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1

Kamp, Andrena M. Pleiomorphic deterioration in entomopathogenic fungi: Biochemical and genetic analyses. St. Catharines, Ont: Brock University, Dept. of Biological Sciences, 2001.

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2

Breadon, Robert Leslie. Development of a system of genetic analyses for "Rhodomicrobium vannielii". [s.l.]: typescript, 1988.

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3

Tian, Jichun, Zhiying DENG, Kunpu Zhang, Haixia Yu, and Xiaoling Jiang. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 1. Dordrecht: Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-017-7390-4.

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Tian, Jichun, Jiansheng Chen, Guangfeng Chen, Peng Wu, Han Zhang, and Yong Zhao. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 2. Dordrecht: Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-017-7447-5.

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5

Neurotechnological, Interventions Therapy or Enhancement (Conference) (2012 Tilburg Netherlands). Beyond therapy v. enhancement?: Multidisciplinary analyses of heated debate. Pisa: Pisa University Press, 2013.

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6

Brown, J. G. Differentiation of walleye (Stizostedion vitreum) stocks and comparison to their pond-reared stocks using morphological and genetic analyses. Winnipeg, Man: Central and Arctic Region, Dept. of Fisheries and Oceans, 1994.

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7

Analysis of human genetic linkage. Baltimore: Johns Hopkins University Press, 1985.

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8

Analysis of human genetic linkage. Baltimore: Johns Hopkins University Press, 1991.

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9

Analysis of human genetic linkage. 3rd ed. Baltimore: Johns Hopkins University Press, 1999.

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10

Macartney, Donia P. Molecular and genetic analyses of the central control regions of the broad host range bacterial plasmids RK2 and R751. Birmingham: University of Birmingham, 1996.

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11

Griffiths, Anthony J. F. Introduction to genetic analysis. New York: W.H. Freeman and Co., 2012.

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12

L, Bowman John, ed. Genetic analysis: An integrated approach. Boston: Benjamin Cummings, 2012.

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13

Genetics: Analysis of genes and genomes. 8th ed. Sudbury, Mass: Jones & Bartlett Learning, 2012.

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14

Ochs, Michael F. Gene function analysis. New York: Humana Press, 2014.

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15

Griffiths, Anthony J. F. An introduction to genetic analysis. 6th ed. New York: W.H. Freeman, 1996.

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16

W, Jones Elizabeth, ed. Genetics: Principles and analysis. 4th ed. Sudbury, Mass: Jones and Bartlett Publishers, 1998.

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17

Maroni, Gustavo. Molecular and Genetic Analysis of Human Traits. New York: John Wiley & Sons, Ltd., 2007.

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18

Genetics: Analysis & principles. 3rd ed. New York, N.Y: McGraw-Hill, 2009.

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19

Brooker, Robert J. Genetics: Analysis & principles. 3rd ed. New York, N.Y: McGraw-Hill, 2009.

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20

W, Jones Elizabeth, ed. Genetics: Analysis of genes and genomes. 7th ed. Sudbury, Mass: Jones and Bartlett, 2009.

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21

Brooker, Robert J. Genetics: Analysis and principles. Menlo Park, Calif: Addison-Wesley, 1999.

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22

Genetics: Analysis and principles. Menlo park, Calif: Addison-Wesley, 1999.

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23

Genetic analysis: A history of genetic thinking. Cambridge: Cambridge University Press, 2009.

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24

Pedigree analysis in human genetics. Baltimore: Johns Hopkins University Press, 1986.

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25

Kuo, Mei. RFLP analyses of interspecific hybrids of Phaseolus. 1992.

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26

Stallings, Michael C., Ian R. Gizer, and Kelly C. Young-Wolff. Genetic Epidemiology and Molecular Genetics. Edited by Kenneth J. Sher. Oxford University Press, 2014. http://dx.doi.org/10.1093/oxfordhb/9780199381678.013.002.

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The tools of genetic epidemiology—family, adoption, and twin studies—show convincingly that substance use behavior and substance use disorders are influenced by both genetic and familial and extrafamilial environmental factors. Environmental factors appear to play a more influential role in the early stages of substance use, whereas genetic factors become more important in the development of problem use and substance use disorder. Moreover, some genetic effects are likely conditional on conducive environments; research employing both behavior genetic approaches and measured genes point to important gene–environment interactions that promote substance use and dependence. Consequently, a full understanding of the addiction process requires investigating substance use behavior within its comorbid context. The identification of specific genetic mechanisms underlying these heritable influences is elusive. These findings have prompted the development of new strategies for testing the joint effect of multiple genetic variants in gene-based or gene pathway analyses.
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27

Agnan, Jacqueline. Molecular and genetic analyses of genome variability in Ustilago hordei. 1995.

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28

Li, Chun, Jichun Tian, Zhiying DENG, Kunpu Zhang, Haixia Yu, and Xiaoling Jiang. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 1: Genetics Map and QTL Mapping. Springer, 2015.

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29

Li, Chun, Jichun Tian, Zhiying DENG, Kunpu Zhang, Haixia Yu, and Xiaoling Jiang. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 1: Genetics Map and QTL Mapping. Springer, 2016.

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30

Xu, Jianping. Mating and population genetic analyses of the basidiomycete fungus, Agaricus bisporus. 1997.

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31

Iyamabo, Odianosen E. Effects of selection, recombination and plot type on phenotypic and quantitative trait locus analyses in barley (Hordeum vulgare L.). 1993.

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32

Lawrence, Fredrick G. Genetically Engineered Crops in America: Analyses, Adoption, Trends. Nova Science Publishers, Incorporated, 2014.

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33

Hydrocarbon and Lipid Microbiology Protocols: Genetic, Genomic and System Analyses of Communities. Springer, 2018.

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34

Zhao, Yong, Han Zhang, Jiansheng Chen, Peng Wu, Guangfeng Chen, and Jichun Tian. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 2: Conditional QTL Analysis and MAS. Springer, 2015.

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35

Zhao, Yong, Han Zhang, Jiansheng Chen, Peng Wu, Guangfeng Chen, and Jichun Tian. Genetic Analyses of Wheat and Molecular Marker-Assisted Breeding, Volume 2: Conditional QTL Analysis and MAS. Springer, 2019.

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36

Hydrocarbon and Lipid Microbiology Protocols: Genetic, Genomic and System Analyses of Pure Cultures. Springer, 2018.

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37

Samuels, Jack, Marco A. Grados, Elizabeth Planalp, and O. Joseph Bienvenu. Genetic Understanding of OCD and Spectrum Disorders. Edited by Gail Steketee. Oxford University Press, 2012. http://dx.doi.org/10.1093/oxfordhb/9780195376210.013.0025.

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This chapter reviews the evidence for the genetic etiology of OCD and spectrum conditions. A genetic basis is supported by the familial aggregation of OCD; evidence for involvement of genes of major effect in segregation analyses; and higher concordance for OCD in identical than non-identical twins. Recent studies also support linkage of OCD to specific chromosomal regions and association of OCD with specific genetic polymorphisms. However, specific genes causing OCD have not yet been firmly established. The search for genes is complicated by the clinical and etiologic heterogeneity of OCD, as well as the possibility of gene–gene and gene–environmental interactions. Despite this complexity, developments in molecular and statistical genetics, and further refinement of the phenotype hold promise for further deepening our genetic understanding of OCD and spectrum disorders in the coming decade.
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38

Welsh-Maddux, Molly. Anatomical and genetic analyses of the slashed pod trait in lentil (Lens culinaris Medik.). 1992.

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39

Genetics: Analysis & Principles. Mcgraw Hill Education Europe, 2011.

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40

Brooker, Robert J., and Robert Brooker. Genetics: Analysis and Principles. 2nd ed. McGraw-Hill Science/Engineering/Math, 2004.

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41

Brooker, Robert J., and Robert Brooker. Genetics: Analysis and Principles. McGraw-Hill Science/Engineering/Math, 2004.

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42

Genetics: Analysis and Principles. McGraw-Hill Education, 2017.

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43

Genetics: Analysis and Principles. McGraw-Hill Education, 2014.

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44

R, Appels, Gustafson J. P, O'Brien Lindsay 1942-, and Commonwealth Scientific and Industrial Research Organization (Australia), eds. Wheat breeding in the new century: Applying molecular genetic analyses of key quality and agronomic traits. Collingwood, Vic: CSIRO Pub., 2001.

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45

Bowman, John L., and Mark F. Sanders. Genetic Analysis. Pearson Education, Limited, 2014.

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46

Introduction to Genetic Analysis Solutions MegaManual. 9th ed. W. H. Freeman, 2007.

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47

Bowman, John L., and Mark F. Sanders. Genetic Analysis: An Integrated Approach. Pearson Education, Limited, 2011.

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48

Bowman, John L., and Mark F. Sanders. Genetic Analysis: An Integrated Approach. Pearson Education, Limited, 2011.

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49

Bowman, John L., and Mark F. Sanders. Genetic Analysis: An Integrated Approach. Pearson Education, Limited, 2015.

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50

Bowman, John L., and Mark F. Sanders. Genetic Analysis: An Integrated Approach. Pearson Education, Limited, 2014.

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