ADVERTISEMENT

If you are seeing this message, you may be experiencing temporary network problems. Please wait a few minutes and refresh the page. If the problem persists, you may wish to report it to your local Network Manager.

It is also possible that your web browser is not configured or not able to display style sheets. In this case, although the visual presentation will be degraded, the site should continue to be functional. We recommend using the latest version of Microsoft or Mozilla web browser to help minimise these problems.

Wiley InterScience

The Plant Journal

The Plant Journal

Volume 51 Issue 6, Pages 991 - 1003

Published Online: 17 Jul 2007

Journal compilation © 2010 Blackwell Publishing Ltd and the Society for Experimental Biology



< Previous Abstract  |  Next Abstract >

Save Article to My Profile      Download Citation      Request Permissions

Abstract |  References  |  Full Text: HTML, PDF (Size: 943K)  | Supporting Information | Related Articles | Citation Tracking

Large-scale identification of microRNAs from a basal eudicot (Eschscholzia californica) and conservation in flowering plants
Abdelali Barakat 1,*, Kerr Wall 1 , Jim Leebens-Mack 1,† , Yunjiao J. Wang 1 , John E. Carlson 2 and Claude W. dePamphilis 1,*
  1 Department of Biology, Institute of Molecular Evolutionary Genetics, and The Huck Institutes of the Life Sciences, 403 Life Sciences Building, The Pennsylvania State University, University Park, PA 16802, USA , and
  2 The School of Forest Resources, Department of Horticulture, and The Huck Institutes for Life Sciences, Pennsylvania State University, 323 Forest Resources Building, University Park, PA 16802, USA
Correspondence to   *(fax 814 865 9131; e-mail cwd3@psu.edu or aub14@psu.edu.
 

Present address:Department of Plant Biology, University of Georgia Athens, GA 30602-7271, USA.

Copyright 2007 The Authors Journal compilation 2007 Blackwell Publishing Ltd
KEYWORDS
Eschscholzia californica • small RNA • microRNA • distribution • high-throughput sequencing

ABSTRACT

MicroRNAs (miRNAs) negatively control gene expression by cleaving or inhibiting the translation of mRNA of target genes, and as such, they play an important role in plant development. Of the 79 plant miRNA families discovered to date, most are from the fully sequenced plant genomes of Arabidopsis, Populus and rice. Here, we identified miRNAs from leaves, roots, stems and flowers at different developmental stages of the basal eudicot species Eschscholzia californica (California poppy) using cloning and capillary sequencing, as well as ultrahigh-throughput pyrosequencing using the recently introduced 454 sequencing method. In total, we identified a minimum of 173 unique miRNA sequences belonging to 28 miRNA families and seven trans-acting small interfering RNAs (ta-siRNAs) conserved in eudicot and monocot species. miR529 and miR537, which have not yet been reported in eudicot species, were detected in California poppy; loci encoding these miRNAs were also found in Arabidopsis and Populus. miR535, which occurs in the moss Physcomitrella patens, was also detected in California poppy, but not in other angiosperms. Several potential miRNA targets were found in cDNA sequences of California poppy. Predicted target genes include transcription factors but also genes implicated in various metabolic processes and in stress defense. Comparative analysis of miRNAs from plants of phylogenetically-critical basal lineages aid the study of the evolutionary gains and losses of miRNAs in plants as well as their conservation, and lead to discoveries about the miRNAs of even well-studied model organisms.


Received 2 November 2006; revised 24 April 2007; accepted 9 May 2007.

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1365-313X.2007.03197.x About DOI

Related Articles

  • Find other articles like this in Wiley InterScience
  • Find articles in Wiley InterScience written by any of the authors

Wiley InterScience is a member of CrossRef.

Cross Ref Member


Sign up here
Special Issue
Click here to read the Special Issue
Asia Scientists Click Here