Literature DB >> 18632750

Automated annotation of Drosophila gene expression patterns using a controlled vocabulary.

Shuiwang Ji1, Liang Sun, Rong Jin, Sudhir Kumar, Jieping Ye.   

Abstract

MOTIVATION: Regulation of gene expression in space and time directs its localization to a specific subset of cells during development. Systematic determination of the spatiotemporal dynamics of gene expression plays an important role in understanding the regulatory networks driving development. An atlas for the gene expression patterns of fruit fly Drosophila melanogaster has been created by whole-mount in situ hybridization, and it documents the dynamic changes of gene expression pattern during Drosophila embryogenesis. The spatial and temporal patterns of gene expression are integrated by anatomical terms from a controlled vocabulary linking together intermediate tissues developed from one another. Currently, the terms are assigned to patterns manually. However, the number of patterns generated by high-throughput in situ hybridization is rapidly increasing. It is, therefore, tempting to approach this problem by employing computational methods.
RESULTS: In this article, we present a novel computational framework for annotating gene expression patterns using a controlled vocabulary. In the currently available high-throughput data, annotation terms are assigned to groups of patterns rather than to individual images. We propose to extract invariant features from images, and construct pyramid match kernels to measure the similarity between sets of patterns. To exploit the complementary information conveyed by different features and incorporate the correlation among patterns sharing common structures, we propose efficient convex formulations to integrate the kernels derived from various features. The proposed framework is evaluated by comparing its annotation with that of human curators, and promising performance in terms of F1 score has been reported.

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Year:  2008        PMID: 18632750      PMCID: PMC2519157          DOI: 10.1093/bioinformatics/btn347

Source DB:  PubMed          Journal:  Bioinformatics        ISSN: 1367-4803            Impact factor:   6.937


  17 in total

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2.  Canonical correlation analysis: an overview with application to learning methods.

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3.  Genome-wide atlas of gene expression in the adult mouse brain.

Authors:  Ed S Lein; Michael J Hawrylycz; Nancy Ao; Mikael Ayres; Amy Bensinger; Amy Bernard; Andrew F Boe; Mark S Boguski; Kevin S Brockway; Emi J Byrnes; Lin Chen; Li Chen; Tsuey-Ming Chen; Mei Chi Chin; Jimmy Chong; Brian E Crook; Aneta Czaplinska; Chinh N Dang; Suvro Datta; Nick R Dee; Aimee L Desaki; Tsega Desta; Ellen Diep; Tim A Dolbeare; Matthew J Donelan; Hong-Wei Dong; Jennifer G Dougherty; Ben J Duncan; Amanda J Ebbert; Gregor Eichele; Lili K Estin; Casey Faber; Benjamin A Facer; Rick Fields; Shanna R Fischer; Tim P Fliss; Cliff Frensley; Sabrina N Gates; Katie J Glattfelder; Kevin R Halverson; Matthew R Hart; John G Hohmann; Maureen P Howell; Darren P Jeung; Rebecca A Johnson; Patrick T Karr; Reena Kawal; Jolene M Kidney; Rachel H Knapik; Chihchau L Kuan; James H Lake; Annabel R Laramee; Kirk D Larsen; Christopher Lau; Tracy A Lemon; Agnes J Liang; Ying Liu; Lon T Luong; Jesse Michaels; Judith J Morgan; Rebecca J Morgan; Marty T Mortrud; Nerick F Mosqueda; Lydia L Ng; Randy Ng; Geralyn J Orta; Caroline C Overly; Tu H Pak; Sheana E Parry; Sayan D Pathak; Owen C Pearson; Ralph B Puchalski; Zackery L Riley; Hannah R Rockett; Stephen A Rowland; Joshua J Royall; Marcos J Ruiz; Nadia R Sarno; Katherine Schaffnit; Nadiya V Shapovalova; Taz Sivisay; Clifford R Slaughterbeck; Simon C Smith; Kimberly A Smith; Bryan I Smith; Andy J Sodt; Nick N Stewart; Kenda-Ruth Stumpf; Susan M Sunkin; Madhavi Sutram; Angelene Tam; Carey D Teemer; Christina Thaller; Carol L Thompson; Lee R Varnam; Axel Visel; Ray M Whitlock; Paul E Wohnoutka; Crissa K Wolkey; Victoria Y Wong; Matthew Wood; Murat B Yaylaoglu; Rob C Young; Brian L Youngstrom; Xu Feng Yuan; Bin Zhang; Theresa A Zwingman; Allan R Jones
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4.  Kernel-based data fusion for gene prioritization.

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6.  FlyBase: anatomical data, images and queries.

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7.  Prediction of gene expression in embryonic structures of Drosophila melanogaster.

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9.  Global analysis of patterns of gene expression during Drosophila embryogenesis.

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10.  Gene expression during the life cycle of Drosophila melanogaster.

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  15 in total

1.  Drosophila Gene Expression Pattern Annotation Using Sparse Features and Term-Term Interactions.

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Review 2.  Visualization of image data from cells to organisms.

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3.  Drosophila Gene Expression Pattern Annotation through Multi-Instance Multi-Label Learning.

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4.  Multi-source feature learning for joint analysis of incomplete multiple heterogeneous neuroimaging data.

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5.  Learning sparse representations for fruit-fly gene expression pattern image annotation and retrieval.

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Journal:  BMC Bioinformatics       Date:  2012-05-23       Impact factor: 3.169

6.  Automatically identifying and annotating mouse embryo gene expression patterns.

Authors:  Liangxiu Han; Jano I van Hemert; Richard A Baldock
Journal:  Bioinformatics       Date:  2011-02-25       Impact factor: 6.937

7.  A bag-of-words approach for Drosophila gene expression pattern annotation.

Authors:  Shuiwang Ji; Ying-Xin Li; Zhi-Hua Zhou; Sudhir Kumar; Jieping Ye
Journal:  BMC Bioinformatics       Date:  2009-04-21       Impact factor: 3.169

8.  Systematic image-driven analysis of the spatial Drosophila embryonic expression landscape.

Authors:  Erwin Frise; Ann S Hammonds; Susan E Celniker
Journal:  Mol Syst Biol       Date:  2010-01-19       Impact factor: 11.429

9.  Automated annotation of gene expression image sequences via non-parametric factor analysis and conditional random fields.

Authors:  Iulian Pruteanu-Malinici; William H Majoros; Uwe Ohler
Journal:  Bioinformatics       Date:  2013-07-01       Impact factor: 6.937

10.  Localizing genes to cerebellar layers by classifying ISH images.

Authors:  Lior Kirsch; Noa Liscovitch; Gal Chechik
Journal:  PLoS Comput Biol       Date:  2012-12-20       Impact factor: 4.475

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