Page 115 - 70_03
P. 115
VOL. 70 (3), 743-776, 2004 INTERACCIONES MICROORGANISMOS-SUELO-PLANTA...
(26) KUBIENA, W. (1944) Suelo y formación del suelo desde el punto de vista
(27) biológico. Nuevas Gráficas. Madrid. 1944.
LARSEN, K.; BORISOV, A.Y.; SANDAL, N.; MADSEN, L.K.; TSYGANOV, V.E.; VOROSHI-
(28) LOVA, V.A.; BATAGOV, A.O.; STOUGAARD, J. y TIKHONOVICH, I.A. (2001) The first
(29) example of a use of achievements in model legumes to clone symbiotic genes
of traditional legumes identified by means of chemical mutagenesis. Pea
(30) (Pisum sativum L.) gene Sym 35 is likely homologous to the gene Nin of
(31) Lotus japonicus. In: Abstracts of the 13th International Congress on Nitrogen
Fixation. Hamilton. Canada. pp. 101.
(32) MARTÍNEZ ABARCA, F.; HERRERA-CERVERA, J.A.; BUENO, P.; SANJUÁN, J.; BISSELING,
(33) T. y OLIVARES, J. (1998) Involvement of salicylic acid in the establishment of
the Rhizobium meliloti-alfalfa symbiosis. MPMI. 11(2): 153-155.
(34) MATHESIUS, U.; SCHLAMAN, H.R.M.; SPAINK, H.P.; SAUTER, C.; ROLFE, B.G. y DJORD-
(35) JEVIC, M.A. (1998) Auxin transport inhibition precedes root nodule formation
(36) on white clover roots and is regulated by flavonoids and derivatives of chitin
(37) oligosaccharides. Plant J., 14: 23-34.
(38) MINERDI, D.; FANI, R.; GALLO, R.; BOARINO, A. y BONFANTE, P. (2001) Nitrogen
(39) fixation genes in an endosymbiotic Burkholderia strain. Appl. Environ. Micro-
biol., 67: 725-732.
MOLINA, J.A.E.; CLAPP, C.E.; LINDEN, D.R.; ALLMARAS, R.R.; LAYESE, M.F.; DOWDY,
R.H. y CHENG, R.H. (2001) Modeling the incorporation of corn (Zea mays L.)
carbon from roots and rhizodeposition into soil organic matter. Soil Biol.
Biochem., 33: 83-93.
MOULIN, L.; MUNIVE, A.; DREYFUS, B. y BOIVIN-MASSON, C. (2001) Nodulation
of legumes by members of the beta-subclass of Proteobacteria. Nature, 411:
948-950.
NIEHAUS, K.; ALBUS, U.; BAIER, R.; SCHIENE, K.; SCHROEDER, S. y PUHLER, A.
(1998) Symbiotic suppression of the Medicago sativa plant defence system by
Rhizobium meliloti oligosaccharides. In: Biological Nitrogen Fixation for 21th
century (Elmerich, C.; Kondorosi, A. y Newton, W., eds.) pp. 225-226. Dor-
drecht, Boston, London: Kluwer. Academic Publishers.
PAUL, A. y CLARK, F.E. (1989) Occurrences and distribution of soil organics.
In: Soil Microbiology and Biochemistry. Academic Press, San Diego, 81-84.
PARNISKE, M. (2000) Intracellular accomodation of microbes by plants: a com-
mon developmental program for symbiosis and disease? Curr. Opin. Plant
Biol., 3: 320-328.
POZUELO, J.M.; LUCAS, M.M.; DE LORENZO, C.; FERNÁNDEZ PASCUAL, M.; MALDONA-
DO, S. y DE FELIPE, M.R. (2001) Inmunolocalization of alkaloids and X-Ray
microanalysis of elements in lupin seeds. Protoplasma, 218, 104-111.
PROVOROV, N.A.; BORISOV, A.Y.; TIKHONOVICH, I.A. (2002) Developmental gene-
tics and evolution of symbiotic structures in nitrogen-fixing nodules and
arbuscular mycorrhiza. J. Theor. Biol., 214: 215-232.
ROVIRA, A.D. (1956) Plant root excretions in relation to the rizosphere effect.
I. The nature of root exudate from oats and peas. Plant and Soil, 7: 178-194.
RUIZ-ARGÜESO, T.; PALACIOS, J.M.; IMPERIAL, S. (2000) Uptake hydrogenases in
root nodule bacteria. In: E. Triplett (ed.): «Prokaryotic Nitrogen Fixation:
775