Martel et al., in "A simple Method for Elimination of False Positive Results in RT-PCR",J. Biochem. and Mol. Biol., 2002, vol. 35, No. 2, pp.
248-250. cited by examiner
. Grothues et al., "PCR amplification of megabase DNA with tagged random primers (T-PCR)," Nucleic Acids Research, 1993, vol. 21, No. 5, pp. 1321-1322. cited by examiner
. Chakrabarti et al., "Novel Sulfoxides Facilitate GC-Rich Template Amplification," Biotechniques, 2002, vol. 32, No. 4, pp. 866, 868, 870-872, 874. cited by examiner
. Schmidt et al., "Controlled ribonucleotide tailing of cDNA ends (CRTC) by terminal deoxynucleotidyl transferase: a new approach in PCR-mediated analysis of mRNA sequences," Nucleic Acids Research, 1996, vol. 24, No. 9, pp. 1789-1791. cited by
examiner
. Kusov et al., "A new G-tailing method for determination of the poly(A) tail length applied to hepatitis A virus RNA," Nucleic Acids Research, 2001, vol. 29, No. 12, pp. 1-6. cited by examiner
. Alburquerque-Silva et al., "Tailing cDNAs with terminal deoxynucleotidyl transferase in RT-PCR assays to identify ribozyme cleavage products," Nucleic Acids Research, 1998, vol. 26, No. 13, pp. 3314-3316. cited by examiner
. Stellrecht et al., "Concurrent Isolation of Ribosomal, Messenger, and Low Molecular Weight RNA," Biotechniques, 2002, vol. 33, No. 5, pp. 1122-1124. cited by examiner
. Krieger et al., "Prokaryotic DNA Sequences in Patients with Chronic Idiopathic Prostatitis," J.Clin.Microbio.,1996, vol. 34, No. 12, p. 3120-3128. cited by examiner
. Cano, "Analysing ancient DNA," Endeavour, 1996, vol. 20, No. 4, pp. 162-167. cited by examiner
. Ussery, D.W., "DNA Denaturation," Center for Biological Sequence Analysis, Institute of Biotechnology, Academic Press, 2001, pp. 1-3. cited by examiner
. Baldini et al., "Chromosomal assignment of human YAC clones by fluorescence in situ hybridization: use of single-yeast-colony PCR and multiple labeling," Genomics, 14: 181-184, 1992. cited by other
. Bohlander et al., "A method for the rapid sequence-independent amplification of microdissected chromosomal material," Genomics, 13: 1322-1324, 1992. cited by other
. Breen et al., "YAC mapping by FISH using Alu-PCR-generated probes," Genomics, 13: 726-730, 1992. cited by other
. Buchanan et al., "Long DOP-PCR of rare archival anthropological samples," Hum. Biol., 72(6): 911-25, 2000. cited by other
. Cheng et al., "Degenerate oligonucleolide primed-polymerase chain reaction and capillary electrophoretic analysis of human DNA on microchip-based devices," Anal. Biochem., 257(2): 101-6, 1998. cited by other
. Cheung et al., "Whole genome amplification using a degenerate oligonucleotide primer allows hundreds of genotypes to be performed on less than one nanogram of genomic DNA," Proc. Natl. Acad. Sci. USA, 93: 14676-14679, 1996. cited by other
. Guan et al., "Generation of band-specific painting probes from a single microdissected chromosome," Hum. Mol. Genet., 2(8): 1117-21, 1993. cited by other
. Lengauer et al., "Fluorescence in situ hybridization of YAC clones after Alu-PCR amplification," Genomics, 13: 826-828, 1992. cited by other
. Ludecke et al., "Cloning defined regions of the human genome by microdissection of banded chromosomes and enzymatic amplification," Nature, 338(6213): 348-50, 1989. cited by other
. McGrath et al., "Sequence analysis of DNA randomly amplified from the Saccharomyces cerevisiae genome," Molecular and Cellular Probes,, 12: 397-405, 1998. cited by other
. Mullis et al., "Specific enzymatic amplification of DNA in vitro: the polymerase chain reaction," Cold Spring Harbor Symp., 263-273, 1986. cited by other
. Nelson et al., "Alu-primed polymerase chain reaction for regional assignment of 110 yeast artificial chromosome clones from the human X chromosome: identification of clones associated with a disease locus," PNAS, 88: 6157-6161, 1991. cited by other
. Rose et al., "Consensus-degenerate hybrid oligonucleotide primers for amplification of distantly related sequences," Nucleic Acids Research, 26(7): 1628-1635, 1998. cited by other
. Sanchez-Cespedes et al., "Degenerate oligonucleotide-primed PCR (DOP-PCR): evaluation of its reliability for screening of genetic alterations in neoplasia," Biotechniques, 25(6): 1036-8, 1998. cited by other
. Smith et al., "Automated differential display using a flourescently labeled universal primer," Biotechniques, 23(2): 274-279, 1997. cited by other
. Sutcliffe et al., "PCR amplification and analysis of yeast artificial chromosomes," Genomics, 13: 1303-1306, 1992. cited by other
. Wells et al., "Detailed chromosomal and molecular genetic analysis of single cells by whole genome amplification and comparative genomic hybridisation," Nucleic Acids Res., 27(4): 1214-1218, 1999. cited by other
. Wesley et al., "Cloning regions of the Drosophila genome by microdissection of polytene chromosome DNA and PCR with nonspecific primer," Nucleic Acids Res., 18(3): 599-603, 1990. cited by other
. Zheleznaya, L. A. et al., PCR Fragmentation of DNA, Biochemistry, vol. 64, 447-453, Sep. 23, 1998. cited by other
. Grothues, D., et al.; PCR amplification of megabase DNA with tagged random primers (T-PCR), Nucleic Acids Research, vol. 21, No. 5, 1321-1322, Jan. 4, 1993. cited by other
. Kittler, Ralf, et al.; "A Whole Genome Amplification Method to Generate Long Fragments from Low Quantities of Genomics DNA", Anal. Biochem., vol. 300, pp. 237-244, Dec. 6, 2001. cited by other
. Sharrrocks, Andrew D., et al., "The Design of Primers for PCR", PCR Technology Current Innovations, Chapter 2, pp. 5-11 (1994). cited by other
. X. Y. Guan et al., Generation of band-specific painting probes from a single microdissected chromosome, Human Molecular Genetics, vol. 2, No. 8, 1117-1121, May 17, 1993. cited by other
. Phillips, Jennifer, et al., Antisense RNA Amplification: A Linear Amplification Method for Analyzing the mRNA Population from Single Living Cells; Methods: A companion to Methods in Enzymology 10, Article No. 0104, 283-288, 1996. cited by other
. Smith, Lee, et al., Single primer amplification (SPA) of cDNA for microarray expression analysis, Nucleic Acids Research, vol. 31, No. 3, Sep. 2, 2002. cited by other
. Schmidt, Wolfgang M. et al., CapSelect: A highly sensitive method for 5' CAP-dependant enrichment of full-length cDNA in PCR-mediated analysis of mRNAs, Nucleic Acids Research, vol. 27, No. 21, Jul. 19, 1999. cited by other
. Makrigiorgos, G. Mike et al., A PCR-based amplification method retaining the quantitative difference between two complex genomes, Nature Biotechnology,, vol. 20, 936-939, Sep. 2002. cited by other
. Studier, F. William, et al., Relationships among Different Strains of T7 and among T7-Related Bacteriophages, Virology 95, 70-84, 1979. cited by other
. Wold, Mark S., Replication Protien A: A Heterotrimeric, Single-Stranded DNA-Binding Protein Required for Eukaryotic DNA Metabolism, Annu. Rev. Biochem., vol. 66; 61-92, 1997. cited by other
. Champoux, James J., DNA Topoisomerases: Structure, Function, and Mechanism, Annu. Rev. Biochem., vol. 70; 369-413, 2001. cited by other
. Zheleznaya, L. A. et al., PCR Fragmentation of DNA, Biochemistry, vol. 64, No. 4, 373-378, 1999. cited by other
. Zhang, Lin et al., Whole genome amplification from a single cell: Implications for genetic analysis. Proc. Natl. Acad. Sci. vol. 89, 5847-5851, Jul. 1992. cited by other
. Wong, Kwong-Kwok et al., Use of tagged random hexamer amplification (TRHA) to clone and sequence minute quantities of DNA-application to a 180 kb plasmid isolated from sphingomonas F199, Nucleic Acids Research, vol. 24, No. 19 3778-3783, Oct. 1996.
cited by other
. Telenius, Hakan et al., Degenerate Oligonucleotide-Primed PCR: General Amplification of Target DNA by a Single Degenerate Primer, Genomics 13, 718-725, 1992. cited by other
. Bohlander, Stefan K. et al., A Method for the Rapid Sequence-Independent Amplification of Microdissected Chromosomal Material, Genomics 13, 1322-1324, 1992. cited by other
. DeRisi Laboratory, Dept. of Biochemistry and Biophysics, Univ. of California at San Francisco (2001) Random DNA Amplification. Directions for amplifying products for printing on arrays. cited by other
. Kinzler et al., "Whole genome PCR: application to the identification of sequences bound by gene regulatory proteins," Nucleic Acids Research, 17(10): 3645-3653, 1989. cited by other
. Klein et al., "Comparative genomic hybridization, loss of heterozygosity, and DNA sequence analysis of single cells," Proc. Natl. Acad. Sci. USA, 96: 4494-4499, 1999. cited by other
. Lucito et al., "Genetic analysis using genomic representations," Proc. Natl. Acad. Sci. USA, 95: 4487-4492, 1998. cited by other
. Tanabe et al., "Evaluation of a Whole-Genome Amplification Method Based on Adaptor-Ligation PCR of Randomly Sheared Genomic DNA," Genes, Chromosomes & Cancer, 38: 168-176, 2003. cited by other
. Agarwal et al., "PCR amplification of highly GC-rich DNA template after denaturation by NaOH," Nucleic Acids Research, 21 (22): 5283-5284, 1993. cited by other
. Cusi et al., "PCR amplification of GC-rich templates containing palindromic sequences using initial alkali denaturation," Biotechniques, 12 (4): 502-504, 1992. cited by other
. Office Action, issued in related U.S. Appl. No. 11/071,864, mail date Jul. 23, 2007. cited by other
. Office Action, issued in related U.S. Appl. No. 11/071,864, mail date Nov. 15, 2007. cited by other
. Office Action, issued in related U.S. Appl. No. 11/071,864, mail date Oct. 30, 2008. cited by other
. Office Action, issued in related U.S. Appl. No. 11/071,864, mail date Jun. 16, 2008. cited by other
. Office Action, issued in related U.S. Appl. No. 11/071,864, mail date Dec. 31, 2009. cited by other. |