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1
Development of two isogenic sweet corn hybrids differing for glycinebetaine content.
Plant Physiol. 1989 Nov;91(3):1112-21. doi: 10.1104/pp.91.3.1112.
2
Preliminary Genetic Studies of the Phenotype of Betaine Deficiency in Zea mays L.
Plant Physiol. 1988 Sep;88(1):102-8. doi: 10.1104/pp.88.1.102.
3
Near-isogenic lines of maize differing for glycinebetaine.
Plant Physiol. 1995 Feb;107(2):621-30. doi: 10.1104/pp.107.2.621.
4
Salt Tolerance of Glycinebetaine-Deficient and -Containing Maize Lines.
Plant Physiol. 1995 Feb;107(2):631-638. doi: 10.1104/pp.107.2.631.
5
Genotypic Variation for Glycinebetaine among Public Inbreds of Maize.
Plant Physiol. 1989 Nov;91(3):1122-5. doi: 10.1104/pp.91.3.1122.
6
Choline metabolism in glycinebetaine accumulating and non-accumulating near-isogenic lines of Zea mays and Sorghum bicolor.
Phytochemistry. 2010 Mar;71(4):404-14. doi: 10.1016/j.phytochem.2009.11.002. Epub 2009 Dec 11.
7
Exogenous proline and glycinebetaine suppress apoplastic flow to reduce Na(+) uptake in rice seedlings.
Biosci Biotechnol Biochem. 2009 Sep;73(9):2037-42. doi: 10.1271/bbb.90244. Epub 2009 Sep 7.
9
Inducers of glycinebetaine synthesis in barley.
Plant Physiol. 2001 Dec;127(4):1827-35.

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3
Glycinebetaine mitigates drought stress-induced oxidative damage in pears.
PLoS One. 2021 Nov 18;16(11):e0251389. doi: 10.1371/journal.pone.0251389. eCollection 2021.
5
Spatial and Temporal Profile of Glycine Betaine Accumulation in Plants Under Abiotic Stresses.
Front Plant Sci. 2019 Mar 7;10:230. doi: 10.3389/fpls.2019.00230. eCollection 2019.
9
Stress-related hormones and glycinebetaine interplay in protection of photosynthesis under abiotic stress conditions.
Photosynth Res. 2015 Dec;126(2-3):221-35. doi: 10.1007/s11120-015-0125-x. Epub 2015 Apr 1.
10
Natural variation in Arabidopsis: from molecular genetics to ecological genomics.
Plant Physiol. 2012 Jan;158(1):2-22. doi: 10.1104/pp.111.189845. Epub 2011 Dec 6.

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