908
Views
0
CrossRef citations to date
0
Altmetric
Articles; Agriculture and Environmental Biotechnology

Molecular cloning, sequence characterization and expression pattern of Rab18 gene from watermelon (Citrullus lanatus)

&
Pages 255-259 | Received 26 Aug 2014, Accepted 08 Dec 2014, Published online: 03 Feb 2015

References

  • Seabra MC, Wasmeier C. Controlling the location and activation of Rab GTPases. Curr Opin Cell Biol. 2004;16:451–457.
  • Dansako H, Hiramoto H, Ikeda M, Wakita T, Kato N. Rab18 is required for viral assembly of hepatitis C virus through trafficking of the core protein to lipid droplets. Virology. 2014;462–463C:166–174.
  • Gerondopoulos A, Bastos RN, Yoshimura S, Anderson R, Carpanini S, Aligianis I, Handley MT, Barr FA. Rab18 and a Rab18 GEF complex are required for normal ER structure. J Cell Biol. 2014;205:707–720.
  • Ozeki S, Cheng J, Tauchi-Sato K, Hatano N, Taniguchi H, Fujimoto T. Rab18 localizes to lipid droplets and induces their close apposition to the endoplasmic reticulum-derived membrane. J Cell Sci. 2005;118:2601–2611.
  • Cheng CY, Yang AC, Huang CC, Liu ME, Liou YJ, Wu JC, Tsai SJ, Lin CP, Hong CJ. The association of RAB18 gene polymorphism (rs3765133) with cerebellar volume in healthy adults. Cerebellum. 2014; 13(5):616–622.
  • Carpanini SM, McKie L, Thomson D, Wright AK, Gordon SL, Roche SL, Handley MT, Morrison H, Brownstein D, Wishart TM, Cousin MA, Gillingwater TH, Aligianis IA, Jackson IJ. A novel mouse model of Warburg micro syndrome reveals roles for RAB18 in eye development and organisation of the neuronal cytoskeleton. Dis Model Mech. 2014;7(6):711–722.
  • Handley MT, Morris-Rosendahl DJ, Brown S, Macdonald F, Hardy C, Bem D, Carpanini SM, Borck G, Martorell L, Izzi C, Faravelli F, Accorsi P, Pinelli L, Basel-Vanagaite L, Peretz G, Abdel-Salam GM, Zaki MS, Jansen A, Mowat D, Glass I, Stewart H, Mancini G, Lederer D, Roscioli T, Giuliano F, Plomp AS, Rolfs A, Graham JM, Seemanova E, Poo P, García-Cazorla A, Edery P, Jackson IJ, Maher ER, Aligianis IA. Mutation spectrum in RAB3GAP1, RAB3GAP2, and RAB18 and genotype–phenotype correlations in Warburg micro syndrome and Martsolf syndrome. Hum Mutat. 2013;34(5):686–696.
  • Geng Y, Wu R, Wee CW, Xie F, Wei X, Chan PM, Tham C, Duan L, Dinneny JR. A spatio-temporal understanding of growth regulation during the salt stress response in Arabidopsis. Plant Cell. 2013;25:2132–2154.
  • Gosti F, Bertauche N, Vartanian N, Giraudat J. Abscisic acid-dependent and -independent regulation of gene expression by progressive drought in Arabidopsis thaliana. Mol Gen Genet. 1995;246:10–18.
  • Puhakainen T, Hess MW, Mäkelä P, Svensson J, Heino P, Palva ET. Overexpression of multiple dehydrin genes enhances tolerance to freezing stress in Arabidopsis. Plant Mol Biol. 2004;54:743–753.
  • Lång V, Palva ET. The expression of a rab-related gene, rab18, is induced by abscisic acid during the cold acclimation process of Arabidopsis thaliana (L.) Heynh. Plant Mol Biol. 1992;20:951–962.
  • Shi H, Chen L, Ye T, Liu X, Ding K, Chan Z. Modulation of auxin content in Arabidopsis confers improved drought stress resistance. Plant Physiol Biochem. 2014;82:209–217.
  • Jha Y, Sablok G, Subbarao N, Sudhakar R, Fazil MH, Subramanian RB, Squartini A, Kumar S. Bacterial-induced expression of RAB18 protein in Oryza sativa salinity stress and insights into molecular interaction with GTP ligand. J Mol Recognit. 2014;27:521–527.
  • Liu GY. Isolation, sequence identification and tissue expression profile of two novel soybean (Glycine max) genes – vestitone reductase and chalcone reductase. Mol Biol Rep. 2009;36(7):1991–1994.
  • Livak KJ, Schmittgen TD. Analysis of relative gene expression data using real-time quantitative PCR and the 2(−Delta Delta C(T)) method. Methods. 2001;25(4):402–408.
  • Hardison RC. Comparative genomics. PLoS Biol. 2003;1:E58.