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Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion

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Release : 2004
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Book Synopsis Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion by :

Download or read book Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion written by . This book was released on 2004. Available in PDF, EPUB and Kindle. Book excerpt: SANTA-MARIA, MONICA CECILIA. Studies for the Genetic Engineering of Sweetpotato for Starch Bioconversion. (Under the direction of Bryon Sosinski and William F. Thompson). Concerns over energy security and reducing greenhouse gas emissions have triggered interest in alternative, carbon-neutral, renewable energy sources. One alternative is biofuels for use in transportation. In the U.S., ethanol dominates the biofuel market and is mostly obtained from cornstarch. Due to sustainability concerns over extensive corn utilization, identification of alternative biofuel feedstocks is necessary. The high starch content in storage roots along with agronomical advantages make sweetpotato (Ipomoea batatas L.) and attractive biofuel feedstock in the southeast U.S. Industrial starch conversion to fermentable sugars involves a liquefaction step where starch is solubilized and partially hydrolyzed at high temperatures by a thermostable and thermoactive Î"--Amylase. Monomeric sugars are obtained during saccharification by further enzymatic activity. These enzymes are added to the starch mixture increasing overall process economics. To make starch processing more cost-effective, hyperthermophilic Î"-amylase from Thermotoga maritima was introduced into the sweetpotato genome to allow for starch self-processing at high temperatures. Hyperthermophilic Î"-amylase production was fist tested in tobacco cell cultures as model plant system. Functional enzyme was produced exhibiting enhanced thermostability, but otherwise identical biochemical properties compared to recombinant production in Escherichia coli. The enhanced stability of plant-made enzyme was due to intrinsically provided calcium in plant cells. This opened prospects of further cost reduction by eliminating need for calcium addition. The Tma Î"-amylase gene was then introduced into the sweetpotato genome by stable transformation with Agrobacterium tumefaciens. Starch in transgenic storage roots was readily hydrolyzed at 80°C, whi.

Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion

Download Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion PDF Online Free

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Release : 2009
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Book Synopsis Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion by : Monica Cecilia Santa-Maria

Download or read book Studies for the Genetic Engineering in Sweetpotato (Ipomoea Batatas L.) for Starch Bioconversion written by Monica Cecilia Santa-Maria. This book was released on 2009. Available in PDF, EPUB and Kindle. Book excerpt: Keywords: biomass conversion, in vitro regeneration, thermoactive glycosyl hydrolyses, tobacco cell cultures, sporamin promoter, plant transformation, tissue culture, somatic embryogenesis, sweet potato, hyperthermophilic enzymes, biofules.

Vitamins and Minerals Biofortification of Edible Plants

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Release : 2020-05-26
Genre : Technology & Engineering
Kind : eBook
Book Rating : 119/5 ( reviews)

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Book Synopsis Vitamins and Minerals Biofortification of Edible Plants by : Noureddine Benkeblia

Download or read book Vitamins and Minerals Biofortification of Edible Plants written by Noureddine Benkeblia. This book was released on 2020-05-26. Available in PDF, EPUB and Kindle. Book excerpt: A Detailed Reference on How Modern Biotechnology is using the Biofortification of Crops to Improve the Vitamin and Mineral Content of Edible Plants In this reference, Vitamins and Minerals Bio-Fortification of Edible Plants, authors cover new territory on phytonutrients, focusing on the enhancement and modification of edible crops. This book presents techniques and research findings from modern biotechnology to educate readers on the newest tools and research in the field. Readers will learn how groundbreaking scientific advances have contributed to the nutritional content of edible plants and crops for animals and humans. Inside, readers will find comprehensive information on new concepts of biofortification, including but not limited to: ● Modern biotechnology and its uses for improving the vitamin and mineral content of edible plants ● Potential minerals and vitamins that can be targeted and implemented in agriculture ● Ways of enhancing the nutritional contents of edible plants to address nutritional deficiencies and improve livestock ● Methods of identifying plants that can be used to heal or prevent disease and illness While many books cover the phytonutrients of crops, this reference book reports on methodologies, techniques, and environmental changes used to enhance and improve agricultural products. It is one of the first to provide information on using modern biotechnologies to modify crops with the goal of creating health benefits.

Solar Energy Update

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Author :
Release : 1984
Genre : Solar energy
Kind : eBook
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Book Synopsis Solar Energy Update by :

Download or read book Solar Energy Update written by . This book was released on 1984. Available in PDF, EPUB and Kindle. Book excerpt:

Sago Palm

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Release : 2018-01-15
Genre : Technology & Engineering
Kind : eBook
Book Rating : 697/5 ( reviews)

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Book Synopsis Sago Palm by : Hiroshi Ehara

Download or read book Sago Palm written by Hiroshi Ehara. This book was released on 2018-01-15. Available in PDF, EPUB and Kindle. Book excerpt: This open access book addresses a wide variety of events and technologies concerning the sago palm, ranging from its botanical characteristics, culture and use to social conditions in the places where it is grown, in order to provide a record of research findings and to benefit society. It discusses various subjects, including the sago palm and related species; differentiation of species of starch-producing palm; habitat, morphological, physiological and growth characteristics; culture and management; productivity of carbon dioxide; starch extraction and manufacture; characteristics and utilization of starch; and cultural anthropological and folkloristic aspects. Problems such as food shortages due to increasing populations, global warming and climate change, and decreasing reserves of oil and other underground resources, have become more pressing in recent years. In the context of these problems, the book examines the role of the sago palm in sustainable food production, in the manufacture of other foodstuffs, as a raw material for ethanol and in the manufacture of biodegradable plastics. In addition to academics, this book will be useful to researchers and government officials working for international agencies, national governments, municipalities, and other research organizations; technicians, researchers, managers, entrepreneurs, and others working in industries such as agriculture, plant production, food production, manufacturing, chemical engineering, energy production, and distribution.

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