Arabidopsis: A Laboratory Manual

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CSHL Press, 2002 - 354 Seiten
The thale cress Arabidopsis thaliana is increasingly popular among plant scientists: it is small, easy to grow, and makes flowers, and the sequence of its small and simple genome was recently completed. This is the most complete and authoritative laboratory manual to be published on this model organism and the first to deal with genomic and proteomic approaches to its biology.
 

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LXXXIX
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Beliebte Passagen

Seite 169 - Liu, YG and Whittier, RF (1995) Thermal asymmetric interlaced PCR: automatable amplification and sequencing of insert end fragments from PI and YAC clones for chromosome walking. Genomics 25, 674-681.
Seite 277 - Ishitani, M., Xiong, L., Stevenson, B. and Zhu, JK 1997. Genetic analysis of osmotic and cold stress signal transduction in Arabidopsis: interactions and convergence of abscisic acid-dependent and abscisic acid-independent pathways.
Seite 115 - Bleecker, AB, Estelle, MA, Somerville, C. and Kende, H. (1988). Insensitivity to ethylene conferred by a dominant mutation in Arabidopsis thaliana.
Seite 277 - Heim R. and Tsien RY 1996. Engineering green fluorescent protein for improved brightness, longer wavelengths and fluorescence resonance energy transfer.
Seite 38 - Campisi, L., Yang, Y., Yi, Y., Heilig, E., Herman, B., Cassista, AJ, Allen, DW, Xiang, H. and Jack, T. (1999) Generation of enhancer trap lines in Arabidopsis and characterization of expression patterns in the inflorescence, P/anti.
Seite 38 - Krysan, PJ, Young, JC, and Sussman, MR (1999) T-DNA as an insertional mutagen in Arabidopsis. Plant Cell 11, 2283-2290.
Seite 277 - Harmer. SL. Hogenesch. JB. Straume. M. Chang. HS. Han. B. Zhu. T. Wang. X. Kreps. JA.
Seite 39 - Weigel, D., Ahn, JH, Blazquez, MA, Borevitz, JO, Christensen, SK, Fankhauser, C., Ferrandiz, C., Kardailsky, I., Malancharuvil, EJ, Neff, MM, Nguyen, JT, Sato, S., Wang, ZY, Xia, Y., Dixon, RA, Harrison, MJ, Lamb, CJ, Yanofsky, MF, and Chory, J.
Seite 315 - Kawasaki, T., Henmi, K., Ono, E., Hatakeyama, S., Iwano, M., Satoh, H., and Shimamoto, K. (1999). The small GTP-binding protein Rac is a regulator of cell death in plants.

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