期刊论文详细信息
BMC Plant Biology
Differential gene expression reveals mechanisms related to habitat divergence between hybridizing orchids from the Neotropical coastal plains
Marcelo Mendes Brandão1  Clarisse Palma-Silva2  Bárbara Simões Santos Leal2  Fabio Pinheiro2 
[1] Centro de Biologia Molecular e Engenharia Genética, Universidade Estadual de Campinas;Departamento de Biologia Vegetal, Universidade Estadual de Campinas;
关键词: Ecological genomics;    Edaphic adaptation;    Neotropical speciation;    Orchids;    Restingas;    Transcription profile;   
DOI  :  10.1186/s12870-020-02757-x
来源: DOAJ
【 摘 要 】

Abstract Background Closely related hybridizing species are ideal systems for identifying genomic regions underlying adaptive divergence. Although gene expression plays a central role in determining ecologically-based phenotypic differences, few studies have inferred the role of gene expression for adaptive divergence in Neotropical systems. In this study, we conduct genome-wide expression analysis alongside soil elemental analysis in sympatric and allopatric populations of Epidendrum fulgens and E. puniceoluteum (Orchidaceae), which occur in contrasting adjacent habitats in the Neotropical coastal plains. Results These species were highly differentiated by their gene expression profiles, as determined by 18–21% of transcripts. Gene ontology (GO) terms associated with reproductive processes were enriched according to comparisons between species in both allopatric and sympatric populations. Species showed differential expression in genes linked to salt and waterlogging tolerance according to comparisons between species in sympatry, and biological processes related to environmental stimulus appeared as representative among those transcripts associated with edaphic characteristics in each sympatric zone. Hybrids, in their turn, were well differentiated from E. fulgens, but exhibited a similar gene expression profile to flooding-tolerant E. puniceolutem. When compared with parental species, hybrids showed no transcripts with additive pattern of expression and increased expression for almost all transgressive transcripts. Conclusions This study sheds light on general mechanisms promoting ecological differentiation and assortative mating, and suggests candidate genes, such as those encoding catalase and calcium-dependent protein kinase, underling adaptation to harsh edaphic conditions in the Neotropical coastal plains. Moreover, it demonstrates that differential gene expression plays a central role in determining ecologically-based phenotypic differences among co-occurring species and their hybrids.

【 授权许可】

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