By Eva Zažímalová, Jan Petrášek, Eva Benková

ISBN-10: 3709115256

ISBN-13: 9783709115251

ISBN-10: 3709115264

ISBN-13: 9783709115268

Auxin is a vital signaling compound in crops and very important for plant improvement and development. the current ebook, Auxin and its function in Plant improvement, offers the reader with unique and finished perception into the functioning of the molecule as a rule and in particular in plant improvement. within the first half, the functioning, metabolism and signaling pathways of auxin in vegetation are defined, the second one half depicts the explicit function of auxin in plant improvement and the 3rd half describes the interplay and functioning of the signaling compound upon stimuli of our environment. each one bankruptcy is written by means of overseas specialists within the respective box and designed for scientists and researchers in plant biology, plant improvement and mobile biology to summarize the new development in knowing the position of auxin and recommend destiny views for auxin research.

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Plant Cell 25:3858–3870 Phillips KA, Skirpan AL, Liu X, Christensen A, Slewinski TL, Hudson C, Barazesh S, Cohen JD, Malcomber S, McSteen P (2011) vanishing tassel2 encodes a grass-specific tryptophan aminotransferase required for vegetative and reproductive development in maize. Plant Cell 23:550–566 Pollmann S, Neu D, Lehmann T, Berkowitz O, Schafer T, Weiler EW (2006) Subcellular localization and tissue specific expression of amidase 1 from Arabidopsis thaliana. Planta 224:1241–1253 Qin G, Gu H, Zhao Y, Ma Z, Shi G, Yang Y, Pichersky E, Chen H, Liu M, Chen Z, Qu LJ (2005) An indole-3-acetic acid carboxyl methyltransferase regulates Arabidopsis leaf development.

Plant Physiol 151:168–179 Yamamoto Y, Kamiya N, Morinaka Y, Matsuoka M, Sazuka T (2007) Auxin biosynthesis by the YUCCA genes in rice. Plant Physiol 143:1362–1371 Yang SF, Hoffmann NE (1984) Ethylene biosynthesis and its regulation in higher plants. Annu Rev Plant Biol 35:155–189 Zhao Y (2010) Auxin biosynthesis and its role in plant development. Annu Rev Plant Biol 61:49–64 Zhao Y (2013) Auxin biosynthesis: a simple two-step pathway converts tryptophan to indole-3acetic acid in plants. Mol Plant 5:334–338 Zhao Y, Christensen SK, Fankhauser C, Cashman JR, Cohen JD, Weigel D, Chory J (2001) A role for flavin monooxygenase-like enzymes in auxin biosynthesis.

2001; Stepanova et al. 2008; Tao et al. 2008). But several recent genetic studies have demonstrated that YUCs and TAAs participate in the same pathway (Mashiguchi et al. 2011; Stepanova et al. 2011; Won et al. 2011). The yuc mutants and taa mutants share many similarities. For example, yuc1 yuc2 yuc4 yuc6 quadruple mutants have dramatic vascular and floral defects, which are also observed in taa1 tar2 double mutants (Cheng et al. 2006; Stepanova et al. 2008). In fact, all of the characteristics of taa mutants can be phenocopied by inactivating certain combinations of YUC genes (Won et al.

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Auxin and Its Role in Plant Development by Eva Zažímalová, Jan Petrášek, Eva Benková

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