Signaling in Plant Gravitropism
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-540-89228-1_11.pdf
Reference140 articles.
1. Abas L, Benjamins R, Malenica N, Paciorek T, Wirniewska J, Moulinier-Anzola J, Sieberer T, Friml J, Luschnig C (2006) Intracellular trafficking and proteolysis of the Arabidopsis auxin-efflux facilitator PIN2 are involved in root gravitropism. Nat Cell Biol 8:249–256
2. Allan E, Trewavas A (1985) Quantitative changes in calmodulin and NAD kinase during early cell development in the root apex of Pisum sativum. Planta 165:493–501
3. Aloni R, Langhans M, Aloni E, Ullrich C (2004) Role of cytokinin in the regulation of root gravitropism. Planta 220:177–182
4. Barjaktarovic Z, Nordheim A, Lamkemeyer T, Fladerer C, Madlung J, Hampp R (2007) Time-course of changes in amounts of specific proteins upon exposure to hyper-g, 2-D clinorotation, and 3-D random positioning of Arabidopsis cell cultures. J Exp Bot 58:4357–4363
5. Bennett M, Marchant A, Green H, May S, Ward S, Millner P, Walker A, Schulz B, Feldmann K (1996) Arabidopsis AUX1 gene: a permease-like regulator of root gravitropism. Science 273:948–950
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