Sucrose transporter1 functions in phloem loading in maize leaves
Open Access
- 30 January 2009
- journal article
- research article
- Published by Oxford University Press (OUP) in Journal of Experimental Botany
- Vol. 60 (3) , 881-892
- https://doi.org/10.1093/jxb/ern335
Abstract
In most plants, sucrose is exported from source leaves to carbon-importing sink tissues to sustain their growth and metabolism. Apoplastic phloem-loading species require sucrose transporters (SUTs) to transport sucrose into the phloem. In many dicot plants, genetic and biochemical evidence has established that SUT1-type proteins function in phloem loading. However, the role of SUT1 in phloem loading in monocot plants is not clear since the rice (Oryza sativa) and sugarcane (Saccharum hybrid) SUT1 orthologues do not appear to function in phloem loading of sucrose. A SUT1 gene was previously cloned from maize (Zea mays) and shown to have expression and biochemical activity consistent with a hypothesized role in phloem loading. To determine the biological function of SUT1 in maize, a sut1 mutant was isolated and characterized. sut1 mutant plants hyperaccumulate carbohydrates in mature leaves and display leaf chlorosis with premature senescence. In addition, sut1 mutants have greatly reduced stature, altered biomass partitioning, delayed flowering, and stunted tassel development. Cold-girdling wild-type leaves to block phloem transport phenocopied the sut1 mutants, supporting a role for maize SUT1 in sucrose export. Furthermore, application of 14C-sucrose to abraded sut1 mutant and wild-type leaves showed that sucrose export was greatly diminished in sut1 mutants compared with wild type. Collectively, these data demonstrate that SUT1 is crucial for efficient phloem loading of sucrose in maize leaves.Keywords
This publication has 73 references indexed in Scilit:
- Genetic Control of Carbon Partitioning in Grasses: Roles of Sucrose Transporters and Tie-dyed Loci in Phloem LoadingPlant Physiology, 2009
- Tie-dyed1 Encodes a Novel, Phloem-Expressed Transmembrane Protein That Functions in Carbohydrate PartitioningPlant Physiology, 2008
- Functional Characterization of the Arabidopsis AtSUC2 Sucrose/H+ Symporter by Tissue-Specific Complementation Reveals an Essential Role in Phloem Loading But Not in Long-Distance TransportPlant Physiology, 2008
- A xylem sap retrieval pathway in rice leaf blades: evidence of a role for endocytosis?Journal of Experimental Botany, 2008
- Tie-dyed2Functions withTie-dyed1to Promote Carbohydrate Export from Maize LeavesPlant Physiology, 2008
- Tie-dyed1 and Sucrose export defective1 act independently to promote carbohydrate export from maize leavesPlanta, 2007
- tie-dyed1Functions Non-Cell Autonomously to Control Carbohydrate Accumulation in Maize LeavesPlant Physiology, 2007
- tie-dyed1Regulates Carbohydrate Accumulation in Maize LeavesPlant Physiology, 2006
- The H+-Sucrose Cotransporter NtSUT1 Is Essential for Sugar Export from Tobacco Leaves1Plant Physiology, 1998
- Structure and function of leaf minor veins in trees and herbsTrees, 1989