Kevers, Claire ; Université de Liège > Département des sciences de la vie > Département des sciences de la vie
Filali, M.; Laboratoire de Biologie Cellulaire et Biochimie Végétale EA 1370, Université de Tours, Faculté de Pharmacie, 31 avenue Monge, Tours, 37200, France
Petit-Paly, G.; Laboratoire de Biologie Cellulaire et Biochimie Végétale EA 1370, Université de Tours, Faculté de Pharmacie, 31 avenue Monge, Tours, 37200, France
Hagège, D.; Laboratoire de Biochimie et Physiologie Végétale, Université de Bretagne Occidentale, BP 809, Brest, 29275, France
Rideau, M.; Laboratoire de Biologie Cellulaire et Biochimie Végétale EA 1370, Université de Tours, Faculté de Pharmacie, 31 avenue Monge, Tours, 37200, France
Gaspar, Th; Hormonologie fondamentale et appliquée, Institut de Botanique B-22, Université de Liège, Sart Tilman, Liège, B-4000, Belgium
Language :
English
Title :
Habituation of plant cells does not mean insensitivity to plant growth regulators
Publication date :
1996
Journal title :
In Vitro Cellular and Developmental Biology. Plant
scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.
Bibliography
Binns, A. N.; Roman, G.; Teutonico, R. A. Accumulation of dehydrodiconiferyl alcohol glucoside in cytokinin habituated cell lines. In: Kaminek, M.; Mok, D. W. S.; Zazimalova, E., eds. Physiology and biochemistry of cytokinins in plants. The Hague: SPB Academic Publishing; 1992:59-64.
Bishop, J. M. The molecular genetics of cancer. Science 235:305-311; 1987.
Bradford, M. M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72:248-254: 1976.
Braun, A. C.; Morel, G. A comparison of normal, habituated and crown-gall tumor tissue implants in the European grape. Am. J. Bot. 37:499-505; 1950.
Butcher, D. N. Plant tumour cells. In: Street, H. E., ed. Plant tissue and cell culture. Oxford. England: Blackwell Scientific Publications; 1977: 429-461.
Campell, B. R.; Town, C. D. Physiology of hormone autonomous tissue lines derived from radiation-induced tumours of Arabidopsis thaliana. Plant Physiol. 97:1166-1173; 1991.
Carrié, B.; Hagège, D.; Kevers, C., et al. Auxin-induced growth enhancement of a sugarbeet callus while reducing ethylene production and polyamine. Paris, France: C. R. Acad. Sci. 315:165-170; 1992.
Chen, K. H. Analysis of indole-3-acetic acid in tobacco genetic tumours and wheat GA3-insensitive mutant "Toru Thumb." 1987. PhD Thesis, Univ. of Maryland, College Park, MD.
Christou, P. Habituation in in vitro soybean cultures. Plant Physiol. 88:809-812: 1987.
Crèvecoeur, M.; Hagège, D.; Catesson, A. M., et al. Ultrastructural characteristics of cells from normal and habituated sugar beet calli. Plant Physiol. Biochem. 30:87-95; 1992.
Décendit, A.: Liu, D.; Ouelhazi, L., et al. Cytokinin-enhanced accumulation of indole alkaloids in Catharanthus roseus cell cultures. The factors affecting the eytokinin response. Plant Cell Rep. 11:400-403; 1992.
Everett, N. P. 2,4-D-independent cell cultures of sycamore (Acer pseudoplatanus L.): isolation, responses to 2,4-D and kinetin, and sensitivities to antimetabolites. J. Exp. Bot. 32:171-182; 1981.
Gamborg, O. L.; Miller, R. A.; Ojima, K. Nutrient requirements of suspension cultures of soybean root cells. Exp. Cell Res. 50:151-158; 1968.
Gaspar, Th. Seleniated forms of indolylacetic acid: new powerful synthetic auxins. Acros Organics Acta. 1:65-66; 1995.
Gaspar, Th.; Hagège, D.; Kevers, et al. When plant teratomas turn into cancers in the absence of pathogens. Physiol. Plant. 83:696-701; 1991.
Gaspar, Th.; Kevers, C.; Bisbis, B., et al. Cancer végétal in vitro: aspects morphogénétiques et biochimiques. In: Dubois, J., Demarly, Y., eds. Quel avenir pour l'amélioration des plantes. Paris, France: John Libbey Eurotext; 1995:165-171.
Gaspar, Th.; Kevers, C.; Penel, C., et al. Auxin control of calcium-mediated peroxidase secretion by auxin-dependent and auxin-independent sugarbeet cells. Phytochemistry 22:2657-2660; 1983.
Gaspar, Th,; Kevers. C.; Penel, C., et al. Biochemical characterization of normal and habituated sugarbeet calli: relationship with anatomy, habituation and organogenesis. Potsdamer Forschungen B57:20-30; 1988.
Gautheret, R. J. Hétéro-auxines et cultures de tissus végétaux. Bull. Soc. Chim. Biol. 24.13-41; 1942.
Gautheret, R. J. Sur la variabilité de propriétés physiologiques des cultures de tissus végétaux. Rev. Gen. Bot. 62:1-106; 1955.
Hagège, D. Etude comparative du cal normal et du cal habitué de Beta vulgaris L. altissima: aspects cytologiques, ultrastructuraux et biochimiques. Relations avec l'état tumoral. 1990. Thèse Doct. Univ. of Caen.Caen, France.
Hagège, D. Proto-oncogenes in plants: widespread conserved genes for which roles? Plant Physiol. Biochem. 31:621-629; 1993.
Hagège, D.; Catania, R.; Micalef, H., et al. Nuclear shape and DNA content of fully habituated nonorganogenic sugarbeet cells. Protoplasma 166:49-54; 1992a.
Hagège, D.; Kevers, C.; Boucaud, J., et al. Polyamines, phospholipids, and peroxides in normal and habituated sugarbeet calli. J. Plant Physiol. 136:641-645; 1990a.
Hagège, D.; Kevers, C.; Gaspar, Th., et al. A comparison between ethylene production, ACC and mACC contents, and hydroperoxyde level in normal and habituated sugarbeet calli. Physiol. Plant. 82:397-400; 1991.
Hagège, D.; Kevers, C.; Le Dily, et al. NaCl dependent growth rate of normal and habituated calli, ethylene production and peroxidase activity. Paris, France: C. R. Acad. Sci. 310:259-264; 1990b.
Hagège, D.; Werek-Reichart, D.; Schmitt, P., et al. Deficiency in tetrapyrrole-contoining compounds in a non-organogenic habituated sugarbeet cell line. Plant Physiol. Biochem. 30:649-654; 1992b.
Hansen, C. E.; Meins, F., Jr.; Aebi, R. Hormonal regulation of zeatin riboside accumulation by cultured tobacco cells. Planta 172:520-525; 1987.
Hervagault, J. F.; Ortoleva, P. J.; Ross, J., et al. Reversal of the crown-gall tumor: an interpretation based on multiple steady state. Proc. Natl. Acad. Sci. USA 88:10797-10800; 1991.
Ikeda, M.; Ojima, K.; Oshira, K., et al. Habituation in suspension-cultured soybean cells to thiamine and its precursors. Plant Cell Physiol. 20-733-739; 1979.
Jackson, J. A.; Lyndon, R. F. Habituation: cultural curiosity or developmental determinant? Physiol. Plant. 79:579-583: 1990.
Jemmali, A.; Boxus, P.; Kevers, C., et al. Carry over of morphological and biochemical characteristics associated to hyperflowering of micropro-pagated strawberries J. Plant Physiol. 147:435-440; 1995.
Kevers, C. Control by 2.4-D of auxin protectors in sugar-beet callus. Arch. Intern. Physiol. 20:733-739; 1981.
Kevers, C.; Coumans, M.; De Greef, W., et al. Habituation in sugarbeet callus: auxin content, auxin protectors, peroxidase pattern and inhibitors. Physiol. Plant. 51:281-286; 1981.
Kevers, C.; Greppin, H.; Penel, C., et al. Short- and long-term effects of auxins on ethylene production by auxin-dependent and auxin-independent sugarbeet cell lines. Arch. Intern. Physiol. Biochem. 93: B39-B40; 1985.
Kevers, C.; Sticher, L.; Penel, C., et al. Calcium-controlled peroxidase secretion by sugarbeet cell suspensions in relation to habituation. Plant Growth Regul. 1:61-66; 1982.
Kulescha, Z. Recherches sur l'élaboration de substances de croissance par les tissus végétaux. Rev. Gen. Bot. 59:19-41; 1952.
Kulescha, Z.; Gautheret, R. Sur l'élaboration de substances de croissance par 3 types de cultures de tissus de Scorzonère: cultures normales, cultures de erowngall et cultures accountumées à l'hétéro-auxine. Pans, France: C. R. Acad. Sci. 227:292-294; 1948.
Kutacek, M.; Eeder, J.; Opatrny, Z., et al. Comparison of anthranilate synthase activity and IAA content in normal and auxin-habituated Dioscorea deltoida tissue cultures. Biochem. Physiol. Pflanz. 176:244-250; 1981.
Le Dily, F.: Billard, J. P.; Gaspar, Th., et al. Disturbed nitrogen metabolism associated with the hyperhydric status of sugarbeet. Physiol. Plant. 88:129-134; 1993.
Mayer, J. E.; Hahne, G.; Palme, K., et al. A simple and general plant tissue extraction procedure for two-dimensional gel electrophoresis. Plant Cell Rep. 6:77-81; 1987.
Meins, F., Jr. Habituation of cultured plant cells. In: Kahl, G.; Schell, J. S., eds. Molecular biology of plant tumors. London: Academic Press; 1982:3-31.
Meins, F., Jr. Habituation: heritable variation in the requirement of cultured plant cells for hormones. Annu. Rev. Genet. 23:395-408; 1989.
Mérillon, J. M.; Dupéron, P.; Montagu, M., et al. Modulation by cytokinin of membrane lipids in Catharanthus roseus cells. Plant Physiol. Biochem. 1:749-755; 1993.
Ménllon, J. M.; Filali, M.; Dupéron, P., et al. Effect of 2,4-dichorophenoxyacetic acid and habituation on lipid and protein composition of microsomal membranes from periwinkle cell suspensions. Plant Physiol. Biochem. 33:443-451; 1995a.
Mérillon, J. M.; Huguet, F.; Fauconneau, B., et al. Specific binding of verapamil to microsomal membranes of Catharanthus roseus cell suspensions. J. Plant Physiol. 146:279-282; 1995b.
Mérillon, J. M.; Ouelhazi, L.; Doireau, P., et al. Metabolic changes and alkaloid production in habituated and non-habituated cells of Catharanthus roseus grown in hormone-free medium: comparing hormone-deprived non-habituated cells with habituated cells. J. Plant Physiol. 134:54-60; 1989.
Mérillon, J. M.; Ramawat, K.; Andreu, F., et al. Accumulation alcaloïdique dans des lignées cellulaires de Catharanthus roseus entretenues en présence ou en l'absence de phytohormones. Paris, France: C. R. Acad. Sci. 303:689-692; 1986.
Mousdale, D. M. A.; Fidgeon, C.; Wilson, G., et al. Auxin content and growth patterns in auxin-dependent and auxin-autotrophic plant cell and tissue cultures. Biol. Plant. 27:257-264; 1985.
Nakajima, H.; Yokota, T.; Matsumoto, T., et al. Relationship between hormone content and autonomy in various autonomous tobacco cells cultured in suspension. Plant Cell Physiol. 29:1489-1499; 1979.
Nanney, D. L. Epigenetic control systems. Proc. Natl. Acad. Sci. USA 44:712-717; 1958.
Oakley, B. R.; Kirsch, D. R.; Norris, N. R., et al. A simplified ultra-sensitive silver stain for detecting proteins in polyacrylamide gel. Anal. Biochem. 105:361-363; 1980.
Ouelhazi, L.; Filali, M.; Décendit, A., et al. Differential protein accumulation in zeatin- and 2,4-D-treated cells of Catharanthus roseus. Correlation with indole alkaloid biosynthesis. Plant Physiol. Biochem. 31:421-431; 1993.
Pengelly, W. L.; Meins, F, Jr. The relationship of indole-3-acetic content and growth of crown-gall tumour tissues of tobacco in culture. Differentiation 21:27-31; 1982.
Persinger, S. M.; Town, C. D. Isolation and characterization of hormone-autonomous tumours of Arabidopsis thaliana. J. Exp. Bot. 42:1363-1370; 1991.
Ramagli, L.; Rodriguez, L. V. Quantitation of microgram amounts of proteins in two-dimensional polyacrylamide gel electrophoresis sample buffer. Electrophoresis 6:559-563; 1985.
Ramawat, K. G.; Viel, C.; Chénieux, J. C., et al. Quaternary alkaloid production in Ruta graveolens: suspension culture and habituation of some strains. Indian J. Exp. Biol. 25:471-475; 1987.
Saunders, J. W.; Daub, M. E. Shoot regeneration from hormone-autonomous callus from shoot cultures of several sugarbeet (Beta vulgaris L.) genotypes. Plant Sci. Lett. 34:219-233; 1984.
Smith, H. H. Plant genetic tumours. Prog. Exp. Tumor Res. 15:138-164; 1972.
Street, H. E. Growth in organized and unorganized systems: knowledge gained by culture of organs and tissue explants. In: Steward, F. C., ed. Plant physiology. Vol. 5B. New York: Academic Press; 1969:223-224.
Syono, K.; Fujita, T., Habituation as a tumorous state that is interchangeable with a normal state in plant cells. Int. Rev Cytol. 152:265-299; 1994.
Syono, K.; Furuya, T. Introduction of auxin-nonrequiring tobacco calluses and its reversal by treatments with auxins. Plant Cell Physiol. 15:7-17; 1974.
Szabò, M.; Köves, E.; Somogyi, I., et al. Development of auxin autotrophy in Nicotiana tabacum callus cultures. Physiol. Plant. 90:348-352; 1994.
Vankova, R.; Gaudinova, A.; Kanineck, M., et al. The effect of interaction of synthetic cytokinin and auxin on production of natural cytokinins by immobilized tobacco cells. In: Kaminek, M.; Mok, D. W. S.; Zazimalova, E., eds. Physiology and biochemistry of cytokinins in plants. The Hague: SPB Academic Publishing; 1992:395-400.
Walters, H. J. P.; Geuns, J. M. C. High speed HPLC analysis of polyamines in plant tissues. Plant Physiol. 83:232-234; 1987.
White, P. R. Neoplastic growth in plants. Q. Rev. Biol. 26:1-16; 1951.
This website uses cookies to improve user experience. Read more
Save & Close
Accept all
Decline all
Show detailsHide details
Cookie declaration
About cookies
Strictly necessary
Performance
Strictly necessary cookies allow core website functionality such as user login and account management. The website cannot be used properly without strictly necessary cookies.
This cookie is used by Cookie-Script.com service to remember visitor cookie consent preferences. It is necessary for Cookie-Script.com cookie banner to work properly.
Performance cookies are used to see how visitors use the website, eg. analytics cookies. Those cookies cannot be used to directly identify a certain visitor.
Used to store the attribution information, the referrer initially used to visit the website
Cookies are small text files that are placed on your computer by websites that you visit. Websites use cookies to help users navigate efficiently and perform certain functions. Cookies that are required for the website to operate properly are allowed to be set without your permission. All other cookies need to be approved before they can be set in the browser.
You can change your consent to cookie usage at any time on our Privacy Policy page.