Auxin Polar Transport is Essential for the Early Growth Stage of Etiolated Maize (Zea maysL. cv. Honey Bantam) Seedlings

Author:

Ueda Junichi,Sakamoto-Kanetake Miyako,Toda Yuta,Miyamoto Kensuke,Uheda Eiji,Daimon Hiroyuki

Publisher

Informa UK Limited

Subject

Agronomy and Crop Science

Reference46 articles.

1. Carraro, N., Forestan, C., Canova, S., Traas, J. and Varotto, S. 2006. ZmPIN1a and ZmPIN1b encode two novel putative candidates for polar auxin transport and plant architecture determination of maize. Plant Physiol. 142: 254-264.

2. Carrington, C.M.S. and Esnard, J. 1988. The elongation response of watermelon hypocotyls to indole-3-acetic acid: a comparative study of excised segments and intact plants. J. Exp. Bot. 39: 441-450.

3. Chapman, E.J. and Estelle, M. 2009. Mechanism of auxin-regulated gene expression in plants. Annu. Rev. Genet. 43: 265-85.

4. Chen, R. and Masson, P.H. 2006. Auxin transport and recycling of PIN proteins in plants. In J. Šamaja, F. Balška, D. Menzel eds., Plant Endocytosis. Springer-Verlag, Berlin, Heidelberg. 139-157.

5. Chon, N.M., Nishikawa-Koseki, N., Hirata, Y., Saka, H. and Abe, H. 2000. Effects of brassinolide on mesocotyl, coleoptile and leaf growth in rice seedlings. Plant Prod. Sci. 3: 360-365.

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