By Jean-Pierre Jacquot (Eds.)
The field of redox is speedily altering, in particular in relation to plants where redox reactions are exacerbated in comparison to non-photosynthetic organisms. the advance of proteomics has allowed the identity of hundreds and hundreds of molecular ambitions of those structures, and the fresh discovery of glutaredoxins skill to bind iron sulphur facilities (ISC) and to take part in ISC meeting in different apoproteins has supplied many new insights. This quantity provides new examine on oxidative rigidity in vegetation, starting from the construction of reactive oxygen species or reactive nitrogen species, to their accumulation, their involvement in sign transduction, and their degradation, whereas additionally protecting the hyperlinks among oxidative rigidity and biotic and abiotic stresses. * Cutting-edge reviews written from a extensive variety of clinical views * For over forty years, sequence has loved a name for excellence * members the world over famous gurus of their respective fields
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Extra info for Advances in Botanical Research
E. and Hansson, A. (2007). Oxidative modifications to cellular components in plants. Annual Review of Plant Biology 58, 459–481. Morgan, M. , Baxter, C. , Williams, T. , Fernie, A. , Fricker, M. , Ratcliffe, R. , Sweetlove, L. J. and Finkemeier, I. (2008). Decrease in manganese superoxide dismutase leads to reduced root growth and affects TCA cycle flux and mitochondrial redox homeostasis. Plant Physiology 147, 101–114. , Desikan, R. and Hancock, J. (2002). Hydrogen peroxide signalling. Current Opinion in Plant Biology 5, 388.
B. Oxidation of Sulphur-Containing Amino Acids ......................... C. Other Protein Modifications ................................................ Does Protein Oxidation Mean Protein Dysfunction? . . . . . . . . . . Removal and Processing of Oxidized Proteins. . . . . . . . . . . . . . The Cost of Protein Oxidation . . . . . . . . . . . . . . . . . . . . . . Summary . . . . . . . . . . . . . . . . . . . . . . . . . . .
2006). Autophagy in the control of programmed cell death. Current Opinion in Plant Biology 9, 391–396. 22 L. J. SWEETLOVE AND I. M. MØLLER Penaa, L. , Pasquinia, L. , Tomaroa, M. L. and Gallego, S. M. (2006). ) leaves under cadmium stress. Plant Science 171, 531–537. Qiu, Q. , Huber, J. , Booker, F. , Leakey, A. , Fiscus, E. , Yau, P. , Ort, D. R. and Huber, S. C. (2008). Increased protein carbonylation in leaves of Arabidopsis and soybean in response to elevated [CO2]. Photosynthesis Research 97, 155–166.