Zhai Zhiyang, Liu Hui, Shanklin John
Biology Department, Brookhaven National Laboratory, BNL 463, 50 Bell Ave., Upton, NY 11953, USA.
Plants (Basel). 2021 Mar 9;10(3):513. doi: 10.3390/plants10030513.
During the transformation of wild-type (WT) , a T-DNA containing () was inserted by happenstance within the gene, resulting in significant reduction in amylose and increase in leaf oil content in the transgenic line (OG). The synergistic effect on oil accumulation of combining with the expression of was confirmed by transforming an independent mutant (GABI_914G01) with The resulting / transgenic lines showed higher leaf oil content than the individual WT or single mutant lines. Further stacking of the lipogenic factors WRINKLED1, Diacylglycerol O-Acyltransferase (DGAT1), and Cys-OLEOSIN1 (an engineered sesame OLEOSIN1) in significantly elevated its oil content in mature leaves to 2.3% of dry weight, which is 15 times higher than that in WT Arabidopsis. Inducible expression of the same lipogenic factors was shown to be an effective strategy for triacylglycerol (TAG) accumulation without incurring growth, development, and yield penalties.
在野生型(WT)转化过程中,一个含有()的T-DNA偶然插入到基因内,导致转基因系(OG)中直链淀粉显著减少,叶片油含量增加。通过用转化一个独立的突变体(GABI_914G01),证实了与的表达相结合对油脂积累的协同作用。所得的/转基因系显示出比单个WT或单个突变体系更高的叶片油含量。在中进一步叠加脂肪生成因子WRINKLED1、二酰基甘油O-酰基转移酶(DGAT1)和Cys-OLEOSIN1(一种工程化的芝麻OLEOSIN1),显著提高了其成熟叶片中的油含量,达到干重的2.3%,这比野生型拟南芥高15倍。相同脂肪生成因子的诱导表达被证明是一种有效的三酰甘油(TAG)积累策略,而不会对生长、发育和产量造成不利影响。