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Accumulation of medium-chain, saturated fatty acyl moieties in seed oils of transgenic Camelina sativa.

PLoS One.. 2017-02; 
Hu Z, Wu Q, Dalal J, Vasani N, Lopez HO, Sederoff HW, Qu R. Department of Crop and Soil Sciences, North Carolina State University, Raleigh, North Carolina, United States of America.
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摘要

With its high seed oil content, the mustard family plant Camelina sativa has gained attention as a potential biofuel source. As a bioenergy crop, camelina has many advantages. It grows on marginal land with low demand for water and fertilizer, has a relatively short life cycle, and is stress tolerant. As most other crop seed oils, camelina seed triacylglycerols (TAGs) consist of mostly long, unsaturated fatty acyl moieties, which is not desirable for biofuel processing. In our efforts to produce shorter, saturated chain fatty acyl moieties in camelina seed oil for conversion to jet fuel, a 12:0-acyl-carrier thioesterase gene, UcFATB1, from California bay (Umbellularia californica Nutt.) was expressed in camelin... More

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