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基因组学和生物技术在实现高油酸植物油全球粮食安全方面的作用。

The role of genomics and biotechnology in achieving global food security for high-oleic vegetable oil.

作者信息

Wilson Richard F

机构信息

Oilseeds & Bioscience Consulting, Raleigh, North Carolina 27606-9502, USA.

出版信息

J Oleo Sci. 2012;61(7):357-67. doi: 10.5650/jos.61.357.

Abstract

Health related concerns for dietary 'trans-fat' in the U.S. have mediated a significant decline in the use of hydrogenated vegetable oils in edible applications. Oils having a natural abundance of oleic acid provide many functional properties that are derived from partial hydrogenation of polyunsaturated oils. However, the long term agronomic production capacity of existing high-oleic oil crops to replace hydrogenated oil ingredients is not sustainable. Although improvements are expected in processing technology, genetic modification of seed composition offers the most promising tactic to increase the overall supply of high-oleic commodity oils. Genetic enhancement of oleic acid concentration has been demonstrated experimentally in nearly every oilseed. Private companies have launched production of genetically enhanced oleic acid cultivars such as: Nexera™ Omega-9 canola and Omega-9 sunflower oils. The E. I. du Pont de Nemours and Company plans commercial production of Plenish™ high-oleic soybeans in 2012. The Monsanto Co. plans commercial production of Vistive-Gold™ low-saturated high-oleic soybeans possibly as early as 2013. These 'new' high-oleic oilseeds must not only exhibit superior oil quality but also sequentially improved yield potential. Genetic maps that help breeders identify, locate and track useful genes will facilitate accomplishment of that goal. However, a reference sequence map in soybean is the only available chromosome scale assembly of an oilseed genome. Knowledge of genome structure enables technological advances that help increase soybean yielding ability, improve crop protection against biotic stresses, and reveal alleles for genes that mediate expression of quality traits. Led by soybean, genetically enhanced high-oleic vegetable oils that now are becoming commercially available may capture greater than 40% of the domestic consumption of vegetable oil in the U.S. by 2020. This innovation in oilseed technology is a positive step toward ensuring global food security for high-oleic vegetable oils.

摘要

在美国,与饮食中“反式脂肪”相关的健康问题已导致氢化植物油在食用应用中的使用量大幅下降。富含天然油酸的油脂具有许多因多不饱和油部分氢化而产生的功能特性。然而,现有高油酸油料作物的长期农艺生产能力无法持续替代氢化油成分。尽管预计加工技术会有所改进,但种子成分的基因改造是增加高油酸商品油总体供应最有前景的策略。几乎在每种油籽中都通过实验证明了油酸浓度的基因增强。私营公司已推出基因增强的油酸品种进行生产,例如:Nexera™欧米伽-9油菜籽和欧米伽-9葵花籽油。杜邦公司计划在2012年商业化生产Plenish™高油酸大豆。孟山都公司计划最早可能在2013年商业化生产Vistive-Gold™低饱和高油酸大豆。这些“新型”高油酸油籽不仅必须展现出卓越的油质,还需依次提高产量潜力。有助于育种者识别、定位和追踪有用基因的遗传图谱将有助于实现这一目标。然而,大豆的参考序列图谱是唯一可用的油籽基因组染色体规模组装图谱。基因组结构知识能够推动技术进步,有助于提高大豆产量能力、增强作物对生物胁迫的抵抗力,并揭示介导品质性状表达的基因的等位基因。以大豆为首,目前正在商业化的基因增强高油酸植物油到2020年可能会占据美国国内植物油消费量的40%以上。油籽技术的这一创新是朝着确保全球高油酸植物油食品安全迈出了积极的一步。

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