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International Journal of Molecular Sciences 2019-Sep

The Artificial Promoter rMdAG2I Confers Flower-specific Activity in Malus.

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Haiqiang Dong
Lanxin Liu
Xingqiang Fan
Sumeera Asghar
Yi Li
Yi Wang
Xuefeng Xu
Ting Wu
Xinzhong Zhang
Changpeng Qiu

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Genetic modifications of floral organs are important in the breeding of Malus species. Flower-specific promoters can be used to improve floral organs specifically, without affecting vegetative organs, and therefore developing such promoters is highly desirable. Here, we characterized two paralogs of the Arabidopsis thaliana gene AGAMOUS (AG) from Malusdomestica (apple): MdAG1 and MdAG2. We then isolated the second-intron sequences for both genes, and created four artificial promoters by fusing each intron sequence to a minimal 35S promoter sequence in both the forward and reverse directions. When transferred into tobacco (Nicotianabenthamiana) by Agrobacterium tumefaciens-mediated stable transformation, one promoter, rMdAG2I, exhibited activity specifically in flowers, whereas the other three also showed detectable activity in vegetative organs. A test of the four promoters' activities in the ornamental species Malusmicromalus by Agrobacterium-mediated transient transformation showed that, as in tobacco, only rMdAG2I exhibited a flower-specific expression pattern. Through particle bombardment transformation, we demonstrated that rMdAG2I also had flower-specific activity in the apple cultivar 'Golden Delicious'. The flower-specific promoter rMdAG2I, derived from M.domestica, thus has great potential for use in improving the floral characteristics of ornamental plants, especially the Malus species.

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