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首页> 外文期刊>Plant Biotechnology >Ectopic expression of an AP3-like and a PI-like genes from 'Sekkoku' orchid (Dendrobium moniliforme) causes the homeotic conversion of sepals to petals in whorl 1 and the suppression of carpel development in whorl 4 in Arabidopsis flowers
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Ectopic expression of an AP3-like and a PI-like genes from 'Sekkoku' orchid (Dendrobium moniliforme) causes the homeotic conversion of sepals to petals in whorl 1 and the suppression of carpel development in whorl 4 in Arabidopsis flowers

机译:异国情调的'Sekkoku'兰花(石end石ili)的AP3样和PI样基因的异位表达导致了拟南芥花中萼片从萼片向花瓣的等位基因转化,并抑制了蜗轮4中的象皮发育。

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摘要

Three class-B MADS-box genes, the paleotype AP3 genes DMAP3A and DMAP3B, and the PI-like gene DMPI, were isolated from a native orchid in Japan named 'Sekkoku' (Dendrobium moniliforme) and ectopically expressed in Arabidopsis. DMAP3A and DMPI were expressed in all four floral whorls in the orchid, whereas DMAP3B was expressed only in whorls 2, 3, and 4. The ectopic expression of 35S::DMPI caused a partial sepal-to-petal conversion in whorl 1, increased the longevity of the flowers and delayed silique maturation in the transgenic plants, compared with wild-type plants. Transgenic Arabidopsis plants over-expressing 35S:: DMAP3B/35S::DMPI exhibited a vegetative phenotype with leaf curling, a near-complete sepal-to-petal conversion in whorl 1, and the suppression of carpel development in whorl 4. Our results indicate that DMAP3B and DMPI are major class B MADS-box genes in D. moniliforme and may play an important role in the development of petals in the second floral whorl of the orchid. In addition, our results also suggest that these genes can be used for the genetic engineering of flower shape in plants.
机译:从日本的一种天然兰花中分离出三个B类MADS-box基因,即古型AP3基因DMAP3A和DMAP3B,以及PI样基因DMPI,并命名其为拟南芥(Sekkoku)(Dendrobium moniliforme)。 DMAP3A和DMPI在兰花的所有四个花轮中均表达,而DMAP3B仅在轮2、3和4中表达。异位表达的35S :: DMPI导致轮1中部分萼片向花瓣的转化增加与野生型植物相比,转基因植物中的花朵寿命长,角果成熟延迟。过表达35S :: DMAP3B / 35S :: DMPI的转基因拟南芥植物表现出营养性表型,并带有卷曲的叶片,在第1轮中近乎完整的萼片向花瓣转化,在第4轮中抑制了心皮发育。我们的结果表明DMAP3B和DMPI是D. moniliforme中主要的B类MADS-box基因,可能在兰花第二个花轮中的花瓣发育中起重要作用。此外,我们的结果还表明,这些基因可用于植物中花形的基因工程。

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