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<art>
   <ui>gb-2005-6-4-318</ui>
   <ji>GBJ</ji>
   <fm>
      <dochead>Paper report</dochead>
      <bibl>
         <title>
            <p>Articles selected by Faculty <it>of </it><b> 1000</b>: meiosis evolution; picoeukaryote cell-cycle genes; identifying targets of small molecules; rice genome evolution; circadian gene expression cyanobacteria</p>
         </title>
         <aug>
            <au>
               <snm/>
               <fnm/>
            </au>
         </aug>
         <source>Genome Biology</source>
         <issn>1465-6906</issn>
         <pubdate>2005</pubdate>
         <volume>6</volume>
         <issue>4</issue>
         <fpage>318</fpage>
         <url>http://genomebiology.com/2005/6/4/318/</url>
         <xrefbib>
            <pubid idtype="doi">10.1186/gb-2005-6-4-318</pubid>
         </xrefbib>
      </bibl>
      <history>
         <pub>
            <date>
               <day>11</day>
               <month>3</month>
               <year>2005</year>
            </date>
         </pub>
      </history>
      <cpyrt>
         <year>2005</year>
         <collab>BioMed Central Ltd</collab>
      </cpyrt>
      <shorttitle>
         <p>Meiosis evolution; picoeukaryote cell-cycle genes; identifying targets of small molecules; rice genome evolution; circadian gene expression cyanobacteria</p>
      </shorttitle>
      <shortabs>
         <p>A selection of evaluations from Faculty <it>of </it><b>1000 </b>covering meiosis evolution; picoeukaryote cell-cycle genes; identifying targets of small molecules; rice genome evolution; circadian gene expression cyanobacteria.</p>
      </shortabs>
      <abs>
         <sec>
            <st>
               <p>Summary</p>
            </st>
            <p>A selection of evaluations from Faculty <it>of </it><b>1000 </b>covering meiosis evolution; picoeukaryote cell-cycle genes; identifying targets of small molecules; rice genome evolution; circadian gene expression cyanobacteria.</p>
         </sec>
      </abs>
   </fm>
   <meta>
      <classifications>
         <classification type="BMC" subtype="man_spc_id" id="30010016">Molecular biology</classification>
         <classification type="BMC" subtype="man_spc_id" id="30010009">Genetics</classification>
         <classification type="BMC" subtype="man_spc_id" id="30010010">Genome studies</classification>
         <classification type="BMC" subtype="man_spc_id" id="30010004">Cell biology</classification>
         <classification type="BMC" subtype="man_spc_id" id="30010019">Plant biology</classification>
      </classifications>
   </meta>
   <bdy>
      <sec>
         <st>
            <p>Meiosis evolution</p>
         </st>
         <p><b>A phylogenomic inventory of meiotic genes; evidence for sex in Giardia and an early eukaryotic origin of meiosis.</b> Ramesh MA, Malik SB, Logsdon JM. <it>Curr Biol</it> 2005, <b>15:</b>185-191.</p>
         <p>For the Faculty of 1000 evaluation of this article please see: <url>http://genomebiology.com/reports/F1000/gb-2005-6-4-318.asp#Ramesh</url></p>
      </sec>
      <sec>
         <st>
            <p>Picoeukaryote cell-cycle genes</p>
         </st>
         <p><b>Genome-wide analysis of core cell cycle genes in the unicellular green alga <it>Ostreococcus tauri</it>.</b> Robbens S, Khadaroo B, Camasses A, Derelle E, Ferraz C, Inz&#233; D, Van de Peer Y, Moreau H. <it>Mol Biol Evol</it> 2005, <b>22:</b>589-597.</p>
         <p>For the Faculty of 1000 evaluation of this article please see: <url>http://genomebiology.com/reports/F1000/gb-2005-6-4-318.asp#Robbens</url></p>
      </sec>
      <sec>
         <st>
            <p>Identifying targets of small molecules</p>
         </st>
         <p><b>A genome-wide overexpression screen in yeast for small-molecule target identification.</b> Luesch H, Wu TY, Ren P, Gray NS, Schultz PG, Supek F. <it>Chem Biol</it> 2005, <b>12:</b>55-63.</p>
         <p>For the Faculty of 1000 evaluation of this article please see: <url>http://genomebiology.com/reports/F1000/gb-2005-6-4-318.asp#Luesch</url></p>
      </sec>
      <sec>
         <st>
            <p>Rice genome evolution</p>
         </st>
         <p><b>Duplication and DNA segmental loss in the rice genome: implications for diploidization.</b> Wang X, Shi X, Hao B, Ge S, Luo J. <it>New Phytol</it> 2005, <b>165:</b>937-946.</p>
         <p>For the Faculty of 1000 evaluation of this article please see: <url>http://genomebiology.com/reports/F1000/gb-2005-6-4-318.asp#Wang</url></p>
      </sec>
      <sec>
         <st>
            <p>Circadian gene expression cyanobacteria</p>
         </st>
         <p><b>Global analysis of circadian expression in the Cyanobacterium <it>Synechocystis</it> sp. strain PCC 6803.</b> Kucho K, Okamoto K, Tsuchiya Y, Nomura S, Nango M, Kanehisa M, Ishiura M. <it>J Bacteriol</it> 2005, <b>187:</b>2190-2199.</p>
         <p>For the Faculty of 1000 evaluation of this article please see: <url>http://genomebiology.com/reports/F1000/gb-2005-6-4-318.asp#Kucho</url></p>
      </sec>
   </bdy>
</art>
