Download Cell to Cell Signals in Plants and Animals: Progress Report by A. Graniti, R. D. Durbin, A. Ballio (auth.), Volker Neuhoff, PDF

By A. Graniti, R. D. Durbin, A. Ballio (auth.), Volker Neuhoff, John Friend (eds.)

Summarizing learn development accomplished in 32 parts of telephone biology coated during this sequence, this quantity locations distinctive emphasis at the following subject matters: attractiveness in parasitic and symbiotic platforms - the molecular biology and genetics of susceptibility and resistance of crops and animals to pathogens, parasites and symbionts - the cellphone to mobilephone reputation and differentiation - the main demanding difficulties in developmental biology of vegetation and animals - the plasticity in telephone to mobilephone conversation which performs a big position in mobile differentiation and function.

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1990. Nodulin function and nodulin gene regulation in root nodule development. In press. In: P. M. ), The Molecular Biology of Nitrogen Fixation. CRC Press, Florida. , C. Zalensky, A Hirsch, A Van Kammen, and T. Bisseling. 1989. Identification of Rhizobium legummosarum genes and signal compounds involved in the induction of early nodulin gene expression. pp. 367-377. In: ref. 2. 25 45) Keen, N. 1986. Pathogenic strategies of fungi. pp. 171-188. In: ref. 1. 46) Kolattukudy, P. E. 1985. Enzymatic penetration of the plant cuticle by fungal pathogens.

What mechanisms determine whether a species is a host or non-host for a particular virus? In a classical series of papers, Bald and Tinsley (3-5) introduced the idea that host range was controlled by pathogenicity factors in the virus and susceptibility factors in the host. When the two sets of factors 'matched', successful pathogenesis was established; when they did not, the species was a non-host for that particular virus. Clearly, this model involves recognition events between plant- and virus-specified molecules, and it is likely that a 'successful' recognition, from the virus standpoint, would signal changes facilitating virus multiplication and pathogenesis.

Symbiotic properties of Rhizobia containing a flavanoid-independent hybrid nodD product. J. Bacteriol. 171: 4045-4053. H. J. Lugtenberg. 1989. Localization of functional regions of the Rhizobium nodD product using hybrid nodD genes. Plant Molec. Bioi. 12: 59-73. M. Joseph, and DA Phillips. 1987. Flavone limitations to root nodulation and symbiotic nitrogen fixation in Alfalfa. Plant Physiol. 84: 1193-1196. E. Wilson, L. B. Johnston. 1986. Induction of Rhizobium leguminosarum nod genes by flavonoids is antagonized by other plant-specified aromatic compounds.

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