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Titlebook: Oil Crop Genomics; Huseyin Tombuloglu,Turgay Unver,Khalid Rehman Hake Book 2021 Springer Nature Switzerland AG 2021 Oil biosynthesis.Genom

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Integrated Omics Analysis of Benzylisoquinoline Alkaloid (BIA) Metabolism in Opium Poppy (, L.)oquinoline alkaloid (BIA) production. The plant remains the only commercial source for the narcotic analgesics: morphine and codeine. In addition to its medicinal use, opium poppy is rich in oil content in seeds which makes it a valuable source of food. Opium poppy has served as a model organism to
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Transcriptome Analysis in Jatropha During Abiotic Stress Responseainable oil crop, Jatropha plants should tolerate environmental stress and remain productive despite the climatic changes. Jatropha gained popularity as a very stress-tolerant plant producing high amounts and good-quality oil. However, the initial expectations were not met as Jatropha showed inconsi
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Oilseed Crops as the Alternate Source of Omega Fatty Acids: A Paradigm Shift They are primarily found in marine sources present in the aquatic ecosystems like algal and fish oils. They provide the metabolic by-product precursors for the synthesis of specialized pro-resolving lipid mediators (SPMs), which are the key regulators of inflammatory resolution as they serve as the
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Genetic Manipulation for Developing Desired Engineered Oil Cropss have reflected innovative discoveries and developments in chemistry and bioengineering. Researchers chase to enhance the oil production and extend new oil products that could expand into the pharmaceutical, chemical, and other applications. The main part about this development is the ability to re
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Transcriptome Analysis in Jatropha During Abiotic Stress Responsession during stress response, it will be possible to understand how crops regulate physiological processes in order to cope with stress. In this chapter, the trends in transcriptome analysis in Jatropha for abiotic stress response and their applications will be discussed.
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