Suppr超能文献

四种长筒花属(苦苣苔科)植物花朵发育的比较转录组分析

Comparative transcriptome analyses of flower development in four species of Achimenes (Gesneriaceae).

作者信息

Roberts Wade R, Roalson Eric H

机构信息

Molecular Plant Sciences Graduate Program, Washington State University, Pullman, WA, 99164-1030, USA.

School of Biological Sciences, Washington State University, Pullman, WA, 99164-4236, USA.

出版信息

BMC Genomics. 2017 Mar 20;18(1):240. doi: 10.1186/s12864-017-3623-8.

Abstract

BACKGROUND

Flowers have an amazingly diverse display of colors and shapes, and these characteristics often vary significantly among closely related species. The evolution of diverse floral form can be thought of as an adaptive response to pollination and reproduction, but it can also be seen through the lens of morphological and developmental constraints. To explore these interactions, we use RNA-seq across species and development to investigate gene expression and sequence evolution as they relate to the evolution of the diverse flowers in a group of Neotropical plants native to Mexico-magic flowers (Achimenes, Gesneriaceae).

RESULTS

The assembled transcriptomes contain between 29,000 and 42,000 genes expressed during development. We combine sequence orthology and coexpression clustering with analyses of protein evolution to identify candidate genes for roles in floral form evolution. Over 25% of transcripts captured were distinctive to Achimenes and overrepresented by genes involved in transcription factor activity. Using a model-based clustering approach we find dynamic, temporal patterns of gene expression among species. Selection tests provide evidence of positive selection in several genes with roles in pigment production, flowering time, and morphology. Combining these approaches to explore genes related to flower color and flower shape, we find distinct patterns that correspond to transitions of floral form among Achimenes species.

CONCLUSIONS

The floral transcriptomes developed from four species of Achimenes provide insight into the mechanisms involved in the evolution of diverse floral form among closely related species with different pollinators. We identified several candidate genes that will serve as an important and useful resource for future research. High conservation of sequence structure, patterns of gene coexpression, and detection of positive selection acting on few genes suggests that large phenotypic differences in floral form may be caused by genetic differences in a small set of genes. Our characterized floral transcriptomes provided here should facilitate further analyses into the genomics of flower development and the mechanisms underlying the evolution of diverse flowers in Achimenes and other Neotropical Gesneriaceae.

摘要

背景

花朵有着令人惊叹的多样颜色和形状展示,而且这些特征在亲缘关系密切的物种间往往差异显著。多样花形的进化可被视为对授粉和繁殖的适应性反应,但也可从形态学和发育限制的角度来观察。为了探究这些相互作用,我们利用跨物种和发育阶段的RNA测序来研究基因表达和序列进化,因为它们与一组原产于墨西哥的新热带植物——神奇花(秋海棠属,苦苣苔科)中多样花朵的进化相关。

结果

组装得到的转录组包含发育过程中表达的29000至42000个基因。我们将序列直系同源性和共表达聚类与蛋白质进化分析相结合,以鉴定在花形进化中起作用的候选基因。超过25%的捕获转录本是秋海棠属特有的,并且在参与转录因子活性的基因中过度富集。使用基于模型的聚类方法,我们发现了物种间动态的、随时间变化的基因表达模式。选择测试为几个在色素生成、开花时间和形态方面起作用的基因提供了正选择的证据。结合这些方法来探索与花色和花形相关的基因,我们发现了与秋海棠属物种间花形转变相对应的独特模式。

结论

从四种秋海棠属植物构建的花转录组为深入了解不同传粉者的亲缘关系密切的物种间多样花形进化所涉及的机制提供了见解。我们鉴定出了几个候选基因,它们将成为未来研究的重要且有用的资源。序列结构的高度保守、基因共表达模式以及对少数基因的正选择检测表明,花形的巨大表型差异可能是由一小部分基因的遗传差异引起的。我们在此表征的花转录组应有助于进一步分析花发育的基因组学以及秋海棠属和其他新热带苦苣苔科植物中多样花朵进化的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f196/5359931/8e935d937108/12864_2017_3623_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验