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未来的油料作物。

Oil crops for the future.

机构信息

Swedish University of Agricultural Sciences (SLU), Department of Plant Breeding, Alnarp, Sweden.

Swedish University of Agricultural Sciences (SLU), Department of Plant Breeding, Alnarp, Sweden.

出版信息

Curr Opin Plant Biol. 2020 Aug;56:181-189. doi: 10.1016/j.pbi.2019.12.003. Epub 2020 Jan 23.

Abstract

Agriculture faces enormous challenges including the need to substantially increase productivity, reduce environmental footprint, and deliver renewable alternatives that are being addressed by developing new oil crops for the future. The efforts include domestication of Lepidium spp. using genomics-aided breeding as a cold hardy perennial high-yielding oil crop that provides substantial environmental benefits, expands the geography for oil crops, and improves farmers' economy. In addition, genetic engineering in Crambe abyssinica may lead to a dedicated industrial oil crop to replace fossil oil. Redirection of photosynthates from starch to oil in plant tubers and cereal endosperm also provides a path for enhancing oil production to meet the growing demands for food, fuel, and biomaterials. Insect pheromone components are produced in seed oil plants in a cost-effective and environmentally friendly pest management replacing synthetically produced pheromones. Autophagy is explored for increasing crop fitness and oil accumulation using genetic engineering in Arabidopsis.

摘要

农业面临着巨大的挑战,包括需要大幅提高生产力、减少环境足迹,并提供可再生的替代方案,为此正在开发未来的新油作物。这些努力包括利用基因组辅助育种对 Lepidium spp. 进行驯化,将其培育成耐寒的多年生、高产量的油料作物,为环境带来巨大益处,扩大了油料作物的地理分布范围,并改善了农民的经济状况。此外,在 Crambe abyssinica 中的基因工程可能会导致专门的工业用油料作物来替代化石油。将植物块茎和谷类胚乳中的光合作用产物从淀粉重新定向到油脂中,也为提高油脂产量提供了一条途径,以满足对食物、燃料和生物材料日益增长的需求。在种子油用植物中生产昆虫信息素成分,以具有成本效益和环保的方式进行害虫管理,替代合成生产的信息素。利用拟南芥中的基因工程探索自噬以提高作物适应性和油脂积累。

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