Nitric Oxide and Signaling in Plants, by David Wendehenne

By David Wendehenne

Advances in Botanical Research publishes in-depth and updated experiences on quite a lot of subject matters in plant sciences. presently in its 77th quantity, the sequence positive aspects a number of stories through famous specialists on all facets of plant genetics, biochemistry, phone biology, molecular biology, body structure and ecology.

  • Publishes in-depth and up to date reports on quite a lot of themes in plant sciences
  • Contains observation through well-known specialists on all facets of plant genetics, biochemistry, telephone biology, molecular biology, body structure, and ecology

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Sawa, A. (2011). The diverse functions of GAPDH: views from different subcellular compartments. Cell Signal, 23(2), 317e323. 003. , & Costa, A. (2013). Nuclear accumulation of cytosolic glyceraldehyde-3-phosphate dehydrogenase in cadmiumstressed Arabidopsis roots. Plant Physiology, 162(1), 333e346. 215194. , & Laloi, C. (2015). Stress-induced chromatin changes in plants: of memories, metabolites and crop improvement. Cellular and Molecular Life Sciences, 72(7), 1261e1273. 1007/s00018-014-1792-z.

Corpas, F. , Palma, J. , et al. (2011). Nitric oxide imbalance provokes a nitrosative response in plants under abiotic stress. Plant Science: An International Journal of Experimental Plant Biology, 181(5), 604e611. 005. , & Lusser, A. (2001). Comparative analysis of HD2 type histone deacetylases in higher plants. Planta, 280e285. , Dixon, R. , & Lamb, C. (1998). Nitric oxide functions as a signal in plant disease resistance. Nature, 394(6693), 585e588. 1038/ 29087. , et al. (2003). The Arabidopsis NPR1 disease resistance protein is a novel cofactor that confers redox regulation of DNA binding activity to the basic domain/leucine zipper transcription factor TGA1.

Begara-Morales, J. , Leyva-Perez, M. , Corpas, F. , et al. (2014). Differential transcriptomic analysis by RNA-Seq of GSNO-responsive genes between Arabidopsis roots and leaves. Plant and Cell Physiology, 55(6), 1080e1095. 1093/pcp/pcu044. , et al. (2009). Current view of nitric oxide-responsive genes in plants. Plant Science, 177(4), 302e309. 006. , et al. (2011). Type-2 histone deacetylases as new regulators of elicitor-induced cell death in plants. New Phytologist, 192(1), 127e139. x. , Sandalio, L.

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