Abstract
Annual Review of Biochemistry
Vol. 66:
751-783
(Volume publication date July 1997)
(doi:10.1146/annurev.biochem.66.1.751)
SUBTRACTIVE CLONING:Past, Present, and Future C. G. Sagerström, 1 B. I. Sun, 1 and H. L. Sive2Whitehead Institute for Biomedical Research, Nine Cambridge Center, Cambridge, Massachusetts 02142 ▪ Abstract Subtractive cloning is a powerful technique for isolating genes expressed or present in one cell population but not in another. This method and a related one termed positive selection have their origins in nucleic acid reassociation techniques. We discuss the history of subtractive techniques, and fundamental information about the nucleic acid composition of cells that came out of reassociation analyses. We then explore current techniques for subtractive cloning and positive selection, discussing the merits of each. These techniques include cDNA library–based techniques and PCR-based techniques. Finally, we briefly discuss the future of subtractive cloning and new approaches that may augment or supersede current methods. Most recent citing papers (via CrossRef)Solid phase subtractive cloning in differentially expressed genes identification Molecular Biology Reports (2009) Genetic differences between Bradyrhizobium japonicum variant strains contrasting in N2-fixation efficiency revealed by representational difference analysis Archives of Microbiology (2008) Normalization of full-length enriched cDNA Molecular BioSystems 4(3):205 (2008) Functional genomics of microspore embryogenesis Euphytica 158(3):275-285 (2007) How a neuropsychiatric brain bank should be run: a consensus paper of Brainnet Europe II A. Schmitt, M. Bauer, H. Heinsen, W. Feiden, P. Falkai, I. Alafuzoff, T. Arzberger, S. Al-Sarraj, J. E. Bell, N. Bogdanovic, W. Brück, H. Budka, I. Ferrer, G. Giaccone, G. G. Kovacs, D. Meyronet, M. Palkovits, P. Parchi, E. Patsouris, R. Ravid, R. Reynolds, P. Riederer, W. Roggendorf, A. Schwalber, D. Seilhean, H. Kretzschmar Journal of Neural Transmission 114(5):527-537 (2007)
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