Relocalization of the PIN1 Auxin Efflux Facilitator Plays a Role in Phototropic Responses
Author:
Affiliation:
1. Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907-1165
Publisher
Oxford University Press (OUP)
Subject
Plant Science,Genetics,Physiology
Link
http://academic.oup.com/plphys/article-pdf/134/1/28/38700910/plphys_v134_1_28.pdf
Reference24 articles.
1. Beveridge CA, Symons GM, Turnbull CGN (2000) Auxin inhibition of decapitation-induced branching is dependent on graft-transmissible signals regulated by genes Rms1 and Rms2. Plant Physiol 123 : 689-697
2. Bhalerao R, Eklof J, Ljung K, Marchant A, Bennett M, Sandberg G (2002) Shoot-derived auxin is essential for early lateral root emergence in Arabidopsis seedlings. Plant J 29 : 325-332
3. Booker J, Chatfield S, Leyser O (2003) Auxin acts in xylem-associated or medullary cells to mediate apical dominance. Plant Cell 15 : 495-507
4. Briggs WR, Beck CF, Cashmore AR, Christie JM, Hughes J, Jarillo JA, Kagawa T, Kanegae H, Liscum E, Nagatini A et al. (2001) The phototrophin family of photoreceptors. Plant Cell 13 : 993-997
5. Casimiro I, Beeckman T, Graham N, Bhalerao R, Zhang H, Casero P, Sandberg G, Bennett M (2003) Dissecting Arabidopsis lateral root development. Trends Plant Sci 8 : 165-171
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