Related Experiment Video
Updated: Aug 8, 2026

Direct Infusion Device for Molecule Delivery in Plants
Published on: June 2, 2023
Glutamine Transfer from Xylem to Phloem and Translocation to Developing Leaves of Populus deltoides
R E Dickson1, T C Vogelmann, P R Larson
1United States Department of Agriculture, Forest Service, North Central Forest Experiment Station, Rhinelander, Wisconsin 54501.
Abstract:
The distribution of (14)C from xylem-borne [(14)C]glutamine, the major nitrogen compound moving in xylem sap of cottonwood (Populus deltoides Bartr. ex Marsh), was followed in rapidly growing shoots with a combination of autoradiographic, microautoradiographic, and radioassay techniques. Autoradiography and (14)C analyses of tissues showed that xylem-borne glutamine did not move with the transpiration stream into mature leaves. Instead, most of it was transferred from xylem to phloem in the upper stem and then translocated to young developing tissues. Microautoradiography showed that metaxylem parenchyma, secondary xylem parenchyma, and rays were the major areas of uptake from xylem vessels in the stem. Accumulation in phloem (high (14)C concentrations in sieve tubes) took place in internodes subtending recently mature leaves. Little (14)C from xylem-borne glutamine was found in phloem of mature leaves, which indicates restricted retransport of glutamine that did enter the leaf. In the primary tissues of the upper stem, most (14)C was found in the phloem. Cottonwood stems have an efficient uptake and transfer system that enhances glutamine movement to developing tissues of the upper stem.
Related Concept Videos
Xylem and Transpiration-driven Transport of Resources
Phloem and Sugar Transport
Short-distance Transport of Resources
Responses to Salt Stress
The Apoplast and Symplast
Protein Transport to the Stroma
Protein complexes called the translocon of the outer chloroplast membrane or TOC complex, and the translocon of the inner chloroplast membrane or TIC complex mediate the...

