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2010 | 79 | 2 |

Tytuł artykułu

Mannose inhibition of nitrate uptake by wheat roots

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The effect of mannose on nitrate uptake was investigated by a new non-invasive technique. Under normal condition, nitrate uptake by wheat (Triticum aestivum L.) roots was about 1-7 µmol gfwt-1 h-1. After the addition of 10 mM mannose, net nitrate influx by wheat roots started to decrease and reached a new steady state at -40 ±50% of the control value after 73 min. After mannose supplied for 2 h, its removal caused net nitrate influx to be recovered to an original rate. Therefore, the inhibition of mannose on nitrate uptake is not due to the onset of programmed cell death because it starts too rapidly and it is reversible, however, it is probably due to Pi and consequent ATP depletion.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

79

Numer

2

Opis fizyczny

p.107-110,fig.,ref.

Twórcy

autor
  • Huazhong University of Science & Technology [HUST], Luoyu Road 1037, Wuhan 430074, China
autor
autor

Bibliografia

  • HARRIS G.C., GIBBS P.B., LUDWIG G., UN A., SPRENGNETHER M., KOLODNY N. 1986. Mannose metabolism in corn and its impact on leaf metabolites, photosynthetic gas exchange, and chlorophyll fluorescence. Plant Physiol. 82: 1081-1089.
  • HEROLD A., LEWIS D.H. 1977. Mannose and green plants: occurrence, physiology and metabolism, and use as a tool to study the role of orthophosphate. New Phytol. 79: 1-40.
  • JOERSBO M., DONALDSON I., KREIBERG J., PETERSEN S.G., BRUNSTEDT J., OKKELS F.T. 1998. Analysis of mannose selection used for transformation of sugar beet. Mol. breeding 4: 111-117.
  • LEJAY L., GANSEL X., CEREZO M., TILLARD P., MULLER C., KRAPP A., VON WIREN N., DANIEL-VEDELE F., GOJON A. 2003. Regulation of root ion transporters by photosynthesis: Functional importance and relation with hexokinase. Plant Cell 15: 2218-2232.
  • LOUGHMAN B.C. 1966. The mechanism of absorption and utilization of phosphate by barley plants in relation to subsequent. New Phytol. 65: 388-397.
  • MIKI B., MCHUGH S. 2004. Selectable marker genes in transgenic plants: applications, alternatives and biosafety. J. Biotech- nol. 107: 193-232.
  • MIN B.W., CHO Y.N., SONG M.J., NOH T.K., KIM B.K., CHAE W.K., PARK Y.S., CHOI Y.D., HARN C.H. 2007. Successful genetic transformation of Chinese cabbage using phosphomannose isomerase as a selection marker. Plant Cell Rep. 26: 337-344.
  • PASSWORD F. 2008. Chapter 5: Golden Rice 2. Compr. Rev. Food Sci. F. 7 (1): 92-98.
  • SHIH Y.W., CHOU W.C., LIN Y.M., HUANG D.D., LIU Z.H., HUANG H.J. 2004. Changes in protein tyrosine phosphorylation during mannose and senescence induced cell death in rice. Plant Growth Regul. 42 (3): 1-12.
  • STEIN J.C., HANSEN G. 1999. Mannose induces an endonuclease responsible for DNA laddering in plant cells. Plant Physiol. 121: 71-79.
  • STENLID G. 1954. Toxic effects of D-mannose, 2-deoxy-D-glucose and D-glucosamine upon respiration and ion absorption in wheat roots. Plant Physiol. 7: 173-181.
  • STENLID G. 1957. A comparison of the toxic effects of some sugars upon growth and chloride accumulation in young wheat roots. Physiol. Plantarum 10 (4): 807-823.
  • STENLID G. 1971. The effect of some inhibitory sugars upon the content of adenosine triphosphate in wheat roots. Physiol. Plantarum 25 (3): 397-401.
  • TAIZ L., ZEIGER E. (eds). 2002. Plant Physiology. 3rd ed. Sinauer Associates Incorporation Publishers, Sunderland, Massachusetts, pp. 202.
  • TERSTEEGE M.W., STULEN I., WIERSEMA P.K., PAANS A,J,M, VAALBURG W., KUIPER P.J.C., CLARKSON D.T. 1998. Growth requirement for N as a criterion to assess the effects of physical manipulation on nitrate uptake fluxes in spinach. Physiol. Plantarum 103: 181-192.

Typ dokumentu

Bibliografia

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