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  Phloem flow and sugar transport in Ricinus communis L. is inhibited under anoxic conditions of shoot or roots

Peuke, A. D., Gessler, A., Trumbore, S. E., Windt, C. W., Homan, N., Gerkema, E., et al. (2015). Phloem flow and sugar transport in Ricinus communis L. is inhibited under anoxic conditions of shoot or roots. Plant, Cell and Environment, 38(3), 433-447. doi:10.1111/pce.12399.

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https://doi.org/10.1111/pce.12399 (Publisher version)
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Peuke, Andreas D., Author
Gessler, Arthur, Author
Trumbore, Susan E.1, Author           
Windt, Carel W., Author
Homan, Natalia, Author
Gerkema, Edo, Author
Van As, Henk, Author
Affiliations:
1Department Biogeochemical Processes, Prof. S. E. Trumbore, Max Planck Institute for Biogeochemistry, Max Planck Society, ou_1497752              

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 Abstract: Anoxic conditions should hamper the transport of sugar in the phloem, as this is an active process. The canopy is a carbohydrate source and the roots are carbohydrate sinks. By fumigating the shoot with N2 or flooding the rhizosphere, anoxic conditions in the source or sink, respectively, were induced. Volume flow, velocity, conducting area and stationary water of the phloem were assessed by non-invasive magnetic resonance imaging (MRI) flowmetry. Carbohydrates and δ(13) C in leaves, roots and phloem saps were determined. Following flooding, volume flow and conducting area of the phloem declined and sugar concentrations in leaves and in phloem saps slightly increased. Oligosaccharides appeared in phloem saps and after 3 d, carbon transport was reduced to 77%. Additionally, the xylem flow declined and showed finally no daily rhythm. Anoxia of the shoot resulted within minutes in a reduction of volume flow, conductive area and sucrose in the phloem sap decreased. Sugar transport dropped to below 40% by the end of the N2 treatment. However, volume flow and phloem sap sugar tended to recover during the N2 treatment. Both anoxia treatments hampered sugar transport. The flow velocity remained about constant, although phloem sap sugar concentration changed during treatments. Apparently, stored starch was remobilized under anoxia.

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 Dates: 2014-07-032014-08-082015-03-12
 Publication Status: Issued
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 Identifiers: Other: BGC2066
DOI: 10.1111/pce.12399
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Title: Plant, Cell and Environment
Source Genre: Journal
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Publ. Info: Oxford, England : Blackwell Science
Pages: - Volume / Issue: 38 (3) Sequence Number: - Start / End Page: 433 - 447 Identifier: ISSN: 0140-7791
CoNE: https://pure.mpg.de/cone/journals/resource/954925471334