Quantifying the Capacity of Phloem Loading in Leaf Disks with [C]Sucrose.

Bio Protoc

BioDiscovery Institute and Department of Biological Sciences, University of North Texas, Denton, TX 76203, USA.

Published: December 2017

Phloem loading and transport of photoassimilate from photoautotrophic source leaves to heterotrophic sink organs are essential physiological processes that help the disparate organs of a plant function as a single, unified organism. We present three protocols we routinely use in combination with each other to assess (1) the relative rates of sucrose (Suc) loading into the phloem vascular system of mature leaves (this protocol), (2) the relative rates of carbon loading and transport through the phloem ( Yadav , 2017a ), and (3) the relative rates of carbon unloading into heterotrophic sink organs, specifically roots, after long-distance transport ( Yadav , 2017b ). We propose that conducting all three protocols on experimental and control plants provides a reliable comparison of whole-plant carbon partitioning, and minimizes ambiguities associated with a single protocol conducted in isolation ( Dasgupta , 2014 ; Khadilkar , 2016 ). In this protocol, leaf disks isolated from mature rosette leaves are infiltrated with a buffered solution containing [C]Suc. Suc transporters (SUCs or SUTs) load Suc into the phloem and excess, unloaded Suc in the leaf disk is then washed away. Loading of labeled Suc into the veins is visualized by autoradiography of lyophilized leaf disks and quantified by scintillation counting. Results are expressed as disintegration per minute per unit of leaf disk fresh weight or area.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8438435PMC
http://dx.doi.org/10.21769/BioProtoc.2658DOI Listing

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