The overexpression of SlBRI1 driven by Atrd29A promoter-transgenic plants improves the chilling stress tolerance of tomato
Author:
Funder
China West Normal University
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Genetics
Link
https://link.springer.com/content/pdf/10.1007/s00425-023-04288-9.pdf
Reference35 articles.
1. An S, Liu Y, Sang K, Wang T, Yu J, Zhou Y, Xia X (2023) Brassinosteroid signaling positively regulates abscisic acid biosynthesis in response to chilling stress in tomato. J Integr Plant Biol 65:10–24
2. Barrero-Gil J, Huertas R, Rambla J, Granell A, Salinas J (2016) Tomato plants increase their tolerance to low temperature in a chilling acclimation process entailing comprehensive transcriptional and metabolic adjustments. Plant Cell Environ 39:2303–2318
3. Begcy K, Mariano E, Gentile A, Lembke C, Zingaretti S, Souza G, Menossi M (2012) A Novel stress-induced sugarcane gene confers tolerance to drought, salt and oxidative stress in transgenic tobacco plants. PLoS ONE 7(9):e44697
4. Behnam B, Kikuchi A, Celebi-Toprak F, Kasuga M, Yamaguchi-Shinozaki K, Watanabe K (2007) Arabidopsis rd29A::DREB1A enhances freezing tolerance in transgenic potato. Plant Cell Rep 26(8):1275–1282
5. Bohnert H, Gong Q, Li P, Ma S (2006) Unraveling abiotic stress tolerance mechanisms–getting genomics going. Curr Opin Plant Biol 9:180–188
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