Genomic Analyses of SUT and TST Sugar Transporter Families in Low and High Sugar Accumulating Sugarcane Species (Saccharum spontaneum and Saccharum officinarum)
Author:
Funder
United States National Science Foundation
U.S. Department of Energy
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Genetics
Link
https://link.springer.com/content/pdf/10.1007/s12042-022-09315-9.pdf
Reference59 articles.
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2. Babst BA, Braun DM, Karve AA, Baker RF, Tran TM, Kenny D, Rohlhill J, Knoblauch J, Knoblauch M, Lohaus G, Tappero R, Jensen KH (2022) Sugar loading is not required for phloem sap flow in maize plants. Nature Plants 8:171–180
3. Babst BA, Karve A, Sementilli A, Dweikat I, Braun DM (2021) Physiology and whole-plant carbon partitioning during stem sugar accumulation in sweet dwarf sorghum. Planta, 254, Article No. 80
4. Baker RF, Leach KA, Boyer NR, Swyers MJ, Benitez-Alfonso Y, Skopelitis T, Luo A, Sylvester A, Jackson D, Braun DM (2016) Sucrose transporter ZmSut1 expression and localization uncover new insights into sucrose phloem loading. Plant Physiol 172:1876–1898
5. Bihmidine S, Baker RF, Hoffner C, Braun DM (2015) Sucrose accumulation in sweet sorghum stems occurs by apoplasmic phloem unloading and does not involve differential Sucrose transporter expression. BMC Plant Biol 15:186. https://doi.org/10.1186/s12870-12015-10572-12878
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