Literature DB >> 16885305

cDNA microarrays as a tool for identification of biomineralization proteins in the coccolithophorid Emiliania huxleyi (Haptophyta).

Patrick Quinn1, Robert M Bowers, Xiaoyu Zhang, Thomas M Wahlund, Michael A Fanelli, Daniela Olszova, Betsy A Read.   

Abstract

Marine unicellular coccolithophore algae produce species-specific calcite scales otherwise known as coccoliths. While the coccoliths and their elaborate architecture have attracted the attention of investigators from various scientific disciplines, our knowledge of the underpinnings of the process of biomineralization in this alga is still in its infancy. The processes of calcification and coccolithogenesis are highly regulated and likely to be complex, requiring coordinated expression of many genes and pathways. In this study, we have employed cDNA microarrays to investigate changes in gene expression associated with biomineralization in the most abundant coccolithophorid, Emiliania huxleyi. Expression profiling of cultures grown under calcifying and noncalcifying conditions has been carried out using cDNA microarrays corresponding to approximately 2,300 expressed sequence tags. A total of 127 significantly up- or down-regulated transcripts were identified using a P value of 0.01 and a change of >2.0-fold. Real-time reverse transcriptase PCR was used to test the overall validity of the microarray data, as well as the relevance of many of the proteins predicted to be associated with biomineralization, including a novel gamma-class carbonic anhydrase (A. R. Soto, H. Zheng, D. Shoemaker, J. Rodriguez, B. A. Read, and T. M. Wahlund, Appl. Environ. Microbiol. 72:5500-5511, 2006). Differentially regulated genes include those related to cellular metabolism, ion channels, transport proteins, vesicular trafficking, and cell signaling. The putative function of the vast majority of candidate transcripts could not be defined. Nonetheless, the data described herein represent profiles of the transcription changes associated with biomineralization-related pathways in E. huxleyi and have identified novel and potentially useful targets for more detailed analysis.

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Year:  2006        PMID: 16885305      PMCID: PMC1538752          DOI: 10.1128/AEM.00343-06

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  24 in total

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5.  Isolation and some characterization of an acidic polysaccharide with anti-calcification activity from coccoliths of a marine alga, Pleurochrysis carterae.

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7.  Identification of a "glycine-loop"-like coiled structure in the 34 AA Pro,Gly,Met repeat domain of the biomineral-associated protein, PM27.

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10.  Application and validation of DNA microarrays for the 16S rRNA-based analysis of marine bacterioplankton.

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  16 in total

1.  Shotgun proteomic analysis of Emiliania huxleyi, a marine phytoplankton species of major biogeochemical importance.

Authors:  Bethan M Jones; Richard J Edwards; Paul J Skipp; C David O'Connor; M Debora Iglesias-Rodriguez
Journal:  Mar Biotechnol (NY)       Date:  2010-10-06       Impact factor: 3.619

2.  Light-dependent transcriptional regulation of genes of biogeochemical interest in the diploid and haploid life cycle stages of Emiliania huxleyi.

Authors:  Sophie Richier; Marie-Emmanuelle Kerros; Colomban de Vargas; Liti Haramaty; Paul G Falkowski; Jean-Pierre Gattuso
Journal:  Appl Environ Microbiol       Date:  2009-03-20       Impact factor: 4.792

3.  Identification and preliminary characterization of two cDNAs encoding unique carbonic anhydrases from the marine alga Emiliania huxleyi.

Authors:  Amelia R Soto; Hong Zheng; Dorinda Shoemaker; Jason Rodriguez; Betsy A Read; Thomas M Wahlund
Journal:  Appl Environ Microbiol       Date:  2006-08       Impact factor: 4.792

4.  A close examination of double filtering with fold change and T test in microarray analysis.

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6.  Gene expression profiling of coccolith-bearing cells and naked cells in haptophyte Pleurochrysis haptonemofera with a cDNA macroarray system.

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7.  Response of the calcifying coccolithophore Emiliania huxleyi to low pH/high pCO2: from physiology to molecular level.

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8.  Transcriptome analysis of functional differentiation between haploid and diploid cells of Emiliania huxleyi, a globally significant photosynthetic calcifying cell.

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9.  Analysis of the proteinaceous components of the organic matrix of calcitic sclerites from the soft coral Sinularia sp.

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10.  Genome variations associated with viral susceptibility and calcification in Emiliania huxleyi.

Authors:  Jessica U Kegel; Uwe John; Klaus Valentin; Stephan Frickenhaus
Journal:  PLoS One       Date:  2013-11-19       Impact factor: 3.240

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