Agriculture Reference
In-Depth Information
Hobbie L, Estelle M (1995) The axr4 auxin-resistant mutants of Arabidopsis thaliana define
a gene important for root gravitropism and lateral root initiation. Plant J 7:211-220
Hu X, Neill S, Tang Z, Cai W (2005) Nitric oxide mediates gravitropic bending in soybean
roots. Plant Physiol 137:663-670
Jonak C, Okresz L, Bogre L, Hirt H (2002) Complexity, cross talk and integration of plant
MAP kinase signalling. Curr Opin Plant Biol 5:415-424
Jones AM (1998) Auxin transport: down and out and up again. Science 282:2201-2203
King J, Stimart D, Fisher R, Bleecker A (1995) A mutation altering auxin homeostasis and
plant morphology in Arabidopsis . Plant Cell 7:2023-2037
Krysan PJ, Jester PJ, Gottwald JR, Sussman MR (2002) An Arabidopsis mitogen-activated
protein kinase kinase kinase gene family encodes essential positive regulators of cytoki-
nesis. Plant Cell 14:1109-1120
Kumar D, Klessig DF (2000) Differential induction of tobacco MAP kinases by the defense
signals nitric oxide, salicylic acid, ethylene, and jasmonic acid. Mol Plant Microbe
Interact 13:347-351
Lamattina L, Garcia-Mata C, Graziano M, Pagnussat G (2003) Nitric oxide: the versatility of
an extensive signal molecule. Annu Rev Plant Biol 54:109-136
Lanteri ML, Pagnussat G, Lamattina L (2005) Calcium and calcium-dependent protein
kinase activation are involved in nitric oxide-induced adventitious root formation in
cucumber. (submitted)
Leyser HMO (1998) Auxin, cell division and the control of plant development. In: Bryant JA,
Chiantone D (eds) Plant cell proliferation and its regulation in growth and development.
Wiley, New York, pp 59-65
Ljung K, Bhalerao RP, Sandberg G (2001) Sites and homeostatic control of auxin biosynthesis
in Arabidopsis during vegetative growth. Plant J 28:465-474
Malamy JE, Benfey PN (1997a) Down and out in Arabidopsis : the formation of lateral roots.
Trends Plant Sci 2:390-396
Malamy JE, Benfey PN (1997b) Organization and cell differentiation in lateral roots of
Arabidopsis thaliana . Development 124:33-44
Mizoguchi T, Gotoh Y, Nishida E, Yamaguchi-Shinozaki K, Hayashida N, Iwasaki T, Ka-
mada H, Shinozaki K (1994) Characterization of two cDNAs that encode MAP kinase
homologues in Arabidopsis thaliana and analysis of the possible role of auxin in acti-
vating such kinase activities in cultured cells. Plant J 5:111-122
Mockaitis K, Howell SH (2000) Auxin induces mitogenic activated protein kinase (MAPK)
activation in roots of Arabidopsis seedlings. Plant J 24:785-796
Morris DA (2000) Transmembrane auxin carrier systems - dynamic regulators of polar
auxin transport. Plant Growth Regul 32:161-172
Mulsch A, Busse R, Liebau S, Forstermann U (1988) LY 83583 interferes with the release of
endothelium-derived relaxing factor and inhibits soluble guanylate cyclase. J Pharmacol
Exp Ther 247:283-288
Neill SJ, Desikan R, Hancock JT (2003) Nitric oxide signalling in plants. New Phytol
159:11-35
Nishihama R, Ishikawa M, Araki S, Soyano T, Asada T, Machida Y (2001) The NPK1 mitogen-
activated protein kinase kinase kinase is a regulator of cell-plate formation in plant
cytokinesis. Genes Dev 15:352-363
Pagnussat GC, Simontacchi M, Puntarulo S, Lamattina L (2002) Nitric oxide is required for
root organogenesis. Plant Physiol 129:954-956
Pagnussat GC, Lanteri ML, Lamattina L (2003) Nitric oxide and cyclic GMP are messengers
in the indole acetic acid-induced adventitious rooting process. Plant Physiol 132:1241-
1248
Search WWH ::




Custom Search