木本植物代谢工程:挑战、进展和机遇

IF 4.6 4区 农林科学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY aBIOTECH Pub Date : 2021-06-23 DOI:10.1007/s42994-021-00054-1
Shu Yu, Cody S. Bekkering, Li Tian
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引用次数: 0

摘要

木本植物物种代表了宝贵的生物化学多样性储备,代谢工程可用于满足商品和特种化学品、药品和可再生能源的需求。木本植物由于其低投入需求、高生物量和不可估量的生态系统服务,在这一应用中特别有前景。然而,现有的挑战阻碍了它们在代谢工程中的广泛应用,例如生成时间长、基因组大且高度杂合,以及转化和再生困难。组学方法、系统生物学建模以及植物转化和再生方法的最新进展为克服这些突出挑战提供了有效的方法。这一领域的发展带来的希望正在稳步为广泛的木本植物代谢工程打开大门,以满足全球对各种可持续来源的化学品和材料的需求。
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Metabolic engineering in woody plants: challenges, advances, and opportunities

Woody plant species represent an invaluable reserve of biochemical diversity to which metabolic engineering can be applied to satisfy the need for commodity and specialty chemicals, pharmaceuticals, and renewable energy. Woody plants are particularly promising for this application due to their low input needs, high biomass, and immeasurable ecosystem services. However, existing challenges have hindered their widespread adoption in metabolic engineering efforts, such as long generation times, large and highly heterozygous genomes, and difficulties in transformation and regeneration. Recent advances in omics approaches, systems biology modeling, and plant transformation and regeneration methods provide effective approaches in overcoming these outstanding challenges. Promises brought by developments in this space are steadily opening the door to widespread metabolic engineering of woody plants to meet the global need for a wide range of sustainably sourced chemicals and materials.

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