Phloem Loading Strategies in Three Plant Species That Transport Sugar Alcohols
Autor: | Emilie A. Rennie, Lailiang Cheng, Edwin J. Reidel, Véronique Amiard, Robert Turgeon |
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Rok vydání: | 2009 |
Předmět: |
Malus
Sucrose Physiology Hydrostatic pressure Plant Science Plasmodesma Phloem Models Biological Magnoliopsida chemistry.chemical_compound Sugar Alcohols Botany Genetics medicine Sugar alcohol Plantago chemistry.chemical_classification biology fungi Plasmodesmata food and beverages Biological Transport biology.organism_classification Plant Leaves chemistry Autoradiography Sorbitol Mannitol Research Article medicine.drug |
Zdroj: | Plant Physiology. 149:1601-1608 |
ISSN: | 1532-2548 0032-0889 |
DOI: | 10.1104/pp.108.134791 |
Popis: | Many plants translocate sugar alcohols in the phloem. However, the mechanism(s) of sugar alcohol loading in the minor veins of leaves are debated. We characterized the loading strategies of two species that transport sorbitol (Plantago major and apple [Malus domestica]), and one that transports mannitol (Asarina scandens). Plasmodesmata are abundant at all interfaces in the minor vein phloem of apple, and in one of two types of phloem in the minor veins of A. scandens. Few plasmodesmata are present in the minor veins of P. major. Apple differs from the other two species in that sugar alcohol and sucrose (Suc) are present in much higher concentrations in leaves. Apple leaf tissue exposed to exogenous [(14)C]sorbitol, [(14)C]Suc, or (14)CO(2) did not accumulate radiolabel in the minor veins, as determined by macroautoradiography. P. major minor veins accumulated radiolabel from [(14)C]Suc, [(14)C]sorbitol, and (14)CO(2). A. scandens minor veins accumulated (14)C from [(14)C]Suc and (14)CO(2), but not from [(14)C]mannitol. We conclude that the movement of sugar alcohol from the mesophyll into the phloem in apple and A. scandens is symplastic and passive, but in P. major it involves an apoplastic step and is energized. We also suggest that apple leaves transport sorbitol in high concentrations to avoid the feedback limitation of photosynthesis that would result from driving passive movement of solute into the phloem with high levels of Suc alone. The loading pathways and the mechanisms by which hydrostatic pressure is maintained in the minor vein phloem of these species are discussed. |
Databáze: | OpenAIRE |
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