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植物种子油用于生产羟基脂肪酸的代谢工程的当前进展。

Current progress towards the metabolic engineering of plant seed oil for hydroxy fatty acids production.

作者信息

Lee Kyeong-Ryeol, Chen Grace Q, Kim Hyun Uk

机构信息

Department of Agricultural Biotechnology, National Academy of Agricultural Science, Rural Development Administration, Jeonju, 560-500, Republic of Korea.

出版信息

Plant Cell Rep. 2015 Apr;34(4):603-15. doi: 10.1007/s00299-015-1736-6. Epub 2015 Jan 11.

Abstract

Hydroxy fatty acids produced in plant seed oil are important industrial material. This review focuses on the use of metabolic engineering approaches for the production of hydroxy fatty acids in transgenic plants. Vegetable oil is not only edible but can also be used for industrial purposes. The industrial demand for vegetable oil will increase with the continued depletion of fossil fuels and ensuing environmental issues such as climate change, caused by increased carbon dioxide in the air. Some plants accumulate high levels of unusual fatty acids in their seeds, and these fatty acids (FAs) have properties that make them suitable for industrial applications. Hydroxy fatty acids (HFAs) are some of the most important of these industrial FAs. Castor oil is the conventional source of HFA. However, due to the presence of toxin ricin in its seeds, castor is not cultivated on a large scale. Lesquerella is another HFA accumulator and is currently being developed as a new crop for a safe source of HFAs. The mechanisms of HFA synthesis and accumulation have been extensively studied using castor genes and the model plant Arabidopsis. HFAs accumulated to 17% in the seed oil of Arabidopsis expressing a FA hydroxylase gene from castor (RcFAH12), but its seed oil content and plant growth decreased. When RcFAH12 gene was coexpressed with additional castor gene(s) in Arabidopsis, ~30% HFAs were accumulated and the seed oil content and plant growth was almost restored to the wild-type level. Further advancement of our understanding of pathways, genes and regulatory mechanisms underlying synthesis and accumulation of HFAs is essential to developing and implementing effective genetic approaches for enhancing HFA production in oilseeds.

摘要

植物种子油中产生的羟基脂肪酸是重要的工业原料。本综述重点关注利用代谢工程方法在转基因植物中生产羟基脂肪酸。植物油不仅可食用,还可用于工业用途。随着化石燃料的持续消耗以及随之而来的环境问题,如空气中二氧化碳增加导致的气候变化,对植物油的工业需求将会增加。一些植物在其种子中积累高水平的特殊脂肪酸,这些脂肪酸具有使其适合工业应用的特性。羟基脂肪酸是这些工业脂肪酸中最重要的一部分。蓖麻油是羟基脂肪酸的传统来源。然而,由于其种子中存在毒素蓖麻蛋白,蓖麻没有大规模种植。莱斯奎勒芥是另一种羟基脂肪酸积累植物,目前正作为一种安全的羟基脂肪酸来源作物进行开发。利用蓖麻基因和模式植物拟南芥对羟基脂肪酸合成和积累的机制进行了广泛研究。在表达来自蓖麻的脂肪酸羟化酶基因(RcFAH12)的拟南芥种子油中,羟基脂肪酸积累至17%,但其种子油含量和植株生长下降。当RcFAH12基因与其他蓖麻基因在拟南芥中共表达时,积累了约30%的羟基脂肪酸,种子油含量和植株生长几乎恢复到野生型水平。进一步深入了解羟基脂肪酸合成和积累的途径、基因及调控机制,对于开发和实施有效的遗传方法以提高油料种子中羟基脂肪酸的产量至关重要。

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