184
Views
28
CrossRef citations to date
0
Altmetric
Original Articles

Differential Accumulation of Transcripts Encoding Sulfur Assimilation Enzymes upon Sulfur and/or Nitrogen Deprivation in Arabidopsis thaliana

, , , &
Pages 762-766 | Received 24 Sep 1998, Accepted 27 Nov 1998, Published online: 22 May 2014

  • 1) Leustek, T., Molecular genetics of sulfate assimilation in plants. Physiol. Plant., 97, 411-419 (1996).
  • 2) Hell, R., Molecular physiology of plant sulfur metabolism. Planta, 202, 8138-14 (1997).
  • 3) Bick, J. A. and Leustek, T., Plant sulfur metabolism—the reduction of sulfate to sulfite. Curr. Opinion Plant Biol., 1, 240-244 (1998).
  • 4) Wray, J. L., Campbell, E. I., Roberts, M. A., and Gutierrez-Marcos, J. F., Redefining reductive sulfate assimilation in higher plants: a role for APS reductase, a new member of the thioredoxin superfamily? Chem. Biol. Interact., 109, 153-67 (1998).
  • . 1990. p. 327- 381.
  • 6) Reuveny, Z., Dougall, D. K., and Trinity, P. M., Regulatory coupling of nitrate and sulfate assimilation pathways in cultured tobacco cells. Proc. Natl. Acad. Sci. USA., 77, 6670-6672 (1980).
  • 7) Murashige, T. and Skoog, F., A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant., 15, 473-479 (1962).
  • . 1998. p. 1- 12.
  • 9) Yamaguchi, Y., Nakamura, T., Harada, E., Koizumi, N., and Sano, H., Isolation and characterization of a cDNA encoding a sulfate transporter from Arabidopsis thaliana (Accession No. D89631). Plant Physiol., 113, 1463 (1997).
  • 10) Murillo, M. and Leustek, T., Adenosine-5′-triphosphate-sulfurylase from Arabidopsis thaliana and Escherichia coli are functionally equivalent but structurally and kinetically divergent: Nucleotide sequence of two adenosine-5′-triphosphate-sulfurylase cDNAs from Arabidopsis thaliana and analysis of a recombinant enzyme. Arch. Biochem. Biophys., 323, 95-204 (1995).
  • 11) Gutierrez-Marcos, J. F., Roberts, M. A., Campbell, E. I., and Wray, J. L., Three members of a novel small gene-family from Arabidopsis thaliana able to complement functionally an Escherichia coli mutant defective in PAPS reductase activity encode proteins with a thioredoxin-like domain and “APS reductase” activity. Proc. Natl. Acad. Sci. USA, 99, 13377-13382 (1996).
  • 12) Arz, H. E., Gisselmann, G., Schiffmann, S., and Schwenn, J. D., A cDNA for adenylyl sulphate (APS)-kinase from Arabidopsis thaliana. Biochim. Biophys. Acta, 1218, 447-452 (1994).
  • 13) Bruhl, A., Haverkamp, T., Gisselmann, G., and Schwenn, J. D., A cDNA clone from Arabidopsis thaliana encoding plastidic ferredoxin: sulfite reductase. Biochim. Biophys. Acta, 1295, 119-124 (1996).
  • 14) Barroso, C., Vega, J. M., and Gotor, C., A new member of the cytosolic O-acetylserine(thiol)lyase gene family in Arabidopsis thaliana. FEBS Lett., 363, 1-5 (1995).
  • 15) Howarth, J. R., Roberts, M. A., and Wray, J. L., Cysteine biosynthesis in higher plants: a new member of the Arabidopsis thaliana serine acetyltransferase small gene-family obtained by functional complementation of an Escherichia coli cysteine auxotroph. Biochim. Biophys. Acta, 1350, 123-127 (1997).
  • 16) Noji, M., Inoue, K., Kimura, N., Gouda, A., and Saito, K., Isoform-dependent defferences in feedback regulation and subcellular localization of serine acetyltransferase involved in cysteine biosynthesis from Arabidopsis thaliana. J. Bio. Chem., 273, 32739-32745 (1998).
  • 17) Maniatis, T., Fritsch, E. T., and Sambrook, J., Molecular cloning: A laboratory manual. Cold Spring Harbor, NY: Cold Spring Harbor Laboratory Ress, (1989).
  • 18) Takahashi, H., Yamazaki, M., Sasakura, N., Watanabe, A., Leustek, T., Engler, J. A., Engler, G., Montagu, M. V., and Saito, K., Regulation of sulfur assimilation in higher plants: A sulfate transporter induced in sulfate-starved roots plays a central role in Arabidopsis thaliana. Proc. Natl. Acad. Sci. USA, 95, 11102-11107 (1997).
  • 19) Logan, H. M., Cathala, N., Grignon, C., and Davidian, J. C., Cloning of a cDNA encoded by a member of the Arabidopsis thaliana ATP sulfurylase multigene family: Expression studies in yeast and in relation to plant sulfur nutrition. J. Biol. Chem., 271, 12227-12233 (1996).
  • 20) Bogdanova, N., Bork, C., and Hell, R., Cysteine biosynthesis in plants: isolation and functional identification of a cDNA encoding a serine acetyltransferase from Arabidopsis thaliana. FEBS Lett., 358, 43-47 (1995).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.