E. Cerdá-Olmedo and E.D. Lipson, eds.). pp. 49-92. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY, USA.

  • Galland, P. and E.D. Lipson (1987) Blue-light reception in Phycomyces phototropism: evidence for two photosystems operating in low- and high-intensity ranges. Proc. Natl. Acad. Sci. USA 84, 104-108.

  • Galland, P. (1987) Action spectroscopy. In: Blue Light Responses: Phenomena and Occurrence in Plants and Microorganisms. Vol. II (H. Senger, ed.). pp. 37-51. Uniscience Series, CRC Press, Boca Raton, Florida, USA.

  • Reddy, M.V., P. Galland and E.D. Lipson (1985) A new allele with abnormal cAMP phosphodiesterase activity in Phycomyces. Mol. Gen. Genet. 201, 124-125.

  • Galland, P., A. Palit and E.D. Lipson (1985) Phycomyces: Phototropism and light-growth response to pulse stimuli. Planta 165, 538-547.

  • Galland, P. and V.E.A. Russo (1985) Tropic reversal in Phycomyces. Planta 163, 401-404.

  • Galland, P. and E.D. Lipson (1985) Modified action spectra of photogeotropic equilibrium in Phycomyces blakesleeanus mutants with defects in genes madA, madB, madC, and madH. Photochem. Photobiol. 41, 331-335.

  • Galland, P. and E.D. Lipson (1985) Action spectra for phototropic balance in Phycomyces blakesleeanus: Dependence on reference wavelength and intensity range. Photochem. Photobiol. 41, 323-329

  • Galland, P. and V.E.A. Russo (1984) Growth-rate adaptation of Phycomyces sporangiophores to partial depletion of oxygen. Planta 161, 137-141.

  • Galland, P., A. Pandya and E.D. Lipson (1984) Wavelength dependence of dark adaptation in Phycomyces phototropism. J. Gen. Physiol. 84, 739-751.

  • Galland, P. and V.E.A. Russo (1984) Threshold and adaptation in Phycomyces. Their interrelation and regulation by light. J. Gen. Physiol. 84, 119-132.

  • Galland, P. and V.E.A. Russo (1984) Light and dark adaptation in Phycomyces phototropism. J. Gen. Physiol. 84, 101-118.

  • Lipson, E.D., P. Galland and J.A. Pollock (1984) Blue light receptors in Phycomyces investigated by action spectroscopy, fluorescence lifetime spectroscopy, and two-dimensional gel electrophoresis. In: Blue Light Effects in Biological Systems (H. Senger, ed.). pp. 228-236. Springer-Verlag, Berlin Heidelberg New York Tokyo.

  • Galland, P. and E.D. Lipson (1984) Photophysiology of Phycomyces blakesleeanus. Photochem. Photobiol. 40, 795-800.

  • Galland, P. (1983) Action spectra of photogeotropic equilibrium in Phycomyces wild type and three behavioral mutants. Photochem. Photobiol. 37, 221-228.

  • Russo, V.E.A., P. Galland, M. Toselli and L. Volpi (1980) Blue light induced differentiation in Phycomyces blakesleeanus. In: The Blue Light Syndrome (H. Senger, ed.). pp. 563-569. Springer-Verlag, Berlin Heidelberg New York.

  • Russo, V.E.A. and P. Galland (1980) Sensory physiology of Phycomyces blakesleeanus. Structure and Bonding 41, 71-110.

  • Galland, P. and V.E.A. Russo (1979) The role of retinol in the initiation of sporangiophores of Phycomyces blakesleeanus. Planta 146, 257-262

  • Galland, P. and V.E.A. Russo (1979) Photoinitiation of sporangiophores in Phycomyces mutants deficient in phototropism and in mutants lacking b-carotene. Photochem. Photobiol. 29, 1009-1014.

  • Galland, P., R. Cortini and E. Calef (1975) Control of gene expression in bacteriophage l: suppression of N mutants by mutations of the antirepressor. Mol. Gen. Genet. 142, 155-170.

  • Galland, P., P. Bassi and E. Calef (1973) On the mode of antirepressor action in anti-immune cells. Mol. Gen. Genet. 125, 231-239.

  • Doktorarbeit (1975) Zur Wirkungsweise des Regulatorgens Ai im Bakteriophagen Lambda. Albert-Ludwigs-Universität Freiburg i. Br.

  • Diplomarbeit (1971) Vergleichende Charakterisierung von Lambda-dv Episomen in polA-KM Trägerzellen. Albert-Ludwigs-Universität Freiburg i. Br.