By A. H. & Morris, J. Garreth [eds.] Rose
This quantity in a research-level sequence covers different points of microbial body structure and biochemistry together with inositol metabolisms in yeasts, bacterial adhesion, natural acids, the bacterial flagellum and the mechanical behaviour of bacterial cellphone partitions. it truly is meant to be of use to microbiologists, biochemists and biotechnologists. different comparable works during this sequence are volumes 29, 30 and 31.
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Additional resources for Advances in Microbial Physiology, Vol. 17
Journal $Bacteriology 117, 924. , Hayashi, H. and Ito, E. (1971). Biochemical and Biophysical Research Communications 42, 69 1 . Aronson, A. I. and Fitz-James, P. C. Journal $Molecular Biology 33, 199. Aronson, A. I. and Fitz-James, P. C. (197 1 ) . Journal $Bacteriology 108, 57 1 . Aronson, A. I. and Fitz-James, P. C. Journal $Bacteriology 123, 354. Aronson, A. I. and Fitz-James, P. C. Bacteriological Reviews 40, 360. Aronson, A. I. and Horn, D. In “Spores IV” (L. L. ), pp. 72-81. American Society for Microbiology, Bethesda.
The cortex is a loosely crosslinked polyanionic structural polymer; as such, its state of swelling or contraction depends upon the type and concentration of cations present. , 1960). Alternatively, the swelling properties of the cortex could be modified during spore formation by hydrolysis of peptide side chains (Could and Dring, 1975b). What is the experimental support for these models? Firstly, it seems clear that the cortex is indispensible for heat resistance, is involved in the final stages of dehydration of the core, and is necessary for maintenance of the dehydrated heat-resistant state.
Cole, R. , Klofat, W. and Freese, E. Journal $BacteTiology 101, 1046. Gerhardt, P. and Ribi, E. Journal of Bacteriology 88, 1774. , Scherrer, R. and Black, S . H. I n “Spores V” (H. 0. Halvorson, R. Hanson and L. L. ), pp. 68-74. American Society for Microbiology, Washington. -M. Bacten‘ologccalReviews32, 425. Gilpin, R. W. and Sadoff, H. L. (197 1 ) . Journal $Biological Chemistry 246, 1475. Could, G. W. and Dring, G. J. Advances inMicrobia1 Physiology 11, 137. Could, G. W. and Dring, G. J .