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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Camelina as a sustainable oilseed crop: Contributions of plant breeding and genetic engineering
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Camelina as a sustainable oilseed crop: Contributions of plant breeding and genetic engineering

机译:骆驼科植物作为可持续的油料作物:植物育种和基因工程的贡献

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摘要

Camelina is an underutilized Brassicaceae oilseed plant with a considerable agronomic potential for biofuel and vegetable oil production in temperate regions. In contrast to most Brassicaceae, camelina is resistant to alternaria black spot and other diseases and pests. Sequencing of the camelina genome revealed an undifferentiated allohexaploid genome with a comparatively large number of genes and low percentage of repetitive DNA. As there is a close relationship between camelina and the genetic model plant Arabidopsis, this review aims at exploring the potential of translating basic Arabidopsis results into a camelina oilseed crop for food and non-food applications. Recently, Arabidopsis genes for drought resistance or increased photosynthesis and overall productivity have successfully been expressed in camelina. In addition, gene constructs affecting lipid metabolism pathways have been engineered into camelina for synthesizing either long-chain polyunsaturated fatty acids, hydroxy fatty acids or high-oleic oils in particular camelina strains, which is of great interest in human food, industrial or biofuel applications, respectively. These results confirm the potential of camelina to serve as a biotechnology platform in biorefinery applications thus justifying further investment in breeding and genetic research for combining agronomic potential, unique oil quality features and biosafety into an agricultural production system.
机译:Camelina是一种未得到充分利用的十字花科油料种子植物,在温带地区具有相当大的农业生物燃料和植物油生产潜力。与大多数十字花科相反,山茶花对黑斑病和其他病虫害具有抗性。骆驼科植物基因组的测序显示未分化的异六倍体基因组具有相对大量的基因和低百分比的重复DNA。由于山茶花和遗传模型植物拟南芥之间有密切的关系,因此本综述旨在探讨将基本拟南芥结果转化为用于食品和非食品用途的山茶油籽作物的潜力。近来,用于抗旱或提高光合作用和整体生产力的拟南芥基因已成功地在山茶中表达。另外,已经将影响脂质代谢途径的基因构建体改造成山茶花,用于合成长链多不饱和脂肪酸,羟基脂肪酸或高油酸油,特别是山茶花菌株,这在人类食品,工业或生物燃料应用中非常重要, 分别。这些结果证实了山茶花在生物炼制应用中作为生物技术平台的潜力,从而证明了在育种和基因研究上的进一步投资是合理的,以将农业潜力,独特的油品质量和生物安全性结合到农业生产系统中。

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