El Tahchy Anna, Reynolds Kyle B, Petrie James R, Singh Surinder P, Vanhercke Thomas
Agriculture and Food, CSIRO, Canberra, Australian Capital Territory, Australia.
FEBS Lett. 2017 Jan;591(2):448-456. doi: 10.1002/1873-3468.12539. Epub 2017 Jan 12.
Increasing the oil content of leafy biomass is emerging as a sustainable source of vegetable oil to meet global demand. Transient gene expression in leaf provides a reproducible platform to study the effect of transgenes on lipid biosynthesis. We first generated a transgenic Nicotiana benthamiana line containing high levels of triacylglycerol in the leaf tissue (31.4% by dry weight) by stably expressing WRI1, DGAT1 and OLEOSIN. We then used this line as a platform to test the effect of three Arabidopsis thaliana thioesterases (FATA1, FATA2 and FATB). Further increases in leaf oil content were observed with biochemical and lipid assays revealing an increase in the export of fatty acids from the chloroplast and a modification in the oil profile.
提高叶类生物质的油脂含量正成为满足全球需求的可持续植物油来源。叶片中的瞬时基因表达为研究转基因对脂质生物合成的影响提供了一个可重复的平台。我们首先通过稳定表达WRI1、DGAT1和油质蛋白,培育出了一个在叶片组织中含有高水平三酰甘油(干重的31.4%)的转基因本氏烟草品系。然后,我们以该品系为平台,测试了三种拟南芥硫酯酶(FATA1、FATA2和FATB)的效果。通过生化和脂质分析观察到叶片油脂含量进一步增加,结果显示叶绿体中脂肪酸的输出增加,且油脂组成发生了改变。