New PDF release: Auxin Molecular Biology

By Karin Ljung, Anna K. Hull, Mariusz Kowalczyk, Alan Marchant (auth.), Catherine Perrot-Rechenmann, Gretchen Hagen (eds.)

The plant hormone auxin performs a primary position within the development and improvement of crops. Researchers from around the globe are at the moment trying to get to the bottom of the molecular mechanisms during which auxin controls such assorted procedures as phone department, mobilephone elongation, and differentiation. study questions about auxin motion are being addressed utilizing cutting-edge suggestions which are on hand to mobile biologists, geneticists, molecular biologists, biochemists, and physiologists.

This textual content highlights some of the significant issues that have been lined in a up to date workshop that was once in particular all for study into the mechanisms of auxin motion. The articles during this textual content supply a present replace of the examine findings on auxin biosynthesis, metabolism and shipping; evolutionary styles; auxin conception, sign transduction and body structure; auxin-regulated gene expression and protein degradation pathway in auxin responses; and cross-talk among auxin and different plant signalling pathways.

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Extra resources for Auxin Molecular Biology

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44: 119-146. R 1974. Carrier-mediated auxin transport. , Brown, D. K and Estelle, M. 1997. Reduced naphthylphthalamic acid binding in the tir3 mutant of Arabidopsis is associated with a reduction in polar auxin transport and diverse morphological defects. Plant Cell 9: 745-757. , Weisbeek, P. and Scheres, B. 1999. An auxin-dependent distal organizer of pattern and polarity in the Arabidopsis root. Cell 99: 463-472. Sachs, T 1989. The development of vascular networks during leaf development. Curro Top.

Auxin transport. J. ) Plant Honnones: Physiology, Biochemistry and Molecular Biology, Kluwer, Dordrecht, Netherlands, pp. 509-530. Luschnig, c. , Gaxiola, R, Grisafi, P. and Fink, G. 1998. ErRl, a root specific protein involved in auxin transport, is required for gravitropism in Arabidopsis thahana. Genes Dev. 12: 21752187. P. I. 1980. Mutants of Arabidopsis thaliana with altered responses to auxins and gravity. Biochem. Genet. 18: 1041-1053. , Delbarre, A, PerrotRechenmann, C. J. 1999. AUXI regulates root gravitropism in Arabidopsis by facilitating uptake within root apical tissue.

Plant Cell 13: 1683-1697. , Mandel, T and Kuhlemeier, C. 2000. Auxin regulates the initiation and radial position of plant lateral organs. Plant Cell 12: 507-518. H. 1990. Phytotropins: receptors and endogenous ligands. Symp. Soc. Exp. BioI. 44: 119-146. R 1974. Carrier-mediated auxin transport. , Brown, D. K and Estelle, M. 1997. Reduced naphthylphthalamic acid binding in the tir3 mutant of Arabidopsis is associated with a reduction in polar auxin transport and diverse morphological defects. Plant Cell 9: 745-757.

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