Abstract
Genetic Engineering: Principles and Methods presents state-of-the-art discussions in modern genetics and genetic engineering. Recent volumes have covered gene therapy research, genetic mapping, plant science and technology, transport protein biochemistry, and viral vectors in gene therapy, among many other topics. Volume Key Features: Genetic Engineering: Principles and Methods, Volume 27 contains discussions of contemporary and relevant topics in genetics, including: Identification and Analysis of Micrornas Dormancy and the Cell Cycle Long distance peptide and metal transport in plants Signaling in plant response to temperature and water stresses Nutrient transport and metabolism in plants Salt Stress Signaling and Mechanisms of Plant Salt Tolerance Gene cloning and expression Assisted folding and assembly of proteins This principles and methods approach to genetics and genetic engineering is essential reading for all academics, bench scientists, and industry professionals wishing to take advantage of the latest and greatest in this continuously emerging field. Jane K. Setlow, PhD. has championed the field of genetics for over 30 years, agreeing to edit Genetic Engineering: Principles & Methods since its inception in 1979. An internationally recognized scientist with numerous publications, Dr. Setlow is the former Chairperson of the NIH Recombinant DNA Molecule Advisory Committee (RAC). Her lab can found at Brookhaven National Laboratory, Upton, New York. Identification and analysis of microRNAs / Sveta Bagga and Amy E. Pasquinelli -- Dormancy and the cell-cycle / Michael A. Campbell -- The OPT family functions in long-distance Peptide and metal transport in plants / Mark Lubkowitz -- Phospholipid-derived signaling in plant response to temperature and water stresses / Xuemin Wang -- Anionic nutrient transport in plants: the molecular basis of the Sulfate transporter gene family / Hideki Takahashi, Naoko Yoshimoto, and Kazuki Saito -- Purification of protein complexes by immonoaffinity chromatography application to transcription machinery / Nancy E. Thompson, Debra Bridges Jensen, Jennifer A. Lamberski, and Richard R. Burgess -- Biogenesis of Iron-Sulfur cluster proteins in Plastids / Marinus Pilon [and others] -- Iron transport and metabolism in plants / Loubna Kerkeb and Erin L. Connolly -- Salt stress signaling and mechanisms of plant salt tolerance / Viswanathan Chinnusamy, Jianhua Zhu, and Jian-Kang Zhu -- Strategies for high-throughput gene cloningand expression / L.J. Dieckman, W.C. Hanly, and F.R. Collart -- Molecular roles of Chaperones in assisted folding and assembly of proteins / Mark T. Fisher -- Engineering plants for increasing nutrition and antioxidant content through the manipulation of the Vitamin E pathway / David K. Shintani.
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CITATION STYLE
Carter, C. O. (1981). Book Review: Genetic Engineering: Principles and Methods, Vol 2. Journal of the Royal Society of Medicine, 74(6), 471–471. https://doi.org/10.1177/014107688107400624
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