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"Report of the Dominion fishery commission on the fisheries of the province of Ontario, 1893", issued as vol. 26, no. 7, supplement.
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Many developments in immunology have occurred over the past 10 years that give us a better understanding of the immune system and its dysfunctions. Refined mapping of the major histocompatibility complex MHC; elucidation of its gene structure and polymorphism, as well as the molecular basis of MHC restriction; the arrangement, expression, and regulation of immunoglobulins; definition of the structure of the T cell receptor and organization of its genes; and the characterization of soluble factors involved in cell/cell interactions and cloning of their genes are among the major accomplishments. Volumes I and II build on these developments in basic immunology to introduce animal models of various diseases, corresponding human studies, and the genetic analysis of autoimmune traits at the patient population level. The book will be a tremendous asset to immunologists, geneticists, and physicians in various areas of clinical subspecialties.
This book celebrates the dawn of the rye genomics era with concise, comprehensive, and accessible reviews on the current state of rye genomic research, written by experts in the field for students, researchers and growers. To most, rye is the key ingredient in a flavoursome bread or their favourite American whisky. To a farmer, rye is the remarkable grain that tolerates the harshest winters and the most unforgiving soils, befitting its legacy as the life-giving seed that fed the ancient civilisations of northern Eurasia. Since the mid-1900s, scientists have employed genetic approaches to better understand and utilize rye, but only since the technological advances of the mid-2010s has the possibility of addressing questions using rye genome assemblies become a reality. Alongside the secret of its unique survival abilities, rye genomics has accelerated research on a host of intriguing topics such as the complex history of rye’s domestication by humans, the nature of genes that switch fertility on and off, the function and origin of accessory chromosomes, and the evolution of selfish DNA.