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This book addresses the impacts of current and future reproductive
technologies on our world food production and provides a
significant contribution to the importance of research in the area
of reproductive physiology that has never been compiled before. It
would provide a unique opportunity to separate the impacts of how
reproductive technologies have affected different species and their
contributions to food production. Lastly, no publication has been
compiled that demonstrates the relationship between developments in
reproductive management tools and food production that may be used
a reference for scientists in addressing future research areas.
During the past 50 years assisted reproductive technologies have
been developed and refined to increase the number and quality of
offspring from genetically superior farm animal livestock species.
Artificial insemination (AI), estrous synchronization and
fixed-time AI, semen and embryo cryopreservation, multiple
ovulation and embryo transfer (MOET), in vitro fertilization, sex
determination of sperm or embryos, and nuclear transfer are
technologies that are used to enhance the production efficiency of
livestock species.
Animal Agriculture: Sustainability, Challenges and Innovations
discusses the land-based production of high-quality protein by
livestock and poultry and how it plays an important role in
improving human nutrition, growth and health. With exponential
growth of the global population and marked rises in meat
consumption per capita, demands for animal-source protein are
expected to increase 72% between 2013 and 2050. This raises
concerns about the sustainability and environmental impacts of
animal agriculture. An attractive solution to meeting increasing
needs for animal products and mitigating undesirable effects of
agricultural practices is to enhance the efficiency of animal
growth, reproduction, and lactation. Currently, there is no
resource that offers specific knowledge of both animal science and
technology, including biotechnology for the sustainability of
animal agriculture for the expanding global demand of food in the
face of diminishing resources. This book fills that gap, giving
readers all the necessary information on important issues facing
modern animal agriculture, namely its sustainability, challenges
and innovative solutions.
This book addresses the impacts of current and future reproductive
technologies on our world food production and provides a
significant contribution to the importance of research in the area
of reproductive physiology that has never been compiled before. It
would provide a unique opportunity to separate the impacts of how
reproductive technologies have affected different species and their
contributions to food production. Lastly, no publication has been
compiled that demonstrates the relationship between developments in
reproductive management tools and food production that may be used
a reference for scientists in addressing future research areas.
During the past 50 years assisted reproductive technologies have
been developed and refined to increase the number and quality of
offspring from genetically superior farm animal livestock species.
Artificial insemination (AI), estrous synchronization and
fixed-time AI, semen and embryo cryopreservation, multiple
ovulation and embryo transfer (MOET), in vitro fertilization, sex
determination of sperm or embryos, and nuclear transfer are
technologies that are used to enhance the production efficiency of
livestock species.
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