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由S-RNase基因沉默产生的自花可育苹果。

Self-fertile apple resulting from S-RNase gene silencing.

作者信息

Broothaerts W, Keulemans J, Van Nerum I

机构信息

Better3Fruit N.V., Willem de Croylaan 42, 3001 Leuven, Belgium.

出版信息

Plant Cell Rep. 2004 Feb;22(7):497-501. doi: 10.1007/s00299-003-0716-4. Epub 2003 Oct 15.

Abstract

Self-incompatibility (SI) restricts fertilisation and fruit setting in many tree fruit crops. In apple, we have produced transgenic trees harbouring extra copies of the endogenous S-gene controlling SI. Two independent transgenic genotypes were characterised in detail. Controlled self- and cross-pollination of the flowers of trees from both genotypes over a 3-year-period showed that the transgenic lines produced normal levels of fruit and seeds after selfing. In contrast, the controls produced much less fruit following self- compared to cross-pollination. Fruit set data correlated with the results of microscopic evaluation of pollen tube growth through the pistil, which revealed inhibition after selfing in the controls but not in the transgenic lines. The self-fertile phenotype was associated with the complete absence of pistil S-RNase proteins, which are the products of the targeted S-gene. These results confirm that self-fertility was due to inhibition of expression of the S-RNase gene in the pistil, resulting in un-arrested self-pollen tube growth, and fertilisation.

摘要

自交不亲和性(SI)限制了许多落叶果树作物的受精和坐果。在苹果中,我们培育出了携带控制SI的内源性S基因额外拷贝的转基因树。对两种独立的转基因基因型进行了详细表征。在3年时间里,对两种基因型树木的花朵进行了可控的自花授粉和异花授粉,结果表明,转基因株系自交后能产生正常水平的果实和种子。相比之下,与异花授粉相比,对照自交后产生的果实要少得多。坐果数据与通过雌蕊对花粉管生长进行显微镜评估的结果相关,该评估显示对照自交后花粉管生长受到抑制,而转基因株系中则没有。自交可育表型与雌蕊S-RNase蛋白完全缺失有关,而S-RNase蛋白是目标S基因的产物。这些结果证实,自交可育是由于雌蕊中S-RNase基因的表达受到抑制,导致自花花粉管生长不受阻碍并实现受精。

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