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      <ref-type name="Journal Article">17</ref-type>
      <contributors>
        <authors>
          <author>R. Y. Wang</author>
          <author>H. G. Wang</author>
          <author>X. Y. Liu</author>
          <author>S. Lian</author>
          <author>L. Chen</author>
          <author>Z. J. Qiao</author>
          <author>C. E. McInerney</author>
          <author>L. Wang</author>
        </authors>
      </contributors>
      <titles>
        <title>DROUGHT-INDUCED TRANSCRIPTION OF RESISTANT AND SENSITIVE COMMON MILLET VARIETIES</title>
        <secondary-title>Journal of Animal and Plant Sciences</secondary-title>
        <alt-title>JAPS</alt-title>
      </titles>
      <dates><year>2017</year><pub-dates><date>2017/08/01</date></pub-dates></dates>
      <volume>27</volume>
      <number>4</number>
      <pages>1303-1314</pages>
      <isbn>1018-7081</isbn>
      <electronic-resource-num>NA</electronic-resource-num>
      <abstract>&lt;p&gt;As a well-adapted plant to dry soil and short growing seasons, common millet holds great potential as a drought-resistant crop. Here, we performed a comparative RNA-Seq analysis of two common millet genotypes, Huangmizi (tolerant) and Zhenyuandamizi (sensitive) grown under stress conditions (20% Polyethylene Glycol 6000 with an average molecular weight of ～5,400-7,000 solution). Leaves of seedling plants were harvested from a control and also after 1 and 3 h stress treatment and pooled for RNA isolation. Using Illumina paired-end sequencing, approximately 46.5 million clean reads were generated. Following a&lt;em&gt;&amp;nbsp;de novo&lt;/em&gt; assembly, a total of 42,240 Unigenes were obtained. A total of 2,301 SSRs and 1,447,148 SNPs were also identified and 75% of Unigenes were annotated. A total of 21,556 and 8,304 Unigenes aligned to the GO and COG databases, respectively. The GO classification showed that the Unigenes were distributed into three categories with 74.30% having biological functions, 76.51% having molecular functions and 79.30% having cellular-level functions. By cross-referencing against KEGGs, 5,535 Unigenes were assigned to 63 metabolic pathways. Additionally, 701 DEGs including 187 up-regulated and 514 down-regulated genes were detected. Transcripts identified in this study will accelerate our understanding of the molecular mechanisms of drought tolerance in common millet.&lt;/p&gt;</abstract>
      <keywords><keyword>Common millet (Panicum miliaceum L.), Drought, Transcription</keyword></keywords>
      <publisher>Pakistan Agricultural Scientists Forum</publisher>
      <urls><related-urls><url>https://thejaps.org.pk/AbstractView.aspx?mid=2017-JAPS-165</url></related-urls></urls>
    </record>
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