Halpin Claire, Boerjan Wout
Plant Research Unit, School of Life Sciences, University of Dundee at SCRI, Invergowrie, Dundee, UK DD2 5DA.
Trends Plant Sci. 2003 Aug;8(8):363-5. doi: 10.1016/S1360-1385(03)00155-9.
Huge potential exists for improving plant raw materials and foodstuffs via metabolic engineering. To date, progress has mostly been limited to modulating the expression of single genes of well-studied pathways, such as the lignin biosynthetic pathway, in model species. However, a recent report illustrates a new level of sophistication in metabolic engineering by overexpressing one lignin enzyme while simultaneously suppressing the expression of another lignin gene in a tree, aspen. This novel approach to multi-gene manipulation has succeeded in concurrently improving several wood-quality traits.
通过代谢工程改善植物原料和食品具有巨大潜力。迄今为止,进展大多局限于在模式物种中调节已深入研究的途径(如木质素生物合成途径)中单个基因的表达。然而,最近的一份报告展示了代谢工程的一种新的复杂水平,即在杨树中过表达一种木质素酶,同时抑制另一种木质素基因的表达。这种多基因操作的新方法成功地同时改善了多个木材质量性状。