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      Longevity Genes [electronic resource] : A Blueprint for Aging / edited by Gil Atzmon, PhD.

      Contributor(s): Material type: TextTextSeries: Advances in Experimental Medicine and Biology ; 847Publisher: New York, NY : Springer New York : Imprint: Springer, 2015Description: XI, 194 p. 18 illus., 16 illus. in color. online resourceContent type:
      • text
      Media type:
      • computer
      Carrier type:
      • online resource
      ISBN:
      • 9781493924042
      Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
      • 611.01816 23
      • 599.935 23
      LOC classification:
      • RB155-155.8
      • QH431
      Online resources:
      Contents:
      Evolutionary Genetic Bases of Longevity and Senescence -- Candidate Genes That Affect Aging Through Protein Homeostasis -- Autophagy and Aging -- A Genetic View of the Mitochondrial Role in Aging: Killing Us Softly -- GWAS and Meta-analysis in Aging/Longevity -- Exome and Whole Genome Sequencing in Aging and Longevity -- Models to Explore Genetics of Human Aging -- Systems Biology of Aging -- Epigenetics of Aging.
      In: Springer eBooksSummary: The release of the complete version of the human genome sequence in 2003 has paved the way for defining gene function and genetic background for phenotypic variation in humans and allowed us to study the aging process in a new light. This new volume results from that research and focuses on the genetic and epigenetic process of aging. While the interpretation of the genome data is still in its initial stages, this new volume looks at the evolving understanding of molecular mechanisms involved in cellular processes, gene function associated with complex traits, epigenetic components involve in gene control and the creation of hypothesis-free genome-wide approaches. Longevity Genes: A Blueprint for Aging explores the genetic and genomic elements that can maintain a long life such as DNA damage mechanisms, epigenetics and the way we can use this knowledge to generate customized treatments. It touches on some of the multidisciplinary approaches as well as genomic-wide association technology used to analyze complex traits. This book describes the hunt for genes affecting complex traits using a high throughput technology, with adequate consideration for the selection of an appropriate population, applications of statistical genetics and computational biology, and most importantly, considering phenotype-genotype association studies. Longevity Genes provides coverage of not only established aspects of genetics and aging, but also new approaches and perceptions in this important area of research.
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      Holdings
      Item type Current library Call number URL Status Notes Date due Barcode
      e-Books e-Books SARVAJNA LIBRARY, UHS, BAGALKOT 611.01816 (Browse shelf(Opens below)) Link to resource Available Click on the URL to access eBook EB44

      Evolutionary Genetic Bases of Longevity and Senescence -- Candidate Genes That Affect Aging Through Protein Homeostasis -- Autophagy and Aging -- A Genetic View of the Mitochondrial Role in Aging: Killing Us Softly -- GWAS and Meta-analysis in Aging/Longevity -- Exome and Whole Genome Sequencing in Aging and Longevity -- Models to Explore Genetics of Human Aging -- Systems Biology of Aging -- Epigenetics of Aging.

      The release of the complete version of the human genome sequence in 2003 has paved the way for defining gene function and genetic background for phenotypic variation in humans and allowed us to study the aging process in a new light. This new volume results from that research and focuses on the genetic and epigenetic process of aging. While the interpretation of the genome data is still in its initial stages, this new volume looks at the evolving understanding of molecular mechanisms involved in cellular processes, gene function associated with complex traits, epigenetic components involve in gene control and the creation of hypothesis-free genome-wide approaches. Longevity Genes: A Blueprint for Aging explores the genetic and genomic elements that can maintain a long life such as DNA damage mechanisms, epigenetics and the way we can use this knowledge to generate customized treatments. It touches on some of the multidisciplinary approaches as well as genomic-wide association technology used to analyze complex traits. This book describes the hunt for genes affecting complex traits using a high throughput technology, with adequate consideration for the selection of an appropriate population, applications of statistical genetics and computational biology, and most importantly, considering phenotype-genotype association studies. Longevity Genes provides coverage of not only established aspects of genetics and aging, but also new approaches and perceptions in this important area of research.

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