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Cherubino Ribeiro, T. H.

Publications and source records attributed to Cherubino Ribeiro, T. H..

2 recordsLinked to original sources

Differential universal ortholog composition of Coffea arabica L. sub-genomes and its contribution to regulatory networks governing essential biological processes

The polyploidy of Coffea arabica is an important trait affecting the evolution of this species. Genetic variability is scarce due to its recent origin as an interspecific hybrid from a single successful crossing event between Coffea canephora and Coffea eugenioides relatives. To further investigate the genomic composition of an allotetraploid we coupled high-throughput methodologies of co-expression analysis and full-length protein coding genes inference. Many of the expected orthologs were found to be missing from one of the two homoeologous chromosomes. The gene expression machinery is mainly represented by single-copy essential orthologs located in the Coffea eugenioides sub-genome. This result suggests a preference of the transcriptional and RNA processing machinery to be regulated by one parental sub-genome. To understand the operational modules of the sub-genomes transcription, we performed co-expression analysis that revealed 23 co-regulated modules. This system-wide approach clarified how biological processes (i.e., photosynthesis, cell wall biogenesis, translation, transcription, catabolism and biosynthesis) are running in synchrony and reinforces that there is an ongoing selective pressure in C. arabica that constrains the number of copies of some universal orthologues. Thus, this work contributes to our understanding of genome evolution in recent polyploids and supports crop breeding programs.

bioinformatics↗

Expression of coffee florigen CaFT1 reveals a sustained floral induction window associated with asynchronous flowering in tropical perennials

The behavior of florigen(s) and environment-influenced regulatory pathways that control flowering in tropical perennials with complex phenological cycles is poorly understood. Understanding the mechanisms underlying this process is important for food production in the face of climate change. To explore this, homologs of Arabidopsis florigen FLOWERING LOCUS T (CaFT1) and environment-related regulators CONSTANS (CO), PHYTOCHROME INTERACTING FACTOR 4 (PIF4) and FLOWERING LOCUS C (FLC) were isolated from Coffea sp. L. (Rubiaceae). Overexpression of CaFT1 in Arabidopsis showed typical early-flowering and yeast two hybrid studies indicated CaFT1 binding to bZIP floral regulator, FD, demonstrates that CaFT1 is a coffee orthologue of florigen. Expression of CaFT1 and floral regulators were evaluated over one year using three contrasting genotypes: two C. arabica and one C. canephora. All genotypes showed active CaFT1 transcription from February until October, indicating a potential window for floral induction. CaCO expression, as expected, varied over the day period and monthly with day length, whereas expression of temperature-responsive homologs, CaFLC and CaPIF4, did not correlate with temperature changes. Using coffee as a model, we suggest a continuum of floral induction that allows different starting points for floral activation, which explains developmental asynchronicity and prolonged anthesis events in tropical perennial species. HighlightCoffee florigen CaFT1 and related regulators revealed an extended floral induction window clarifying the asynchronicity and influence of environment for flowering in tropical perennial crops, providing perspectives to its control.

plant biology↗