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Below is a list of source material to be explored for further
detail as well as links to available papers.
by members of the Thellungiella Consortium
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Amtmann A, Bohnert HJ and Bressan RA (2005) Abiotic stress and plant genome evolution. Search for new models. Plant Physiol. 138, 127-130. [PDF] Barkla BJ, Vera-Estrella R and Pantoja O (2007) Enhanced separation of membranes during free flow zonal electrophoresis in plants. Anal Chem. 79, 5181-5187. [Abstract at PubMed] de Boer AH (2002) Plant 14-3-3 proteins assist ion channels and pumps. Biochem. Soc. Trans. 30, 416-421. [PDF] Bressan RA, Zhang C, Zhang H, Hasegawa PM, Bohnert HJ and Zhu JK (2001) Learning from the Arabidopsis experience. The next gene search paradigm. Plant Physiology 127, 1354-1360. [PDF] Bunney TD, Van den Wijngaard PWJ and de Boer AH (2002) 14-3-3 protein regulation of proton pumps and ion channels. Plant Mol. Biol. 50, 1041-1051. [PDF] Campanoni P, Sutter JU, Davis CS, Littlejohn GR and Blatt MR (2007) A generalized method for transfecting root epidermis uncovers endosomal dynamics in Arabidopsis root hairs. Plant J. 51, 322-330. [Abstract at PubMed] Chen AP, Wang GL, Qu ZL, Lu CX, Liu N, Wang F and Xia GX (2007) Ectopic expression of ThCYP1, a stress-responsive cyclophilin gene from Thellungiella halophila, confers salt tolerance in fission yeast and tobacco cells. Plant Cell Rep. 26, 237-245. [Abstract at PubMed] Fang QY, Xu ZK and Song RT (2006) Cloning, characterization and genetic engineering of FLC homolog in Thellungiella halophila. Biochem. Biophys. Res. Comm. 347, 707-714. [PDF] Gao F, Gao Q, Duan X, Yue G, Yang A and Zhang J (2006) Cloning of an H+-PPase gene from Thellungiella halophila and its heterologous expression to improve tobacco salt tolerance. J Exp Bot [Epub ahead of print]. [PDF] Ghars MA, Parre E, Debez A, Bordenave M, Richard L, Leport L, Bouchereau A, Savoure A and Abdelly C (2007) Comparative salt tolerance analysis between Arabidopsis thaliana and Thellungiella halophila, with special emphasis on K(+)/Na(+) selectivity and proline accumulation. J Plant Physiol. [Epub ahead of print]. [Abstract at PubMed] Gong QQ, Li PH, Ma SS, Rupassara SI and Bohnert HJ (2005) Salinity stress adaptation competence in the extremophile Thellungiella halophila in comparison with its relative Arabidopsis thaliana. Plant J. 44, 826-839. [PDF] Griffith M, Timonin M, Wong AC, Gray GR, Akhter SR, Saldanha M, Rogers MA, Weretilnyk EA and Moffatt B (2007) Thellungiella: an Arabidopsis-related model plant adapted to cold temperatures. Plant Cell Environ. 30, 529-538. [Abstract at PubMed] Inan G, Zhang Q, Li PH, Wang ZL, Cao ZY, Zhang H, Zhang CQ, Quist TM, Goodwin SM, Zhu JH, Shi HH, Damsz B, Charbaji T, Gong QQ, Ma SS, Fredricksen M, Galbraith DW, Jenks MA, Rhodes D, Hasegawa PM, Bohnert HJ, Joly RJ, Bressan RA and Zhu JK (2004) Salt cress. A halophyte and cryophyte Arabidopsis relative model system and its applicability to molecular genetic analyses of growth and development of extremophiles. Plant Physiology 135, 1718-1737. [PDF] Kant S, Kant P, Raveh E and Barak S (2006) Evidence that differential gene expression between the halophyte, Thellungiella halophila, and Arabidopsis thaliana is responsible for higher levels of the compatible osmolyte proline and tight control of Na+ uptake in T-halophila. Plant Cell Environ. 29, 1220-1234. [PDF] Li HQ, Xu J, Chen L and Li MR (2007) Establishment of an efficient Agrobacterium tumefaciens-mediated leaf disc transformation of Thellungiella halophila. Plant Cell Rep. 26, 1785-1789. [Abstract at PubMed] Li PH, Mane SP, Sioson AA, Robinet CV, Heath LS, Bohnert HJ and Grene R (2006) Effects of chronic ozone exposure on gene expression in Arabidopsis thaliana ecotypes and in Thellungielia halophila. Plant Cell Environ. 29, 854-868. [PDF] Liu AR and Zhao KF (2005) [Effects of salt stress on the growth and the nitrate reductase activity in Thellungiella halophila]. Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 31, 469-476. Article in Chinese. [Abstract at PubMed] Liu AR and Zhao KF (2005) [Osmotica accumulation and its role in osmotic adjustment in Thellungiella halophila under salt stress]. Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 31, 389-395. Article in Chinese. [Abstract at PubMed] Maathuis FJM, Filatov V, Herzyk P, Krijger GC, Axelsen KB, Chen S, Green BJ, Madagan KL, Sanchez-Fernandez R, Forde BG, Palmgren MG, Rea PA, Williams LE, Sanders D and Amtmann A (2003) Transcriptome analysis of root transporters reveals participation of multiple gene families in the response to cation stress. Plant J. 35, 675-692. [PDF] M'rah S, Ouerghi Z, Eymery F, Rey P, Hajji M, Grignon C and Lachaal M (2007) Efficiency of biochemical protection against toxic effects of accumulated salt differentiates Thellungiella halophila from Arabidopsis thaliana. J Plant Physiol. 164, 375-384. [Abstract at PubMed] M'rah S, Ouerghi Z, Berthomieu C, Havaux M, Jungas C, Hajji M, Grignon C and Lachaal M (2006) Effects of NaCl on the growth, ion accumulation and photosynthetic parameters of Thellungiella halophila. J Plant Physiol. 163, 1022-1031. [Abstract at PubMed] Quan XQ, Wang ZL, Zhang H and Bi YP (2007). Cloning and characterization of TsMT3, a type 3 metallothionein gene from salt cress (Thellungiella salsuginea). DNA Seq. [Epub ahead of print].. [Abstract at PubMed] Quintero FJ, Ohta M, Shi H, Zhu JK and Pardo JM (2002) Reconstitution in yeast of the Arabidopsis SOS signaling pathway for Na+ homeostasis. Proc. Natl. Acad. Sci. USA 99, 9061-9066. [PDF] Ren LP, Jiang SR, Rao ZH, Xiong YM, Zhang CR and Wang DD (2004) [Study on the resonance scattering light spectra of atrazine-RNA and its analytical application]. Guang Pu Xue Yu Guang Pu Fen Xi. 24, 1213-1216. Article in Chinese. [Abstract at PubMed] Seki M, Narusaka M, Ishida J, Nanjo T, Fujita M, Oono Y, Kamiya A, Nakajima M, Enju A, Sakurai T, et al (2002) Monitoring the expression profiles of 7000 Arabidopsis genes under drought, cold and high salinity stresses using a full-length cDNA microarray. Plant Journal. 31, 279-292. [PDF] Taji T, Seki M, Satou M, Sakurai T, Kobayashi M, Ishiyama K, Narusaka Y, Narusaka M, Zhu JK and Shinozaki K (2004) Comparative genomics in salt tolerance between Arabidopsis and Arabidopsis-related halophyte salt cress using Arabidopsis microarray. Plant Physiol. 135, 1697-1709. [PDF] Teusink RS, Rahman M, Bressan RA and Jenks MA (2002) Cuticular waxes on Arabidopsis thaliana close relatives Thellungiella halophila and Thellungiella parvula. International Journal of Plant Science 163, 309-315. [PDF] Thiery L, Leprince AS, Lefebvre D, Ghars MA, Debarbieux E and Savouré A (2004) Phospholipase D is a negative regulator of proline biosynthesis in Arabidopsis thaliana. Journal of Biological Chemistry 279: 14812-14818. [PDF] Vera-Estrella R, Barkla BJ, Garcia-Ramirez L and Pantoja O (2005) Salt stress in salt cress activates Na transport mechanisms required for salinity tolerance. Plant Physiol., 139, 1507-1517. [PDF] Volkov V and Amtmann A (2006) Thellungiella halophila, a salt-tolerant relative of Arabidopsis thaliana, has specific root ion channel features supporting K+/Na+ homeostasis under salinity stress. Plant J., in press. Volkov V, Wang B, Dominy PJ, Fricke W and Amtmann A (2004) Thellungiella halophila, a salt-tolerant relative of Arabidopsis thaliana, possesses effective mechanisms to discriminate between potassium and sodium Plant Cell and Environment 27 (1): 1-14. [PDF] Wang B, Davenport R, Volkov V and Amtmann A (2006) Low unidirectional sodium influx into root cells restricts net sodium accumulation in Thellungiella halophila, a salt-tolerant relative of Arabidopsis thaliana. Journal of Experimental Botany 57, 1161-1170. [PDF]
Wang WG, Pelah D, Alergand T, Shoseyov O and Altman A (2002) cDNA cloning,
expression and characterization of SP1, an oligomeric water-stress responsive
boiling stable protein. Plant Physiology 130: 865-875. [PDF] Wang W, Vinocur B, Shoseyov O and Altman A (2004) The role of plant heat-shock proteins/molecular chaperones in the abiotic stress response. Trends in Plant Science 9, 244-252. [PDF] Wang ZI, Li PH, Fredricksen M, Gong ZH, Kim CS, Zhang CQ, Bohnert HJ, Zhu JK, Bressan RA, Hasegawa PM, Zhao YX and Zhang H (2004) Expressed sequence tags from Thellungiella halophila, a new model to study plant salt-tolerance. Plant Science 166, 609-616. [PDF] Wong CE, Li Y, Labbe A, Guevara D, Nuin P, Whitty B, Diaz C, Golding GB, Gray GR, Weretilnyk EA, Griffith M and Moffatt BA (2006) Transcriptional profiling implicates novel interactions between abiotic stress and hormonal responses in Thellungiella, a close relative of Arabidopsis. Plant Physiol. 140, 1437-1450. [PDF] Wong CE, Li Y, Whitty BR, Diaz-Camino C, Akhter SR, Brandle JE, Golding GB, Weretilnyk EA, Moffatt BA and Griffith M (2005) Expressed sequence tags from the Yukon ecotype of Thellungiella reveal that gene expression in response to cold, drought and salinity shows little overlap. Plant Molecular Biology 5, 561-574. [PDF] Xiong L and Zhu JK (2002) Molecular and genetic aspects of plant responses to osmotic stress. Plant Cell Environ. 25, 131-139. [Abstract at PubMed] Yokoi S, Quintero FJ, Cubero B, Ruiz MT, Bressan RA, Hasegawa PM and Pardo JM (2002) Differential expression and function of Arabidopsis thaliana NHX Na+/H+ antiporters in the salt stress response. Plant Journal 30, 529-539. [PDF] Zhu JH, Li HL, Tu FZ, Tian WM and Peng SQ (2006) Cloning and molecular characterization of a RING zinc-finger gene of Hevea brasiliensis. Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 32, 627-633. [Abstract at PubMed] Zhu JK (2001) Plant salt tolerance. Trends in Plant Science 6, 66-71. [PDF] Zhu JK (2003) Regulation of ion homeostasis under salt stress. Curr. Opin. Plant. Biol. 6, 441-445. [PDF]
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