Agriculture Reference
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Bellamine J, Penel C, Greppin H, Gaspar T(1998) Confirmation of the role of auxin
and calcium in the late phases of adventitious root formation. Plant Growth Regul
26:191-194
Bethke PC, Badger MR, Jones RL (2004) Apoplastic synthesis of nitric oxide by plant tissues.
Plant Cell 16:332-341
Bhalerao RP, 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
BoerjanW,CerveraMT,DelarueM,BeeckmanT,DewitteW,BelliniC,CabocheM,VanOn-
ckelen H, Van Montagu M, Inze D (1995) Superroot, a recessive mutation in Arabidopsis ,
confers auxin overproduction. Plant Cell 7:1405-1419
Casimiro I, Marchant A, Bhalerao RP, Beeckman T, Dhooge S, Swarup R, Graham N, Inze D,
Sandberg G, Casero PJ, Bennett M (2001) Auxin transport promotes Arabidopsis lateral
root initiation. Plant Cell 13:843-852
Casimiro I, Beeckman T, Graham N, Bhalerao R, Zhang H, Casero P, Sandberg G, Ben-
nett MJ (2003) Dissecting Arabidopsis lateral root development. Trends Plant Sci
8:165-171
Correa-Aragunde N, Graziano M, Lamattina L (2004) Nitric oxide plays a central role in
determining lateral root development in tomato. Planta 218:900-905
Correa-Aragunde N, Graziano M, Chevalier C, Lamattina L (2005) Nitric oxide positively
regulates cell cycle progression during lateral root development. (submitted)
Creus C, Graziano M, Casanovas E, Pereyra M, Simontacchi M, Puntarulo S, Barassi C (2005)
Nitric oxide is involved in the Azospirillum brasilense -induced lateral root formation in
tomato. Planta 221:297-303
Davies P (1995) Plant hormones and their role in plant growth development. Kluwer,
Dordrecht
Davies P, Mitchell E (1972) Transport of indoleacetic acid in intact roots of Phaseolus
coccineus . Planta 105:139-154
De Klerk G-J, Keppel M, Ter Brugge J, Meekes H (1995) Timing of the phases in adventitious
root formation in apple microcuttings. J Exp Bot 46:965-972
Donaldson L, Ludidi N, Knight MR, Gehring C, Denby K (2004) Salt and osmotic stress
cause rapid increases in Arabidopsis thaliana cGMP levels. FEBS Lett 569:317-320
Druart P (1997) Optimization of culture media for in vitro rooting of Malus domestica
Borkh. cv. Compact Spartan. Biol Plant 39:67-77
Estelle M, Somerville C (1987) Auxin resistant mutants of Arabidopsis with an altered
morphology. Mol Gen Genet 206:200-206
Friml J (2003) Auxin transport - shaping the plant. Curr Opin Plant Biol 6:7-12
Fujita H, Syono K (1996) Genetic analysis of the effects of polar auxin transport inhibitors
on root growth in Arabidopsis thaliana . Plant Cell Physiol 37:1094-1101
Gouvea CMCP, Souza JF, Magalhaes ACN, Martins IS (1997) NO releasing substances that
induce growth elongation in maize root segments. Plant Growth Regul 21:183-187
Gow AJ, Ischiropoulos H (2001) Nitric oxide chemistry and cellular signaling. J Cell Physiol
187:277-282
Granato TC, Raper CDJ (1989) Proliferation of maize ( Zea mays L.) roots in response to
localized supply of nitrate. J Exp Bot 40:263-275
Guo FQ, Okamoto M, Crawford NM (2003) Identification of a plant nitric oxide synthase
gene involved in hormonal signaling. Science 302:100-103
Himanen K, Boucheron E, Vanneste S, de Almeida Engler J, Inze D, Beeckman T (2002)
Auxin-mediated cell cycle activation during early lateral root initiation. Plant Cell
14:2339-2351
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