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PMID: 10982459 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regulation of sulfur nutrition in wild-type and transgenic poplar over-expressing gamma-glutamylcysteine synthetase in the cytosol as affected by atmospheric H2S.

Plant physiology ·Vol. 124 ·No. 1 ·2000-09-00 ·Pages 461-73

Herschbach C, van Der Zalm E, Schneider A, Jouanin L, De Kok LJ, Rennenberg H

Abstract

This study with poplar (Populus tremula x Populus alba) cuttings was aimed to test the hypothesis that sulfate uptake is regulated by demand-driven control and that this regulation is mediated by phloem-transported glutathione as a shoot-to-root signal. Therefore, sulfur nutrition was investigated at (a) enhanced sulfate demand in transgenic poplar over-expressing gamma-glutamylcysteine (gamma-EC) synthetase in the cytosol and (b) reduced sulfate demand during short-term exposure to H2S. H(2)S taken up by the leaves increased cysteine, gamma-EC, and glutathione concentrations in leaves, xylem sap, phloem exudate, and roots, both in wild-type and transgenic poplar. The observed reduced xylem loading of sulfate after H2S exposure of wild-type poplar could well be explained by a higher glutathione concentration in the phloem. In transgenic poplar increased concentrations of glutathione and gamma-EC were found not only in leaves, xylem sap, and roots but also in phloem exudate irrespective of H(2)S exposure. Despite enhanced phloem allocation of glutathione and its accumulation in the roots, sulfate uptake was strongly enhanced. This finding is contradictory to the hypothesis that glutathione allocated in the phloem reduces sulfate uptake and its transport to the shoot. Correlation analysis provided circumstantial evidence that the sulfate to glutathione ratio in the phloem may control sulfate uptake and loading into the xylem, both when the sulfate demand of the shoot is increased and when it is reduced.

MeSH Terms
Biological Transport Cysteine/metabolism Cytosol/metabolism Glutamate-Cysteine Ligase/metabolism Glutathione/metabolism Hydrogen Sulfide/metabolism Methionine/metabolism Plant Structures/enzymology,metabolism Plants, Genetically Modified Sulfates/metabolism Sulfur/metabolism Trees/enzymology,metabolism
Chemicals
Sulfates Sulfur Methionine Glutamate-Cysteine Ligase Glutathione Cysteine Hydrogen Sulfide
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Herschbach C
Albert-Ludwigs-Universität Freiburg, Institut für Forstbotanik und Baumphysiologie, Professur für Baumphysiologie, Am Flughafen 17, D-79085 Freiburg, Germany. herschba@uni-freiburg.de
van Der Zalm E
Schneider A
Jouanin L
De Kok L J
Rennenberg H
References (15)
15 references, click to expand
  1. 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 U S A. 1997 Sep 30;94(20):11102-7 PMID: 9380766
  2. Regulation of expression of a cDNA from barley roots encoding a high affinity sulphate transporter.
    Plant J. 1997 Oct;12(4):875-84 PMID: 9375399
  3. Synthesis of Glutathione in Leaves of Transgenic Poplar Overexpressing [gamma]-Glutamylcysteine Synthetase.
    Plant Physiol. 1996 Nov;112(3):1071-1078 PMID: 12226433
  4. Phloem Transport of Amino Acids in Relation to their Cytosolic Levels in Barley Leaves.
    Plant Physiol. 1992 Jul;99(3):996-1004 PMID: 16669030
  5. Inter-organ signaling in plants: regulation of ATP sulfurylase and sulfate transporter genes expression in roots mediated by phloem-translocated compound.
    Plant J. 1999 Apr;18(1):89-95 PMID: 10341446
  6. Xylem sap composition of beech (Fagus sylvatica L.) trees: seasonal changes in the axial distribution of sulfur compounds.
    Tree Physiol. 1994 May;14(5):541-8 PMID: 14967689
  7. Molecular characterization of the cysJIH promoters of Salmonella typhimurium and Escherichia coli: regulation by cysB protein and N-acetyl-L-serine.
    J Bacteriol. 1989 Jan;171(1):130-40 PMID: 2701932
  8. Regulation of the hvst1 gene encoding a high-affinity sulfate transporter from Hordeum vulgare.
    Plant Mol Biol. 1999 Jul;40(5):883-92 PMID: 10487222
  9. Demand-Driven Control of Root ATP Sulfurylase Activity and SO42- Uptake in Intact Canola (The Role of Phloem-Translocated Glutathione).
    Plant Physiol. 1996 May;111(1):147-157 PMID: 12226281
  10. Sap Pressure in Vascular Plants: Negative hydrostatic pressure can be measured in plants.
    Science. 1965 Apr 16;148(3668):339-46 PMID: 17832103
  11. Characteristics of sulfate transport across plasmalemma and tonoplast of carrot root cells.
    Plant Physiol. 1983 May;72(1):204-11 PMID: 16662961
  12. Modification of thiol contents in poplars (Populus tremula x P. alba) overexpressing enzymes involved in glutathione synthesis.
    Planta. 1997;203(3):362-72 PMID: 9431683
  13. Elevated glutathione biosynthetic capacity in the chloroplasts of transgenic tobacco plants paradoxically causes increased oxidative stress
    Plant Cell. 1999 Jul;11(7):1277-92 PMID: 10402429
  14. Coordinate modulation of maize sulfate permease and ATP sulfurylase mRNAs in response to variations in sulfur nutritional status: stereospecific down-regulation by L-cysteine.
    Plant Mol Biol. 1999 Feb;39(3):527-37 PMID: 10092180
  15. Properties of Two Outward-Rectifying Channels in Root Xylem Parenchyma Cells Suggest a Role in K+ Homeostasis and Long-Distance Signaling.
    Plant Physiol. 1997 Dec;115(4):1707-1719 PMID: 12223889
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
2000-09-00
Pages
461-73
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC59159
Subset
IM
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