Gardner Nicole, Felsheim Roderick, Smith Alan G
Department of Horticultural Science, University of Minnesota, 1970 Folwell Ave, St. Paul, MN 55108, USA.
J Plant Physiol. 2009 May 15;166(8):871-81. doi: 10.1016/j.jplph.2008.10.002. Epub 2008 Dec 13.
Male and female sterilities have many useful applications in horticultural crops, including reducing the invasive potential of new ornamentals, elimination of pollen allergens and redirecting resources from seeds to vegetative growth. In this study, we tested a male- and female-sterility (MS; FS) gene construct in Nicotiana tabacum to evaluate its effectiveness and effect on phenotype. Three T1 Nicotiana tabacum lines expressing the MS (p108:barnase) and FS (sp41:barnase) genes (MS/FS lines) and a control Nicotiana tabacum line (WT GUS) were measured for plant height, leaf length and width, corolla length, number of nodes on the main stem and stem diameter. No significant differences were found in these growth measurements between MS/FS lines and WT GUS. No pollen was observed on any of the lines carrying the MS and FS genes, indicating that the male sterility was complete. Seed set was greatly reduced or completely eliminated in plants with the MS and FS genes, after heavy pollinations of mature flowers with WT GUS pollen. However, pollinations of immature flowers resulted in very low seed set. This may be due to the nature of the promoter controlling expression of the FS gene as it had the highest expression levels at anthesis. The combination of male- and female-sterility genes was effective in eliminating seed set in all the lines examined and has direct application for reducing invasiveness of ornamental plants.
雄性和雌性不育在园艺作物中有许多有用的应用,包括降低新观赏植物的入侵潜力、消除花粉过敏原以及将资源从种子生长转向营养生长。在本研究中,我们在烟草中测试了一种雄性和雌性不育(MS;FS)基因构建体,以评估其有效性和对表型的影响。对三个表达MS(p108:barnase)和FS(sp41:barnase)基因的烟草T1代株系(MS/FS株系)和一个对照烟草株系(WT GUS)测量了株高、叶长和叶宽、花冠长度、主茎节数和茎直径。在这些生长指标上,MS/FS株系和WT GUS之间未发现显著差异。在携带MS和FS基因的任何株系上均未观察到花粉,这表明雄性不育是完全的。在用WT GUS花粉对成熟花进行大量授粉后,携带MS和FS基因的植株的结实率大幅降低或完全消除。然而,对未成熟花授粉导致结实率非常低。这可能是由于控制FS基因表达的启动子的性质,因为它在花期表达水平最高。雄性和雌性不育基因的组合有效地消除了所有检测株系中的结实,并且对于降低观赏植物的入侵性有直接应用价值。