Spokevicius Antanas V, Van Beveren Kim, Leitch Mathew A, Bossinger Gerd
School of Forest and Ecosystem Science, The University of Melbourne, Creswick, Victoria, 3363, Australia.
Plant Cell Rep. 2005 Feb;23(9):617-24. doi: 10.1007/s00299-004-0856-1. Epub 2004 Aug 20.
The genetic manipulation of perennial woody tree species presents a range of additional challenges compared to that of annual weedy crop species. These include long generation times and reproductive cycle, the heterogeneity of plants under investigation and, when investigating wood properties, a number of physical and biochemical limitations to microscopical and molecular experimentation. The use of in vitro wood formation systems for molecular studies and Agrobacterium-mediated introduction of transgenes overcomes many of these obstacles. Using a commercially relevant Eucalyptus species as model organism, we demonstrate here that in vitro wood formation systems can be readily employed to introduce transgenes into growing wood-producing tissue, initially leading to frequent transient gene expression in a range of cell types. Stable transformation events were observed as sectors of transformed tissue derived from primary transformation events in individual cells. The usefulness of such systems for the analysis of gene function during the process of wood formation and wood quality determination, as well as for constructing developmental fate maps of cambial derivatives, is discussed.
与一年生杂草作物物种相比,多年生木本树种的基因操作面临一系列额外挑战。这些挑战包括较长的世代时间和生殖周期、所研究植物的异质性,以及在研究木材特性时,微观和分子实验存在的一些物理和生化限制。利用体外木材形成系统进行分子研究以及通过农杆菌介导导入转基因,克服了其中许多障碍。以一种具有商业价值的桉树物种作为模式生物,我们在此证明,体外木材形成系统可轻松用于将转基因导入正在生长的木材生产组织,最初会在一系列细胞类型中频繁出现瞬时基因表达。观察到稳定转化事件表现为源自单个细胞中初级转化事件的转化组织区域。本文讨论了此类系统在木材形成过程中基因功能分析、木材质量测定以及构建形成层衍生物发育命运图谱方面的用途。