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Flower development in Coffea arabica L.: new insights into MADS-box genes

机译:阿拉伯咖啡的花朵发育:MADS-box基因的新见解

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Coffea arabica L. shows peculiar characteristics during reproductive development, such as flowering asynchrony, periods of floral bud dormancy, mucilage secretion and epipetalous stamens. The MADS-box transcription factors are known to control several developmental processes in plants, including flower and fruit development. Significant differences are found among plant species regarding reproductive development and little is known about the role of MADS-box genes in Coffea reproductive development. Thus, we used anatomical and comparative molecular analyses to explore the flowering process in coffee. The main morphological changes during flower development in coffee were observed by optical and scanning electron microscopy. Flowering asynchrony seems to be related to two independent processes: the asynchronous development of distinct buds before the reproductive induction and the asynchronous development of floral meristems within each bud after the reproductive induction. A total of 23 C. arabica MADS-box genes were characterized by sequence comparison with putative Arabidopsis orthologs and their expression profiles were analyzed by RT-PCR in different tissues. The expression of the ABC model orthologs in Coffea during floral development was determined by in situ hybridization. The APETALA1 (AP1) ortholog is expressed only late in the perianth, which is also observed for the APETALA3 and TM6 orthologs. Conversely, the PISTILLATA ortholog is widely expressed in early stages, but restrict to stamens and carpels in later stages of flower development, while the expression of the AGAMOUS ortholog is always restricted to fertile organs. The AP1 and PISTILLATA orthologs are also expressed at specific floral organs, such as bracts and colleters, respectively, suggesting a potential role in the development of such structures. Altogether, the results from our comprehensive expression analyses showed significant differences between the spatiotemporal expression profiles of C. arabica MADS-box genes and their orthologs, which suggests differential functionalization in coffee. Moreover, these differences might also partially explain the particular characteristics of floral development in coffee, such as mucilage secretion and formation of epipetalous stamens.
机译:阿拉伯咖啡在生殖发育过程中表现出独特的特征,例如开花异步,花芽休眠期,粘液分泌和表皮雄蕊。已知MADS-box转录因子可控制植物的几种发育过程,包括花朵和果实的发育。植物种类之间在生殖发育方面发现了显着差异,而关于MADS-box基因在咖啡因生殖发育中的作用知之甚少。因此,我们使用解剖和比较分子分析来探索咖啡的开花过程。通过光学和扫描电子显微镜观察了咖啡花发育过程中的主要形态变化。开花异步似乎与两个独立的过程有关:生殖诱导之前不同芽的异步发育和生殖诱导之后每个芽内的花分生组织的异步发育。通过与假定的拟南芥直系同源物进行序列比较来表征总共23个阿拉伯糖衣藻MADS-box基因,并通过RT-PCR分析它们在不同组织中的表达谱。通过原位杂交确定花发育期间ABC模型直系同源物在咖啡中的表达。 APETALA1(AP1)直系同源物仅在花被中表达,这在APETALA3和TM6直系同源物中也观察到。相反,PISTILLATA直系同源物在花期的早期广泛表达,但在花朵发育的后期仅限于雄蕊和心皮,而AGAMOUS直系同源物的表达始终限于可育器官。 AP1和PISTILLATA直系同源基因也分别在特定的花器官中表达,例如片和筒夹,表明在这种结构的发育中可能发挥作用。总而言之,我们全面的表达分析结果表明,阿拉伯C.MADS-box基因的时空表达谱与其直向同源物之间存在显着差异,这表明咖啡的功能不同。而且,这些差异也可能部分解释了咖啡中花的发育的特定特征,例如粘液分泌和顶生雄蕊的形成。

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