Höfig Kai P, Möller Ralf, Donaldson Lloyd, Putterill Joanna, Walter Christian
School of Biological Sciences, University of Auckland, Private Bag 92019, Auckland, New Zealand.
Plant Biotechnol J. 2006 May;4(3):333-43. doi: 10.1111/j.1467-7652.2006.00185.x.
A male cone-specific promoter from Pinus radiata D. Don (radiata pine) was used to express a stilbene synthase gene (STS) in anthers of transgenic Nicotiana tabacum plants, resulting in complete male sterility in 70% of transformed plants. Three plants were 98%-99.9% male sterile, as evidenced by pollen germination. To identify the stage at which transgenic pollen first developed abnormally, tobacco anthers from six different developmental stages were assayed microscopically. Following the release of pollen grains from tetrads, transgenic pollen displayed an increasingly flake-like structure, which gradually rounded up during the maturation process. We further investigated whether STS expression may have resulted in an impaired flavonol or sporopollenin formation. A specific flavonol aglycone stain was used to demonstrate that significant amounts of these substances were produced only in late stages of normal pollen development, therefore excluding a diminished flavonol aglycone production as a reason for pollen ablation. A detailed analysis of the exine layer by transmission electron microscopy revealed minor structural changes in the exine layer of ablated pollen, and pyrolysis-gas chromatography-mass spectroscopy indicated that the biochemistry of sporopollenin production was unaffected. The promoter-STS construct may be useful for the ablation of pollen formation in coniferous gymnosperms and male sterility may potentially be viewed as a prerequisite for the commercial use of transgenic conifers.
来自辐射松(Pinus radiata D. Don)的雄性球果特异性启动子被用于在转基因烟草植株的花药中表达芪合酶基因(STS),导致70%的转化植株完全雄性不育。三株植物的雄性不育率为98%-99.9%,这通过花粉萌发得到证实。为了确定转基因花粉首次出现异常发育的阶段,对六个不同发育阶段的烟草花药进行了显微镜检测。从四分体释放出花粉粒后,转基因花粉呈现出越来越多的片状结构,在成熟过程中逐渐变圆。我们进一步研究了STS表达是否可能导致黄酮醇或孢粉素形成受损。使用一种特异性黄酮醇苷元染色来证明,这些物质仅在正常花粉发育的后期大量产生,因此排除了黄酮醇苷元产量减少作为花粉败育原因的可能性。通过透射电子显微镜对花粉外壁层进行详细分析,发现败育花粉的外壁层有微小的结构变化,热解气相色谱-质谱分析表明孢粉素产生的生物化学过程未受影响。启动子-STS构建体可能有助于针叶裸子植物花粉形成的败育,雄性不育可能潜在地被视为转基因针叶树商业应用的一个先决条件。