Enhanced production of seed oil with improved fatty acid composition by overexpressing NAD + ‐dependent glycerol‐3‐phosphate dehydrogenase in soybean

生物化学 脱氢酶 二酰甘油激酶 甘油激酶 油酸 生物合成 酰基转移酶 脂肪酸 生物 甘油 大豆油 新陈代谢 脂质代谢 脂肪酸合成 蛋白激酶C
作者
Zhao Ying,Pan Cao,Yifan Cui,Dongxu Liu,Jiapeng Li,Yabin Zhao,Siqi Yang,Bo Zhang,Runnan Zhou,Minghao Sun,Xuetian Guo,Mingliang Yang,Dawei Xin,Zhanguo Zhang,Xin Li,Chen Lv,Chunyan Liu,Zhaoming Qi,Jingyu Xu,Xiaoxia Wu,Qingshan Chen
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:63 (6): 1036-1053 被引量:28
标识
DOI:10.1111/jipb.13094
摘要

There is growing interest in expanding the production of soybean oils (mainly triacylglycerol, or TAG) to meet rising feed demand and address global energy concerns. We report that a plastid-localized glycerol-3-phosphate dehydrogenase (GPDH), encoded by GmGPDHp1 gene, catalyzes the formation of glycerol-3-phosphate (G3P), an obligate substrate required for TAG biosynthesis. Overexpression of GmGPDHp1 increases soybean seed oil content with high levels of unsaturated fatty acids (FAs), especially oleic acid (C18:1), without detectably affecting growth or seed protein content or seed weight. Based on the lipidomic analyses, we found that the increase in G3P content led to an elevated diacylglycerol (DAG) pool, in which the Kennedy pathway-derived DAG was mostly increased, followed by PC-derived DAG, thereby promoting the synthesis of TAG containing relatively high proportion of C18:1. The increased G3P levels induced several transcriptional alterations of genes involved in the glycerolipid pathways. In particular, genes encoding the enzymes responsible for de novo glycerolipid synthesis were largely upregulated in the transgenic lines, in-line with the identified biochemical phenotype. These results reveal a key role for GmGPDHp1-mediated G3P metabolism in enhancing TAG synthesis and demonstrate a strategy to modify the FA compositions of soybean oils for improved nutrition and biofuel.
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