Libri sul tema "Grapes Genetics"

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1

Adam-Blondon, Anne-Françoise. Genetics, genomics and breeding of grapes. A cura di Martínez-Zapater José M. Enfield, NH: Science Publishers, 2011.

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2

International Grape Genomics Symposium (2005 St. Louis, Mo.). Proceedings, International Grape Genomics Symposium, July 12-14, 2005, St. Louis, Missouri, USA. A cura di Qiu Wenping 1965-, Kovacs Laszlo Gyorgy 1961-, International Grape Genome Program e Missouri State University. Mountain Grove, MO: Missouri State University, Department of Fruit Science, 2005.

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3

International Conference on Grape Genetics and Breeding (8th 2002 Keeskemét, Hungary). Proceedings of the 8th International Conference on Grape Genetics and Breeding: Keeskemét, Hungary, 26-31, August 2002. A cura di Botos E. P, Hajdú E, Borbás É e International Society for Horticultural Science. Section Vine and Berry Fruits. Leuven, Belgium: International Society for Horticultural Science, 2003.

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4

International Conference on Grape Genetics and Breeding (8th 2002 Keeskemét, Hungary). Proceedings of the 8th International Conference on Grape Genetics and Breeding: Keeskemét, Hungary, 26-31, August 2002. A cura di Botos E. P, Hajdú E, Borbás É e International Society for Horticultural Science. Section Vine and Berry Fruits. Leuven, Belgium: International Society for Horticultural Science, 2003.

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5

König, Helmut. Biology of Microorganisms on Grapes, in Must and in Wine. Berlin, Heidelberg: Springer Berlin Heidelberg, 2009.

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6

International, Symposium on Grapevine Genetics and Breeding (7th 1998 Montpellier France). Proceedings of the Seventh International Symposium on Grapevine Genetics and Breeding: Montpellier, France, 6-10 July 1998. Leuven, Belgium: ISHS, Section Viticulture, Working Group on Environmental Physiology of Fruit Crops, Office International de la Vigne et du Vin, 2000.

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7

International, Symposium on Grapevine Genetics and Breeding (7th 1998 Montpellier France). Proceedings of the Seventh International Symposium on Grapevine Genetics and Breeding: Montpellier, France, 6-10 July 1998. Leuven, Belgium: ISHS, Section Viticulture, Working Group on Environmental Physiology of Fruit Crops, 2000.

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8

Roubelakis-Angelakis, Kalliopi A. Grapevine molecular physiology & biotechnology. 2a ed. Dordrecht: Springer, 2009.

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9

Puhal'skiy, Vitaliy. Introduction to Genetics. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1019851.

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Abstract (sommario):
The textbook outlines the cytological foundations of heredity, the regularities of Mendelian genetics, the chromosomal theory of heredity, the basics of molecular genetics and genetic engineering, the patterns of inheritance during distant hybridization, polyplodia and mutagenesis. Special attention is paid to the heterosis and genetics of populations. A significant part of the data is presented in the form of figures, diagrams, graphs and tables that facilitate the understanding of the material presented. Meets the requirements of the federal state educational standards of higher education of the latest generation. For students of higher educational institutions studying in agronomic specialties.
10

Baniasadi, Pouya, Vladimir Ejov, Jerzy A. Filar e Michael Haythorpe. Genetic Theory for Cubic Graphs. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-19680-0.

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11

Heward, Joanne Marie. Genetic susceptibility to the development of Graves' disease. Birmingham: University of Birmingham, 1999.

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12

Cardoso, M. Jorge, Tal Arbel, Enzo Ferrante, Xavier Pennec, Adrian V. Dalca, Sarah Parisot, Sarang Joshi et al., a cura di. Graphs in Biomedical Image Analysis, Computational Anatomy and Imaging Genetics. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-67675-3.

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13

Allahabadia, Amit. Genetic and clinical factors in the development of Graves' disease. Birmingham: University of Birmingham, 2000.

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14

Jefferis, David. Cloning: Frontiers of genetic engineering. New York: Crabtree, 1999.

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15

Jefferis, David. Cloning: Frontiers of genetic engineering. Leicester: Silverdale, 2000.

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16

Jefferis, David. Cloning: Frontiers of genetic engineering. New York: Crabtree, 1999.

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17

Aldridge, Lynn I. Estimation of the genetic correlation between performances in different grades for show jumping horses in Ireland. Dublin: University College Dublin, 1998.

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18

Klimenko, Irina, Nikolay Kozlov, Sergey Kostenko, Anastasia Shamustakimova e Yulian Mavlyutov. Identification and certification of forage grasses (meadow clover, alfalfa, sowing and hop) based on DNA markers. ru: Federal Williams Research Center of Forage Production and Agroecology, 2020. http://dx.doi.org/10.33814/978-5-6043194-9-9.

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Abstract (sommario):
A technology has been developed for DNA identification and certification of varieties of meadow clover (Trifolium pratense L.), alfalfa (Medicago varia Mart.), Sowing (M. sativa L.) and hop (M. lupuli-na L.) based on molecular analysis with using SSR and SRAP markers. The recommendations contain a description of the sequence of experiments and protocols for DNA typing procedures. The presented methods were developed by the authors on the basis of their own experimental research and using the data available in the literature. A characteristic of informative primers for each marking system is given, a set of DNA identification markers is proposed, and unique molecular genetic formulas of varieties are drawn up as the basis for a reference genetic passport. Methodological recommendations were prepared with the aim of mastering the technology of DNA certification of forage grasses in practice. Designed for managers and specialists of research and control laboratories, can serve as a textbook for students and postgraduates in specialized specialties.
19

Buhler, William. Science Agriculture and Research: A Compromised Participation. London: Earthscan, 2002.

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20

DNA Grantees' Workshop (3rd 2002 Washington, D.C.). Third annual DNA Grantees' Workshop: Washington, D.C. June 24-26, 2002. Washington, D.C: National Institute of Justice, 2003.

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21

International Horticultural Congress (26th 2002 Toronto, Ont.). A proceedings of the XXVI International Horticultural Congress, Toronto, Canada, 11-17 August, 2002: Asian plants with unique horticultural potential : genetic resources, cultural practices, and utilization. A cura di Lee Jung-Myung, Zhang Donglin, Canadian Society for Horticultural Science. e International Society for Horticultural Science. Leuven, Belgium: International Society for Horticultural Science, 2003.

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22

Foster, Kelli C. The tan can. Hauppage, NY: Barron's, 1992.

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23

Yoshida, Reiko. Tokyo mew mew. Los Angeles: Tokyopop, 2003.

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24

Yoshida, Reiko. Tokyo mew mew. Los Angeles: Tokyopop, 2003.

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25

Yoshida, Reiko. Tokyo mew mew. Los Angeles: Tokyopop, 2004.

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26

Yoshida, Reiko. Tokyo mew mew. Los Angeles: Tokyopop, 2004.

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27

Kole, Chittaranjan, Anne-Francoise Adam-Blondon e Jose-Miguel Martinez-Zapater. Genetics, Genomics, and Breeding of Grapes. Taylor & Francis Group, 2016.

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28

Kole, Chittaranjan, Anne-Francoise Adam-Blondon e Jose-Miguel Martinez-Zapater. Genetics, Genomics, and Breeding of Grapes. Taylor & Francis Group, 2016.

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29

König, Helmut, Gottfried Unden e Jürgen Fröhlich. Biology of Microorganisms on Grapes, in Must and in Wine. Springer, 2017.

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30

König, Helmut, Gottfried Unden e Jürgen Fröhlich. Biology of Microorganisms on Grapes, in Must and in Wine. Springer, 2018.

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31

A, Roubelakis-Angelakis Kalliopi, a cura di. Molecular biology & biotechnology of the grapevine. Dordrecht: Kluwer Academic Publishers, 2001.

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32

Roubelakis-Angelakis, Kalliopi A. Molecular Biology and Biotechnology of the Grapevine. Springer, 2013.

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33

Roubelakis-Angelakis, Kalliopi A. Grapevine Molecular Physiology and Biotechnology. Springer, 2009.

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34

Roubelakis-Angelakis, Kalliopi A. Grapevine Molecular Physiology & Biotechnology. Ingramcontent, 2014.

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35

Filar, Jerzy A., Pouya Baniasadi, Vladimir Ejov e Michael Haythorpe. Genetic Theory for Cubic Graphs. Springer, 2015.

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36

Filar, Jerzy A., Pouya Baniasadi, Vladimir Ejov e Michael Haythorpe. Genetic Theory for Cubic Graphs. Springer London, Limited, 2015.

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37

Mirkin, Boris G., e Sergey N. Rodin. Graphs and Genes. Springer, 2011.

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38

Imrie, Helen. The genetic basis of Graves' disease. 2002.

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39

Arbel, Tal, M. Jorge Cardoso, Sarang Joshi, Xavier Pennec, Enzo Ferrante, Adrian V. Dalca, Sarah Parisot, Aristeidis Sotiras e Nematollah K. Batmanghelich. Graphs in Biomedical Image Analysis, Computational Anatomy and Imaging Genetics. Springer, 2017.

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40

Gusfield, Dan. ReCombinatorics: The Algorithmics of Ancestral Recombination Graphs and Explicit Phylogenetic Networks. MIT Press, 2014.

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41

Gusfield, Dan. ReCombinatorics: The Algorithmics of Ancestral Recombination Graphs and Explicit Phylogenetic Networks. MIT Press, 2014.

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42

Gusfield, Dan. ReCombinatorics: The Algorithmics of Ancestral Recombination Graphs and Explicit Phylogenetic Networks. MIT Press, 2014.

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43

Gusfield, Dan. ReCombinatorics: The Algorithmics of Ancestral Recombination Graphs and Explicit Phylogenetic Networks. The MIT Press, 2014.

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44

Aronson, Billy. They Came from DNA (Scientific American Mysteries of Science). W H Freeman & Co (Sd), 1994.

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45

Kuwabara, Satoshi. Neuromuscular junction disorders. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199658602.003.0014.

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Abstract (sommario):
Ten seminal papers on disorders of the neuromuscular junction are described, covering historical aspects, recent advances in immunological, biological, and genetic researches, and future perspectives. Early descriptions of myasthenia gravis (MG) date back to the seventeenth century, and MG acquired its name in the nineteenth century. The first symptomatic treatment with cholinesterase inhibitors was reported in 1934, leading to the development of modern immunological therapies. Following the discovery of anti-MuSK (muscle-specific tyrosine kinase) antibody in 2001, MG is currently classified into three categories: AChR-positive, MuSK-positive, and dual-seronegative. Lambert-Eaton myasthenic syndrome was recognized in 1956, followed by the discovery of antibodies to voltage-gated calcium channels in the pre-synaptic membrane, facilitating diagnosis and improving the understanding of the pathophysiological mechanisms. Since the late twentieth century, many types of congenital myasthenic syndromes with pre-synaptic, synaptic, and post-synaptic defects have been identified, and a classification based on molecular genetics is in evolution.
46

Xu, Hong. Development of PCR-based markers for identifying grape rootstocks. 1995.

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47

Xu, Hong. Development of PCR-based markers for identifying grape rootstocks. 1995.

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48

Jefferis, David, e Davies Jefferis. Cloning: Frontiers of Genetic Engineering (Megatech). Crabtree Publishing Company, 1999.

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49

Jefferis, David. Cloning: Frontiers of Genetic Engineering (Megatech). Crabtree Publishing Company, 1999.

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50

Yount, Lisa. Great Medical Discoveries - Gene Therapy (Great Medical Discoveries). Lucent Books, 2002.

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