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首页> 外文期刊>EvoDevo >Evolution of the SPATULA/ALCATRAZ gene lineage and expression analyses in the basal eudicot, Bocconia frutescens L. (Papaveraceae)
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Evolution of the SPATULA/ALCATRAZ gene lineage and expression analyses in the basal eudicot, Bocconia frutescens L. (Papaveraceae)

机译:SPATULA / ALCATRAZ基因谱系的进化及在基底真双子叶植物Bocconia frutescens L.(Papaveraceae)中的表达分析

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Background SPATULA ( SPT ) and ALCATRAZ ( ALC ) are recent paralogs that belong to the large bHLH transcription factor family. Orthologs of these genes have been found in all core eudicots, whereas pre-duplication genes, named paleoSPATULA/ALCATRAZ , have been found in basal eudicots, monocots, basal angiosperms and gymnosperms. Nevertheless, functional studies have only been performed in Arabidopsis thaliana , where SPT and ALC are partially redundant in carpel and valve margin development and ALC has a unique role in the dehiscence zone. Further analyses of pre-duplication genes are necessary to assess the functional evolution of this gene lineage. ResultsWe isolated additional paleoSPT/ALC genes from Aristolochia fimbriata , Bocconia frutescens , Cattleya trianae and Hypoxis decumbens from our transcriptome libraries and performed phylogenetic analyses. We identified the previously described bHLH domain in all analyzed sequences and also new conserved motifs using the MEME suite. Finally, we analyzed the expression of three paleoSPT/ALC genes ( BofrSPT1/2/3 ) from Bocconia frutescens , a basal eudicot in the Papaveraceae. To determine the developmental stages at which these genes were expressed, pre- and post-anthesis carpels and fruits of B. frutescens were collected, sectioned, stained, and examined using light microscopy. Using in situ hybridization we detected that BofrSPT1/2/3 genes are expressed in floral buds, early sepal initiation, stamens and carpel primordia and later during fruit development in the dehiscence zone of the opercular fruit. ConclusionsOur expression results, in comparison with those available for core eudicots, suggest conserved roles of members of the SPT/ALC gene lineage across eudicots in the specification of carpel margins and the dehiscence zone of the mature fruits. Although there is some redundancy between ALC and SPT , these gene clades seem to have undergone some degree of sub-functionalization in the core eudicots, likely by changes in cis regulatory regions and to some extent in coding sequences, at least in Brassicaceae. Our results also indicate that in Bocconia frutescens , paleo SPT/ALC genes may play a role in early floral organ specification that was subsequently lost in core eudicot lineages.
机译:背景SPATULA(SPT)和ALCATRAZ(ALC)是属于大型bHLH转录因子家族的近代同源物。这些基因的直系同源基因已在所有核心双子叶植物中发现,而复制前基因,即paleoSPATULA / ALCATRAZ,已在基底双子叶植物,单子叶植物,基底被子植物和裸子植物中发现。尽管如此,功能性研究仅在拟南芥中进行,其中SPT和ALC在心皮和瓣膜边缘发育中部分多余,ALC在裂开区中具有独特的作用。复制前基因的进一步分析对于评估该基因谱系的功能进化是必要的。结果我们从转录组文库中分离了从马兜铃虫,波哥尼亚细叶蝉,卡特兰三叶草和腐殖质低聚体中分离出的其他paleoSPT / ALC基因,并进行了系统发育分析。我们使用MEME套件在所有分析的序列中鉴定了先前描述的bHLH结构域,并且还鉴定了新的保守基序。最后,我们分析了罂粟科的基础真双子叶猴Bocconia frutescens的三个paleoSPT / ALC基因(BofrSPT1 / 2/3)的表达。为了确定表达这些基因的发育阶段,收集,切片,染色,染色和使用光学显微镜检查了花前和花后的果实。使用原位杂交,我们检测到BofrSPT1 / 2/3基因在花蕾,早期的萼片起始,雄蕊和心皮原基中以及随后在子叶果实开裂区的果实发育过程中表达。结论与可用于核心双子叶植物的表达结果相比,我们的表达结果表明,整个双子叶植物中SPT / ALC基因谱系成员在心缘边缘和成熟果实开裂区域中均发挥了保守作用。尽管ALC和SPT之间存在一些冗余,但这些基因进化枝似乎在核心双子叶植物中经历了某种程度的亚功能化,这可能是由于顺式调控区的变化,并且至少在十字花科中存在一定程度的编码序列变化。我们的结果还表明,在欧洲花cc中,古SPT / ALC基因可能在早期花器官规格中起作用,随后在核心双子叶植物谱系中丢失。

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