Plant Rab GTPases in Membrane Trafficking and Signalling
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Publisher
Springer India
Link
http://link.springer.com/content/pdf/10.1007/978-81-322-1542-4_3
Reference148 articles.
1. Abbal P, Pradal M, Muniz L, Sauvage FX, Chatelet P, Ueda T, Tesniere C (2008) Molecular characterization and expression analysis of the Rab GTPase family in Vitis vinifera reveal the specific expression of a VvRabA protein. J Exp Bot 59:2403–2416
2. Agarwal PK, Jain P, Jha B, Reddy MK, Sopory SK (2008) Constitutive over-expression of a stress-inducible small GTP binding protein PgRab7 from Pennisetum glaucum enhances abiotic stress tolerance in transgenic tobacco. Plant Cell Rep 27:105–115
3. Agarwal P, Reddy MK, Sopory SK, Agarwal PK (2009) Plant rabs: characterization, functional diversity, and role in stress tolerance. Plant Mol Biol Rep 27:417–430
4. Alvim Kamei CL, Boruc J, Vandepoele K, Van den Daele H, Maes S, Russinova E, Inze D, De Veylder L (2008) The PRA1 gene family in Arabidopsis. Plant Physiol 147:1735–1749
5. Anai T, Hasegawa K, Watanabe Y, Uchimiya H, Ishizaki R, Matsui M (1991) Isolation and analysis of cDNAs encoding small GTP binding proteins of Arabidopsis thaliana. Gene 108:259–264
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