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首页> 外文期刊>Plant molecular biology reporter >Expression of An Antisense Brassica oleracea GIGANTEA (BoGI) Gene in Transgenic Broccoli Causes Delayed Flowering, Leaf Senescence, and Post-Harvest Yellowing Retardation
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Expression of An Antisense Brassica oleracea GIGANTEA (BoGI) Gene in Transgenic Broccoli Causes Delayed Flowering, Leaf Senescence, and Post-Harvest Yellowing Retardation

机译:反义甘蓝GIGANTEA(BoGI)基因在转基因西兰花中的表达导致开花延迟,叶片衰老和收获后黄化延迟

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摘要

Broccoli (Brassica oleracea L. var. italica) is an important vegetable crop all over the world. However, rapid post-harvest senescence in harvested floral heads reduces its value. Mutation in GIGANTEA (GI) caused delay of flowering and increased tolerance level to H2O2-induced oxidative stress in Arabidopsis. BoGI, a GI orthologue, was isolated and characterized from B. oleracea. BoGI mRNA is expressed throughout development and can be detected in leaves, stem, root, and flowers. Further analysis indicated that the expression of BoGI is modulated by the circadian clock. To investigate the senescence flowering-associated mechanism regulated by BoGI gene and the agricultural application of BoGI in controlling flowering time and floret yellowing for B. oleracea, constructs containing antisense cDNA of BoGI driven by 35S or a flower-specific AP1 promoter were transformed into B. oleracea and the transgenic plants were generated. The flowering time and the senescence of the detached leaves were significantly delayed in transgenic 35S::BoGI antisense plants. Reverse transcriptase polymerase chain reaction (RT-PCR) analysis showed that clear reduction of BoGI expression was observed in these 35S::BoGI antisense plants compared to that in wild-type plants. Furthermore, post-harvest yellow and flower senescence was delayed in AP1::BoGI antisense plants. These findings indicate that BoGI could be involved in regulation of flowering time, leaf, floret, and flower senescence in broccoli.
机译:西兰花(Brassica oleracea L. var。italica)是全世界重要的蔬菜作物。但是,收获的花序中的采后迅速衰老降低了其价值。 GIGANTEA(GI)中的突变导致开花延迟并提高了对拟南芥中H2O2诱导的氧化胁迫的耐受水平。 BoGI,一种GI直系同源物,是从油菜双歧杆菌中分离并鉴定的。 BoGI mRNA在整个发育过程中表达,可以在叶,茎,根和花中检测到。进一步的分析表明,BoGI的表达受昼夜节律调节。为了研究BoGI基因调控的衰老开花相关机制以及BoGI在控制油菜芽孢的开花时间和小花黄化方面的农业应用,将含有由35S驱动的BoGI反义cDNA或花特异性AP1启动子的构建体转化为B产生了油菜和转基因植物。转基因35S :: BoGI反义植物的开花时间和离体叶片的衰老被显着延迟。逆转录酶聚合酶链反应(RT-PCR)分析表明,与野生型植物相比,在这些35S :: BoGI反义植物中观察到BoGI表达的明显降低。此外,AP1 :: BoGI反义植物的收获后黄色和花朵衰老被延迟了。这些发现表明,BoGI可能参与花椰菜中开花时间,叶片,小花和花衰老的调控。

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