Rhizobium nod factor perception and signalling.

نویسندگان

  • René Geurts
  • Ton Bisseling
چکیده

Book. (Madison, Wisconsin: www.medicago.org). Etzler, M.E., Kalsi, G., Ewing, N.N., Roberts, N.J., Day, R.B., and Murphy, J.B. (1999). A Nod factor binding lectin with apyrase activity from legume roots. Proc. Natl. Acad. Sci. USA 96, 5856– 5861. Felle, H.H., Kondorosi, E., Kondorosi, A., and Schultze, M. (1995). Nod signal-induced plasma membrane potential changes in alfalfa root hairs are differentially sensitive to structural modifications of the lipochitooligosaccharide. Plant J. 7, 939–947. Felle, H.H., Kondorosi, E., Kondorosi, A., and Schultze, M. (1996). Rapid alkalinization in alfalfa root hairs in response to rhizobial lipochitooligosaccharide signals. Plant J. 10, 295–301. Felle, H.H., Kondorosi, E., Kondorosi, A., and Schultze, M. (1998). The role of ion fluxes in Nod factor signalling in Medicago sativa. Plant J. 13, 455–464. Firmin, J.L., Wilson, K.E., Carlson, R.W., Davies, A.E., and Downie, J. (1993). Resistance to nodulation of c.v. Afghanistan peas is overcome by nodX, which mediates an O-acetylation of the Rhizobium leguminosarum lipo-oligosaccharide nodulation factor. Mol. Microbiol. 10, 351–360. Geurts, R., Heidstra, R., Hadri, A.E., Downie, A., Franssen, H., Van Kammen, A., and Bisseling, T. (1997). Sym2 of Pisum sativum is involved in a Nod factor perception mechanism that controls the infection process in the epidermis. Plant Physiol. 115,

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عنوان ژورنال:
  • The Plant cell

دوره 14 Suppl  شماره 

صفحات  -

تاریخ انتشار 2002