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Characterization of an AGAMOUS gene expressed throughout development of the fleshy fruit-like structure produced by Ginkgo biloba around its seeds

机译:银杏叶种子周围果肉状结构发育过程中表达的AGAMOUS基因的表征

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摘要

Background: The involvement of MADS-box genes of the AGAMOUS lineage in the formation of both flowers and fruits has been studied in detail in Angiosperms. AGAMOUS genes are expressed also in the reproductive structures of Gymnosperms, yet the demonstration of their role has been problematic because Gymnosperms are woody plants difficult to manipulate for physiological and genetic studies. Recently, it was shown that in the gymnosperm Ginkgo biloba an AGAMOUS gene was expressed throughout development and ripening of the fleshy fruit-like structures produced by this species around its seeds. Such fleshy structures are evolutionarily very important because they favor the dispersal of seeds through endozoochory. In this work a characterization of the Ginkgo gene was carried out by over-expressing it in tomato. Results: In tomato plants ectopically expressing the Ginkgo AGAMOUS gene a macroscopic anomaly was observed only in the flower sepals. While the wild type sepals had a leaf-like appearance, the transgenic ones appeared connately adjoined at their proximal extremity and, concomitant with the development and ripening of the fruit, they became thicker and acquired a yellowish-orange color, thus indicating that they had undergone a homeotic transformation into carpel-like structures. Molecular analyses of several genes associated with either the control of ripening or the ripening syndrome in tomato fruits confirmed that the transgenic sepals behaved like ectopic fruits that could undergo some ripening, although the red color typical of the ripe tomato fruit was never achieved. Conclusions: The ectopic expression of the Ginkgo AGAMOUS gene in tomato caused the homeotic transformation of the transgenic sepals into carpel-like structures, and this showed that the gymnosperm gene has a genuine C function. In parallel with the ripening of fruits the related transgenic sepals became fleshy fruit-like structures that also underwent some ripening and such a result indicates that this C function gene might be involved, together with other gens, also in the development of the Ginkgo fruit-like structures. It seems thus strengthened the hypothesis that AGAMOUS MADS-box genes were recruited already in Gymnosperms for the development of the fleshy fruit habit which is evolutionarily so important for the dispersal of seeds
机译:背景:在被子植物中已经详细研究了AGAMOUS谱系的MADS-box基因在花朵和果实形成中的作用。裸子植物的生殖结构中也表达了AGAMOUS基因,但由于裸子植物是难于进行生理和遗传研究的木本植物,因此其作用的证明一直存在问题。最近发现,在裸子植物银杏中,AGAMOUS基因在该种围绕其种子产生的果肉状结构的发育和成熟过程中表达。这种肉质结构在进化上非常重要,因为它们有利于通过内胚乳传播种子。在这项工作中,通过在番茄中过表达银杏基因来表征它。结果:在异位表达银杏AGAMOUS基因的番茄植株中,仅在花萼片中观察到宏观异常。尽管野生型萼片具有叶样外观,但转基因的萼片在其近端似乎是邻接的,并且随着果实的发育和成熟,它们变得更厚并且获得淡橙色的颜色,从而表明它们具有经历了向心皮状结构的顺势转化。对番茄果实中控制成熟或成熟综合征的几种相关基因进行的分子分析证实,转基因萼片表现得像异位果实,可以经历一些成熟,尽管从未达到成熟番茄果实的典型红色。结论:银杏AGAMOUS基因在番茄中的异位表达引起转基因萼片向心皮状结构的同源转化,表明裸子植物基因具有真正的C功能。在果实成熟的同时,相关的转基因萼片变成了果肉状的结构,也经历了一些成熟,这样的结果表明该C功能基因可能与其他基因一起参与了银杏果实的发育过程。像结构。因此似乎加强了这样的假说,即已经在裸子植物中招募了AGAMOUS MADS-box基因来发展肉质果习性,而果肉习性对于种子的散播具有重要的进化意义。

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