Biology Reference
In-Depth Information
Thiel, T., Lyons, E. M., and Thielemeier, J. (1999) Organization and regulation of two clusters of nif genes in the cyanobacterium
Anabaena variabilis . In: Peschek, G.A., Lossffelhardt, W., and Schmetterer, G. (Eds.) The Phototrophic Prokaryotes . Kluwer,
Plenum. New York, USA. pp. 517-521.
Thomas, J. (1970) Absence of the pigments of photosystem II of photosynthesis in heterocysts of a blue-green alga. Nature
(London) 228: 181-183.
Thomas, J. (1972) Relationship between age of culture and occurrence of the pigments of photosystem II of photosynthesis
in heterocysts of a blue-green alga. J Bacteriol 110: 92-95.
Thomas, J., and David, K. A. V. (1971) Studies on the physiology of heterocyst production in nitrogen-fi xing blue-green alga
Anabaena sp. L-31 in continuous culture. J Gen Microbiol 66: 127-131.
Thomas, J., Meeks, J. C., Wolk, C. P., Shaffer, P. W., Austin, S. M., and Chien, W. S. (1977) Formation of glutamine from
[ 13 N] ammonia, [ 13 N] dinitrogen and [ 14 C] glutamate by heterocysts isolated from Anabaena cylindrica . J Bacteriol 129:
1545-1555.
Tiwari, D. N. (1977) Pattern of heterocyst differentiation as a function of nitrogen fi xing ability in blue-green alga Nostoc
linckia. Beitr Biol Pfi anzen 53: 177-186.
Tiwari, D. N., Pandey, A. K., and Mishra, A. K. (1981) Action of 2,4-dichlorophenoxyacetic acid and rifampicin on heterocyst
differentiation in the blue-green alga, Nostoc linckia . J Biosci 3: 33-39.
Tiwari, D. N.,Yadava, P. K., and Mishra, A. K. (1979) Developmental behaviour in mutants of Gloeotrichia ghosei defective in
nitrogen fi xation. Microbios Lett 12: 121-131.
Torrecilla, I., Leganés, F., Bonilla, I., and Fernández-Piñas, F. (2000) Use of recombinant aequorin to study calcium homeostasis
and monitor calcium transients in response to heat and cold shock in cyanobacteria. Plant Physiol 123: 161-175.
Torrecilla, I., Leganés, F., Bonilla, I., and Fernández-Piñas, F. (2004) A calcium signal is involved in heterocyst differentiation
in the cyanobacterium Anabaena sp. PCC 7120. Microbiology 150: 3731-3739. doi:10.1099/mic.0.27403-0
Toyoshima, M., Sasaki, N. V., Fujiwara, M., Ehira, S., Ohmori, M., and Sato, N. (2010) Early candidacy for heterocyst
differentiation into heterocysts in the fi lamentous cyanobacterium Anabaena sp. PCC 7120. Arch Microbiol 192: 23-31.
Tredici, M. R., Margheri, M. C., De Philippis, R., and Materassi, R. (1990) The role of hydrogen metabolism in photoheterotrophic
cultures of the cyanobacterium Nostoc sp. strain Cc isolated from Cycas circinalis L. J Gen Microbiol 136: 1009-1015.
Troshina, O. Y., Serebrykova, L. T., and Lindblad, P. (1996) Induction of H 2 -uptake and nitrogenase activities in the
cyanobacterium Anabaena variabilis ATCC 29413: Effects of hydrogen and organic substrate. Curr Microbiol 33: 11-15.
Tumer, N. E., Robinson, S. J., and Haselkorn, R. (1983) Different promoters for the Anabaena glutamine synthetase gene during
growth using molecular or fi xed nitrogen. Nature (London) 306: 337-342.
Tyagi, V. V. S. (1973a) Effects of some metabolic inhibitors on heterocyst formation in the blue-green alga, Anabaena doliolum .
Ann Bot 37: 361-368.
Tyagi, V. V. S. (1973b) Effects of actinomycin D on growth, heterocyst formation, and nucleic acid synthesis in the blue-green
alga, Anabaena doliolum . Curr Sci 42: 343-346.
Tyagi, V. V. S. (1975) The heterocysts of blue-green algae (Myxophyceae). Biol Rev 50: 247-284.
Tyagi, V. V. S., Ray, T. B., Mayne, B. C., and Peters, G. A. (1981) The Azolla - Anabaena relationship. XI. Phycobiliproteins in the
action spectrum for nitrogenase-catalyzed acetylene reduction. Plant Physiol 68: 1479-1484.
Ulrich, L. E, Koonin, E. V, and Zhulin, I. B. (2005) One-component systems dominate signal transduction in prokaryotes .
Trends Microbiol 13: 52-56.
Ungerer, J. L., Pratte, B. S., and Thiel, T. (2010) RNA processing of nitrogenase transcripts in the cyanobacterium Anabaena
variabilis . Arch Microbiol 192: 3311-3320.
Vaishampayan, A. (1982) Amino acid nutrition in the blue-green alga Nostoc muscorum. New Phytol 90: 545-549.
Valladares, A., Flores, E., and Herrero, A. (2008) Transcription activation by NtcA and 2-oxoglutarate of three genes involved
in heterocyst differentiation in the cyanobacterium Anabaena sp. strain PCC 7120. J Bacteriol 190: 6126-6133.
Valladares, A., Herrero, A., Pils, D., Schmetterer, G., and Flores, E. (2003) Cytochrome c oxidase genes required for nitrogenase
activity and diazotrophic growth in Anabaena sp. PCC 7120. Mol Microbiol 47: 1239-1249.
Valladares, A., Maldener, I., Muro-Pastor, A. M., Flores, E., and Herrero, A. (2007) Heterocyst development and diazotrophic
metabolism in terminal respiratory oxidase mutants of the cyanobacterium Anabaena sp. strain PCC 7120. J Bacteriol
doi:10.1128/JB.00220-07
Valladares, A., Muro-Pastor, A. M., Herrero, A., and Flores, A. (2004) The NtcA-dependent P1 promoter is utilized for glnA
expression in N 2 -fi xing heterocysts of Anabaena sp. strain PCC 7120. J Bacteriol 186: 7337-7343.
Van De Water, S. D., and Simon, R. D. (1982) Induction and differentiation of heterocysts in the fi lamentous cyanobacterium
Cylindrospermum licheniforme . J Gen Microbiol 128: 917-925.
Van Gorkom, H. J., and Donze, M. (1971) Localization of nitrogen fi xation in Anabaena . Nature (London) 234: 231-232.
Vargas, W., Cumino, A., and Salerno, G. L. (2003) Cyanobacterial alkaline/neutral invertases. Origin of sucrose hydrolysis
in the plant cytosol. Planta 216: 951-960.
Search WWH ::




Custom Search