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1996 | 05 | 1 |

Tytuł artykułu

Toxic effect of Pb2plus ions on extension growth of cereal plants

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The effects of lead salts (chloride, nitrate, acetate) on the elongation growth of three cereal species (maize, wheat, rye) under the same growth conditions were studied. It has been found that the most toxic lead compound for maize was acetate, while the most sensitive to lead chloride was wheat. It is suggested that in order to obtain comparable results in experiments on the effects of different heavy metals on plant growth, the same salts of metals should be used.

Wydawca

-

Rocznik

Tom

05

Numer

1

Opis fizyczny

p.41-45,fig.,ref.

Twórcy

autor
  • University of Silesia, Jagiellonska 28, 40-032 Katowice, Poland
autor
autor

Bibliografia

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  • HAGER A., MENZEL H., KRAUSS A. Versuche und Hypothese zur Primarwirkung des Auxins beim Streckungswachsturn. Planta. 100, 47-75, 1971.
  • CLELAND R. Auxin-induced hydrogen ion excretion from Avena coleoptiles. Proc. Nat. Acad. Sci. USA. 70, 3092-3093, 1973.
  • MACDOWALL F., SIROIS J. Importance of tirne after ex-cisino and of pH on the kinetics of response of wheat coleop¬tile segments to added indoleacetic acid. Plant Physiol., 59. 405-410, 1977.
  • CARPITA N. Hemicellulosic polymers of celi walls of Zea coleoptiles. Plant Physiol. 72. 515-521, 1983.
  • BÓTTGER M., BIGDON M., SOLL J. Proton translocation in corn coleoptiles: ATPase or redox chain? Planta, 163, 376-380, 1985.
  • EDELMANN H., SCHOPFER P. Role of protein and RNA synthesis in the initiation of auxin-mediated growth in coleop-tiles of Zea mays L. Planta, 179, 475-485, 1989.
  • RAYLE D. Calcium bridges are not load-bearing celt-wali bonds in Avena coleoptiles. Planta. 178, 92-95, 1989.
  • HAGER A., DEBUS G., EDEL H., STRANSKY H., SER-RANO R. Auxin induces exocytosis and the rapid synthesis of a high-turnover pool of plasma-membrane 1-1+—ATPase. Plan-ta, 185, 527-537, 1991.
  • ZEGERS P., HARMET K., HANZELY L. Inhibition of IAA-induced elongation in Avena coleoptile segments by le¬ad: a physiological and an electron microscopic study. Cyto¬bios. 15, 23-35, 1976.
  • LANE S., MARTIN E., GARROD J. Lead toxicity effects on -indole-3-Ylacetic acid-induced celi elongation. Planta. 144, 79-84, 1978.
  • BURZYŃSKI M., JAKÓB M. Influence of lead on auxin-in¬duced cell elongation. Acta. Soc. Bot. Pol. 52, 231-239, 1983.
  • STOLAREK J., LEKACZ H., MAŁKOWSKI E., KARCZ W. Wpływ jonów ołowiu (Pb2+) na wzrost elongacyjny, zakwa-szanie środowiska inkubacyjnego i potencjał membranowy se¬gmentów koleoptyli Zea mays L. Acta Biol. Sil. 17, 46-56, 1991.
  • STIBOROVA M., DITRICHOVA M., BREZINOVA A. Ef¬fect of heavy metal ions on growth and biochemical charac-teristics of photosynthesis of barley and maize seedlings. Bio¬logia Plantarum. 29, 453-467, 1987.
  • FIUSSELLO N., MOLINARI M. Effects of lead on plant growth. Allionia. 19, 89-96, 1973.
  • WIERZBICKA M. Skażenie roślin ołowiem. Konferencja „Zanieczyszczone środowisko a fizjologia roślin", Warszawa, 101-108, 1991.
  • WIERZBICKA M., ANTOSIEWICZ D. How lead can easily enter the food chain — a study of plant roots. Sci. Total En-viron., Suppi., 423-429, 1993.
  • KARCZ W., STOLAREK J., ZIENTARA M. Short-term ef¬fects of Mn' on elongation growth and H+ — extrusion in Zea mays L. coleoptile segments. Acta Soc. Bot. Pol. 57, 341-348, 1988.
  • BÓTTGER M., SOLL H., GASCHE A. Modification of the external pH by maize coleoptiles and velamen radicum of Vanilla planifolia ANDR. Z. Pflanzenphysiol. 99, 89-93, 1980.
  • KUTSCHERA U., SCHOPFER P. Evidence against the acid--growth theory of auxin action. Planta. 163, 483-493, 1985.
  • SENN A., GOLDSMITH M. Regulation of electrogenic pro¬ton pumping by auxin and fusicoccin as related to the growth of Avena coleoptiles. Plant Physiol. 88, 131-138, 1988.
  • KARCZ W., STOLAREK J., PIETRUSZKA M., MAŁKOW¬SKI E. The dose-response curves for IAA induced elongation growth and acidification of the incubation medium of Zea mays coleoptile segments. Physiol. Plant. 80, 257-261, 1990.
  • RÓDERER G. On the toxic effects of tetraethyllead and its derivatives on the Chrysophyte Potenoochromonas malhamen-sis. III. Chemical analysis. J. Environ. Sci. Health, A, 171-183, 1982.
  • RÓDERER G. On the toxic effects of tetraethyl lead and its derivatives on the Chrysophyte Poterioochromonas malhamen¬sis. I. Tetraethyl lead. Environ. Res., 23, 371-384, 1980. HEUMANN H. Effects of heavy metals on growth and ultra¬structure of Chara vulgaris. Protoplasma. 136, 37-48, 1987, ENDRES K., FAULSTICH H. Triethyllead inhibits mitochon¬dria) ATPase of the endosperm and sucrose uptake in the cotyledons of Ricinus communis. J. Plant Physiol., 135, 531-536, 1989.
  • HAGER A., STRANSKY H., BERTHOLD W. Uncoupling of photopbosphorylation by triethyl lead (Et3Pb+) generated from tetraethyl lead (Et4Pb) in illuminated chloroplasts. J. Plant Physiol., 134, 5-8, 1989.
  • BANASZKIEWICZ T., RADECKI J., KOZACZENKO H. Atrazine and lead content in maize seedlings (Zea mays L.) treated by herbicide and lead compounds. Acta Physiol. Plant., 13, 91-94, 1991.
  • SHARMA S., CHOPRA R. Effect of lead nitrate and lead acetate on growth of the moss Semibarbula orientalis (Web.)

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-2697cae1-b832-496d-816a-f1a39d092fd9
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