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来源于油莎豆富含油脂块茎的II型二酰甘油酰基转移酶(CeDGAT2-2)的异位过表达增强了烟草叶片中油脂和油酸的积累。

Ectopic overexpression of a type-II DGAT (CeDGAT2-2) derived from oil-rich tuber of Cyperus esculentus enhances accumulation of oil and oleic acid in tobacco leaves.

作者信息

Gao Yu, Sun Yan, Gao Huiling, Chen Ying, Wang Xiaoqing, Xue Jinai, Jia Xiaoyun, Li Runzhi

机构信息

College of Agriculture, Institute of Molecular Agriculture and Bioenergy, Shanxi Agricultural University, Taigu, 030801, Shanxi, China.

College of Life Sciences, Shanxi Agricultural University, Taigu, 030801, Shanxi, China.

出版信息

Biotechnol Biofuels. 2021 Mar 23;14(1):76. doi: 10.1186/s13068-021-01928-8.

Abstract

BACKGROUND

Engineering triacylglycerol (TAG) accumulation in vegetative tissues of non-food crops has become a promising way to meet our increasing demand for plant oils, especially the renewable production of biofuels. The most important target modified in this regard is diacylglycerol acyltransferase (DGAT) enzyme responsible for the final rate-limiting step in TAG biosynthesis. Cyperus esculentus is a unique plant largely accumulating oleic acid-enriched oil in its underground tubers. We speculated that DGAT derived from such oil-rich tubers could function more efficiently than that from oleaginous seeds in enhancing oil storage in vegetative tissues of tobacco, a high-yielding biomass crops.

RESULTS

Three CeDGAT genes namely CeDGAT1, CeDGAT2-1 and CeDGAT2-2 were identified in C. esculentus by mining transcriptome of developing tubers. These CeDGATs were expressed in tissues tested, with CeDGAT1 highly in roots, CeDGAT2-1 abundantly in leaves, and CeDGAT2-2 predominantly in tubers. Notably, CeDGAT2-2 expression pattern was in accordance with oil dynamic accumulation during tuber development. Overexpression of CeDGAT2-2 functionally restored TAG biosynthesis in TAG-deficient yeast mutant H1246. Oleic acid level was significantly increased in CeDGAT2-2 transgenic yeast compared to the wild-type yeast and ScDGA1-expressed control under culture with and without feeding of exogenous fatty acids. Overexpressing CeDGAT2-2 in tobacco led to dramatic enhancements of leafy oil by 7.15- and 1.7-fold more compared to the wild-type control and plants expressing Arabidopsis seed-derived AtDGAT1. A substantial change in fatty acid composition was detected in leaves, with increase of oleic acid from 5.1% in the wild type to 31.33% in CeDGAT2-2-expressed tobacco and accompanied reduction of saturated fatty acids. Moreover, the elevated accumulation of oleic acid-enriched TAG in transgenic tobacco exhibited no significantly negative impact on other agronomic traits such as photosynthesis, growth rates and seed germination except for small decline of starch content.

CONCLUSIONS

The present data indicate that CeDGAT2-2 has a high enzyme activity to catalyze formation of TAG and a strong specificity for oleic acid-containing substrates, providing new insights into understanding oil biosynthesis mechanism in plant vegetative tissues. Overexpression of CeDGAT2-2 alone can significantly increase oleic acid-enriched oil accumulation in tobacco leaves without negative impact on other agronomy traits, showing CeDGAT2-2 as the desirable target gene in metabolic engineering to enrich oil and value-added lipids in high-biomass plants for commercial production of biofuel oils.

摘要

背景

在非粮食作物的营养组织中工程化积累三酰甘油(TAG)已成为满足我们对植物油不断增长需求的一种有前景的方式,尤其是生物燃料的可再生生产。在这方面最重要的目标修饰对象是二酰甘油酰基转移酶(DGAT),它负责TAG生物合成中的最终限速步骤。油莎豆是一种独特的植物,其地下块茎大量积累富含油酸的油脂。我们推测,源自这种富含油脂块茎的DGAT在增强烟草(一种高产生物质作物)营养组织中的油脂储存方面,可能比源自含油种子的DGAT发挥更有效的作用。

结果

通过挖掘发育中块茎的转录组,在油莎豆中鉴定出三个CeDGAT基因,即CeDGAT1、CeDGAT2 - 1和CeDGAT2 - 2。这些CeDGAT在测试的组织中均有表达,CeDGAT1在根中高表达,CeDGAT2 - 1在叶中大量表达,CeDGAT2 - 2主要在块茎中表达。值得注意的是,CeDGAT2 - 2的表达模式与块茎发育过程中的油脂动态积累一致。CeDGAT2 - 2的过表达在TAG缺陷型酵母突变体H1246中功能性地恢复了TAG生物合成。与野生型酵母和表达ScDGA1的对照相比,在添加和不添加外源脂肪酸培养的情况下,CeDGAT2 - 2转基因酵母中的油酸水平显著增加。在烟草中过表达CeDGAT2 - 2导致叶片油脂显著增加,与野生型对照和表达拟南芥种子来源的AtDGAT1的植株相比,分别增加了7.15倍和1.7倍。在叶片中检测到脂肪酸组成发生了显著变化,油酸从野生型的5.1%增加到CeDGAT2 - 2表达烟草中的31.33%,同时饱和脂肪酸减少。此外,转基因烟草中富含油酸的TAG积累增加,除淀粉含量略有下降外,对光合作用、生长速率和种子萌发等其他农艺性状没有显著负面影响。

结论

目前的数据表明,CeDGAT2 - 2具有高酶活性以催化TAG的形成,并且对含油酸的底物具有很强的特异性,这为理解植物营养组织中的油脂生物合成机制提供了新的见解。单独过表达CeDGAT2 - 2可以显著增加烟草叶片中富含油酸的油脂积累,而对其他农艺性状没有负面影响,表明CeDGAT2 - 2是代谢工程中用于在高生物量植物中富集油脂和增值脂质以商业化生产生物燃料油的理想目标基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b9b/7986309/8c0de8840dc2/13068_2021_1928_Fig1_HTML.jpg

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