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Lesquerella FAD3-1 gene is responsible for the biosynthesis of trienoic acid and dienoic hydroxy fatty acids in seed oil

Industrial Crops and Products. 2019; 
Kyeong-RyeolLeeaEun-HaKimaInhwaJeonaYongjikLeebGrace Q.ChencHyun UkKimd
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Gene Synthesis The results were quantitated using StepOne software ver. 2.3 (Applied Biosystems, USA), employing actin 2 as a reference gene. Primers were designed to generate about 200 bp amplicons with a 55 °C melting temperature by the GenScript website (https://www.genscript.com/ssl-bin/app/primer). Primers sequences in these procedures are as follows. PfFAD3-1 q-forward, 5′-GAGAATAAGCCACCGGACG-3′; PfFAD3-1 q-reverse, 5′-CAGGACTTCTGTAACAGAGA-3′; AtFAD3 q-forward, 5′-TTTCTGGGCCATCTTTGTTC-3′; AtFAD3 q-reverse, 5′-CGAGTACTGTGGGGCAATTT-3′. Get A Quote

摘要

Lesquerella (Physaria fendleri) contains a major unusual hydroxy fatty acid, lesquerolic acid (14-hydroxy-eicos-cis-11-enoic acid, C20:1-OH), at 55–60% of seed oil which has industrial value. The remaining seed oil comprises mainly common fatty acids including α-linolenic acid (octadec-cis-9,12,15-enoic acid, C18:3) at 10.7–15.8%. C18:3 is produced from linoleic acid (octadec-cis-9,12-enoic acid, C18:2) by FATTY ACID DESATURASE3. Previous seed transcriptome analysis uncovers two fatty acid desaturase 3 (FAD3) transcripts, PfFAD3-1 and PfFAD3-2. To determine the activity of PfFAD3-1 and PfFAD3-2, PfFAD3-1 and PfFAD3-2 were introduced into an Arabidopsis FAD3-deficient mutant (fad3-2) which has reduc... More

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