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Fleshy seeds form in the basal Angiosperm Magnolia grandiflora and several MADS-box genes are expressed as fleshy seed tissues develop

机译:基底被子植物木兰的肉质种子形成,随着肉质种子组织的发育,表达了几种MADS-box基因

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摘要

One successful mechanism of seed dispersal in plants involves production of edible fleshy structures which attract frugivorous animals and transfer this task to them. Not only Angiosperms but also Gymnosperms may use the fleshy fruit habit for seed dispersal, and a similar suite of MADS-box genes may be expressed as these structures form. Magnolia grandiflora produces dry follicles which, at maturity, open to reveal brightly colored fleshy seeds. This species thus also employs endozoochory for seed dispersal, although it produces dry fruits. Molecular analysis reveals that genes involved in softening and color changes are expressed at late stages of seed development, when the fleshy seed sarcotesta softens and accumulates carotenoids. Several MADS-box genes have also been studied and results highlight the existence of a basic genetic toolkit which may be common to all fleshy fruit-like structures, independently of their anatomic origin. According to their expression patterns, one of two AGAMOUS genes and the three SEPALLATA genes known so far in Magnolia are of particular interest. Duplication of AGAMOUS already occurs in both Nymphaeales and Magnoliids, although the lack of functional gene analysis prevents comparisons with known duplications in the AGAMOUS lineage of core Eudicots.
机译:种子在植物中传播的一种成功机制涉及可食的肉质结构的产生,这些肉质结构吸引食肉动物并将这项任务转移给它们。不仅被子植物而且裸子植物也可以使用肉质的果实习性进行种子传播,并且类似的MADS-box基因套件也可以表达为这些结构形式。厚朴的玉兰产生干燥的卵泡,成熟时会打开,露出颜色鲜艳的肉质种子。因此,该物种虽然会产生干果,但也利用内生食虫进行种子传播。分子分析显示,当肉质种子肉食动物软化并积累类胡萝卜素时,参与软化和颜色变化的基因在种子发育的后期表达。还研究了几种MADS-box基因,其结果突显了一种基本的遗传工具包的存在,该工具包可能对所有肉状水果状结构都是通用的,而与它们的解剖学起源无关。根据它们的表达模式,迄今为止在木兰中已知的两个AGAMOUS基因之一和三个SEPALLATA基因特别令人关注。虽然缺乏功能基因分析无法与核心真双子叶植物的AGAMOUS世系中的已知重复项进行比较,但在睡莲和木兰属中均已发生了AGAMOUS的重复。

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