Literature DB >> 20864545

A high-throughput data mining of single nucleotide polymorphisms in Coffea species expressed sequence tags suggests differential homeologous gene expression in the allotetraploid Coffea arabica.

Ramon Oliveira Vidal1, Jorge Maurício Costa Mondego, David Pot, Alinne Batista Ambrósio, Alan Carvalho Andrade, Luiz Filipe Protasio Pereira, Carlos Augusto Colombo, Luiz Gonzaga Esteves Vieira, Marcelo Falsarella Carazzolle, Gonçalo Amarante Guimarães Pereira.   

Abstract

Polyploidization constitutes a common mode of evolution in flowering plants. This event provides the raw material for the divergence of function in homeologous genes, leading to phenotypic novelty that can contribute to the success of polyploids in nature or their selection for use in agriculture. Mounting evidence underlined the existence of homeologous expression biases in polyploid genomes; however, strategies to analyze such transcriptome regulation remained scarce. Important factors regarding homeologous expression biases remain to be explored, such as whether this phenomenon influences specific genes, how paralogs are affected by genome doubling, and what is the importance of the variability of homeologous expression bias to genotype differences. This study reports the expressed sequence tag assembly of the allopolyploid Coffea arabica and one of its direct ancestors, Coffea canephora. The assembly was used for the discovery of single nucleotide polymorphisms through the identification of high-quality discrepancies in overlapped expressed sequence tags and for gene expression information indirectly estimated by the transcript redundancy. Sequence diversity profiles were evaluated within C. arabica (Ca) and C. canephora (Cc) and used to deduce the transcript contribution of the Coffea eugenioides (Ce) ancestor. The assignment of the C. arabica haplotypes to the C. canephora (CaCc) or C. eugenioides (CaCe) ancestral genomes allowed us to analyze gene expression contributions of each subgenome in C. arabica. In silico data were validated by the quantitative polymerase chain reaction and allele-specific combination TaqMAMA-based method. The presence of differential expression of C. arabica homeologous genes and its implications in coffee gene expression, ontology, and physiology are discussed.

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Year:  2010        PMID: 20864545      PMCID: PMC2971587          DOI: 10.1104/pp.110.162438

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  38 in total

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Authors:  K Mochida; Y Yamazaki; Y Ogihara
Journal:  Mol Genet Genomics       Date:  2003-11-01       Impact factor: 3.291

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Authors:  Olivier Maurin; Aaron P Davis; Michael Chester; Esther F Mvungi; Yasmina Jaufeerally-Fakim; Michael F Fay
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4.  Single-locus inheritance in the allotetraploid Coffea arabica L. and interspecific hybrid C. arabica x C. canephora.

Authors:  P Lashermes; V Paczek; P Trouslot; M C Combes; E Couturon; A Charrier
Journal:  J Hered       Date:  2000 Jan-Feb       Impact factor: 2.645

5.  Molecular characterisation and origin of the Coffea arabica L. genome.

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  22 in total

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Authors:  Kenia de Carvalho; Carmen L O Petkowicz; Getulio T Nagashima; João C Bespalhok Filho; Luiz G E Vieira; Luiz F P Pereira; Douglas S Domingues
Journal:  Mol Genet Genomics       Date:  2014-05-27       Impact factor: 3.291

2.  An EST-based analysis identifies new genes and reveals distinctive gene expression features of Coffea arabica and Coffea canephora.

Authors:  Jorge Mc Mondego; Ramon O Vidal; Marcelo F Carazzolle; Eric K Tokuda; Lucas P Parizzi; Gustavo Gl Costa; Luiz Fp Pereira; Alan C Andrade; Carlos A Colombo; Luiz Ge Vieira; Gonçalo Ag Pereira
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3.  Lipid transfer proteins in coffee: isolation of Coffea orthologs, Coffea arabica homeologs, expression during coffee fruit development and promoter analysis in transgenic tobacco plants.

Authors:  Michelle G Cotta; Leila M G Barros; Juliana D de Almeida; Fréderic de Lamotte; Eder A Barbosa; Natalia G Vieira; Gabriel S C Alves; Felipe Vinecky; Alan C Andrade; Pierre Marraccini
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4.  Construction and characterization of a BAC library from the Coffea arabica genotype Timor Hybrid CIFC 832/2.

Authors:  S M B Cação; N V Silva; D S Domingues; L G E Vieira; L E C Diniz; F Vinecky; G S C Alves; A C Andrade; V Carpentieri-Pipolo; L F P Pereira
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5.  BAC-end sequences analysis provides first insights into coffee (Coffea canephora P.) genome composition and evolution.

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Journal:  Plant Mol Biol       Date:  2013-05-25       Impact factor: 4.076

6.  Transcriptome analysis in Coffea eugenioides, an Arabica coffee ancestor, reveals differentially expressed genes in leaves and fruits.

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8.  RBCS1 expression in coffee: Coffea orthologs, Coffea arabica homeologs, and expression variability between genotypes and under drought stress.

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9.  Comprehensive functional analyses of expressed sequence tags in common wheat (Triticum aestivum).

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