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1

Hübscher, Ulrich. DNA polymerases: Discovery, characterization, and functions in cellular DNA transactions. New Jersey: World Scientific, 2010.

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2

A, Loeb Lawrence, ed. Animal cell DNA polymerases. Boca Raton, Fla: CRC Press, 1986.

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3

1943-, Erlich Henry A., ed. PCR technology: Principles and applications for DNA amplification. New York: Stockton Press, 1989.

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4

1943-, Erlich Henry A., ed. PCR technology: Principles and applications for DNA amplification. Houndmills, Busingstoke, Hants, England: Macmillan Publishers, 1989.

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5

L, Campbell Judith, ed. DNA replication. San Diego, Calif: Academic, 1995.

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6

Cullmann, Gerhard. Klonierung und Charakterisierung der Maus DNA-Polymerase [delta]. Konstanz: Hartung-Gorre, 1993.

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7

Carstens, Russ P. Identification of RNA splicing errors resulting in human ornithine transcarbamylase deficiency. [New Haven: s.n.], 1990.

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8

Travers, A. A. DNA-protein interactions. London: Chapman & Hall, 1993.

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9

P, Hollenberg C., and Sahm H, eds. Therapeutics, diagnostics, cell cultures, and product isolation. Stuttgart: Gustav Fischer, 1990.

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10

Artsimovitch, Irina, and Thomas J. Santangelo. Bacterial transcriptional control: Methods and protocols. New York: Humana Press, 2015.

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11

Newton, C. R. PCR. Oxford: BIOS Scientific in association with the Biochemical Society, 1994.

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12

D, Knudsen Walter, and Bruns Sam S, eds. Bacterial DNA, DNA polymerase, and DNA helicases. Hauppauge, NY: Nova Science, 2009.

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13

D, Szabó Csaba M., ed. Cell death: The role of poly(ADP-ribose) polymerase. Boca Raton: CRC Press, 2000.

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14

Kesti, Tapio. DNA polymerase [epsilon]: Analysis of the domain structure of mammalian DNA polymerase [epsilon], primary structure of the catalytic subunit of human DNA polymerase [epsilon], and chromosomal localization of the gene. Oulu: Oulun yliopisto, 1994.

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15

1954-, Micheli Maria R., and Bova Rodolfo 1956-, eds. Fingerprinting methods based on arbitrarily primed PCR. Berlin: Springer, 1997.

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16

1959-, Rolfs Arndt, Weber-Rolfs Ines, Finckh Ulrich, and International PCR Symposium on Usage of PCR and Alternative Amplification Methods in Infectious and Genetic Diseases (2nd : 1993 : Berlin, Germany), eds. Methods in DNA amplification. New York: Plenum Press, 1994.

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17

Mertes, Günter, and Albrecht von Brunn. Automatische genetische Analytik. Weinheim: Wiley-VCH, 1997.

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18

Dean, Wendy L. DNA polymerase activity in trophoblast giant cells in the mouse. St. Catharines [Ont.]: Dept. of Biological Sciences, Brock University, 1985.

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19

P, Clapp Justin, ed. Species diagnostics protocols: PCR and other nucleic acid methods. Totowa, N.J: Humana Press, 1996.

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20

Dirk, Lassner, Pustowoit Barbara, Rolfs Arndt 1959-, and Augustusburg Conference of Advanced Science on Problems of Quantitation of Nucleic Acids by Amplification Techniques (1996), eds. Modern applications of DNA amplification techniques: Problems and new tools. New York: Plenum Press, 1997.

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21

Leduc, Julie B. Identification of species-specific DNA markers using polymerase chain reaction (PCR). Sudbury, Ont: Laurentian University, Department of Biology, 1998.

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22

Patrick, Heagerty, Gellert Charles Lawrence, and State University of New York at Albany. Dept. of Biometry and Statistics, eds. Quantitative PCR with internal controls. [Albany, N.Y.?]: State University of New York, New York State Dept. of Health, in affiliation with Albany Medical College, 1990.

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23

Gutenberg-Universität, Johannes, ed. Untersuchungen über die enzymatische Prozessierung von DNA-Addukten kanzerogener polyzyklischer aromatischer Kohlenwasserstoffe in Oligonukleotiden durch DNA Polymerasen. [s.l.]: [s.n.], 1994.

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24

Vekshin, N. L. Biophysics of DNA-antibiotic complexes. Hauppauge, N.Y: Nova Science Publishers, 2010.

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25

1955-, Carracedo Ángel, ed. Forensic DNA typing protocols. Totowa, N.J: Humana Press, 2005.

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26

J, Meltzer Stephen, ed. PCR in bioanalysis. Totowa, N.J: Humana Press, 1998.

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27

Lillie, W. R. Amplification and sequencing of control region mitochondrial DNA from the beluga whale, Delphinapterus leucas. Winnipeg, Man: Central and Arctic Region, Canada Dept. of Fisheries and Oceans, 1996.

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28

Murakami, Katsuhiko S., and Michael A. Trakselis. Nucleic Acid Polymerases. Springer London, Limited, 2013.

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29

Murakami, Katsuhiko S., and Michael A. Trakselis. Nucleic Acid Polymerases. Springer, 2013.

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30

Trakselis, Michael A., and Katsuhiko Murakami. Nucleic Acid Polymerases. Springer Berlin / Heidelberg, 2016.

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31

Kelman, Zvi, and Andrew F. Gardner, eds. DNA polymerases in Biotechnology. Frontiers Media SA, 2015. http://dx.doi.org/10.3389/978-2-88919-455-1.

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32

PCR Primer Design. Humana Press, 2007.

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33

PCR Primer Design. Humana Press, 2007.

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34

Hübscher, Ulrich, Giovanni Maga, Silvio Spadari, and Giuseppe Villani. Human DNA Polymerases: Biology, Medicine, and Biotechnology. World Scientific Publishing Co Pte Ltd, 2017.

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35

Ellingboe, James. The PCR Technique : DNA Sequencing. Eaton Publishing Company/Biotechniques Books, 1992.

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36

Abelson, John N., Lawrence C. Kuo, Melvin I. Simon, David B. Olsen, and Steven S. Carroll. Viral Polymerases and Related Proteins. Elsevier Science & Technology Books, 1996.

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37

Hubscher, Ulrich. DNA Polymerases: Discovery, Characterization, and Functions in Cellular DNA Transactions. World Scientific Publishing Co Pte Ltd, 2010.

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38

Hubscher, Ulrich. DNA Polymerases: Discovery, Characterization and Functions in Cellular DNA Transactions. World Scientific Publishing Co Pte Ltd, 2010.

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39

Viral Polymerases & Related Proteins (Methods in Enzymology). Academic Press, 1996.

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40

Taberlet, Pierre, Aurélie Bonin, Lucie Zinger, and Eric Coissac. DNA amplification and multiplexing. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198767220.003.0006.

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Abstract:
After a brief reminder of the principles underlying the polymerase chain reaction (PCR), Chapter 6 “DNA amplification and multiplexing” discusses the choice of a DNA polymerase for the PCR. In particular, it warns against the use of proofreading polymerases, that can lead to a substantial loss of PCR specificity. Chapter 6 insists on the benefits of including different types of controls in the PCR (e.g., PCR negatives and positives, tagging system controls, etc.). The most common causes of PCR failures and their solutions are addressed, as well as the precautions to take to avoid and monitor contaminations. Chapter 6 also deals with the particular case of blocking oligonucleotides, which aim at reducing the amplification of undesired sequences. It gives some valuable guidelines to design such oligonucleotides and use them efficiently. Finally, Chapter 6 presents different strategies for tagging individual samples during the amplification, to allow subsequent multiplexing during the sequencing step.
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41

Fox, David Leroy. Sigma-core interactions in the RNA polymerase functional cycle. 1990.

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42

Kim, Sangjin. Single-molecule studies of DNA polymerization and DNA-protein interactions. 2010.

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43

(Editor), John N. Abelson, Melvin I. Simon (Editor), and Judith L. Campbell (Editor), eds. DNA Replication (Methods in Enzymology). Academic Press, 1995.

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44

McNeel, Douglas Gordon. Identification and characterization of TRF1: A DNA-binding protein in a yeast linear DNA plasmid system. 1992.

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45

Blow, Julian. Eukaryotic chromosome replication requires both a and d DNA polymerases. 1989.

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46

(Editor), Sankar Adhya, and Susan Garges (Editor), eds. RNA Polymerase and Associated Factors, Part C, Volume 370 (Methods in Enzymology). Academic Press, 2003.

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47

Chung, Hui-Min Maria. RNA polymerase specialization in the protozoan Trypanosoma brucei. 1994.

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48

Emperor of enzymes: A biography of Arthur Kornberg, biochemist and Nobel laureate. [Hackensack], New Jersey: World Scientific, 2016.

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49

Lee, Jookyung June. Biochemical characterization of multiple functional defects caused by a mutation in the subunit of Escherichia coli RNA polymerase. 1991.

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50

Erlich, Henry. Polymerase Chain Reaction Technology. Palgrave Macmillan, 1989.

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