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    <titleInfo>
      <title>Genetic structure of the invasive pest #Bemisia tabaci$ : evidence of limited but persistent genetic differentiation in glasshouse populations</title>
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    <name type="personnal">
      <namePart type="family">Dalmon</namePart>
      <namePart type="given">A.</namePart>
      <role>
        <roleTerm type="text">auteur</roleTerm>
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      <affiliation>IRD</affiliation>
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    <name type="personnal">
      <namePart type="family">Halkett</namePart>
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    <name type="personnal">
      <namePart type="family">Granier</namePart>
      <namePart type="given">M.</namePart>
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        <roleTerm type="text">auteur</roleTerm>
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    <name type="personnal">
      <namePart type="family">Delatte</namePart>
      <namePart type="given">Hélène</namePart>
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    <name type="personnal">
      <namePart type="family">Peterschmitt</namePart>
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    <abstract>The geographic range of plant pests can be modified by the use of glasshouses. Bemisia tabaci, originating from warm to hot climates, has been shown to be a complex of distinct genetic groups with very limited gene flow. The genetic structure of this pest was studied in glasshouses in southern France, a region beyond the northern limit of its open-field development area in Europe. Seven microsatellite loci were scored in 22 populations sampled from various regions over 3 years. Two genetic groups were distinguished using a Bayesian clustering method and were assigned to the so-called biotypes B and Q using the gene sequence of cytochrome oxidase 1 (CO1). All but one population corresponded to biotype Q, even though only biotype B was previously reported. Despite the enclosed environment of glasshouses and their expected isolation due to low outdoor survival during the winter, only limited differentiation among biotype Q glasshouses was observed. A single sample site was notable for a decrease in expected heterozygosity and the mean number of alleles over the years. The lack of spatial genetic structure among biotype Q populations was indicative of a recent colonization event combined with large dispersal at all spatial scales. This migration pattern of biotype Q populations was further supported by additional CO1 sequences, since individuals from France, Asia and America exhibited 100% nucleotide identity. The evolution of genetic diversity observed in glasshouses in France is part of the worldwide invasion of biotype Q, which is discussed in light of human activities.</abstract>
    <targetAudience authority="marctarget">specialized</targetAudience>
    <classification authority="local">076</classification>
    <relatedItem type="host">
      <titleInfo>
        <title>Heredity</title>
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      <part>
        <detail type="volume">
          <number>100</number>
        </detail>
        <detail type="volume">
          <number>3</number>
        </detail>
        <extent unit="pages">
          <list> 316-325</list>
        </extent>
      </part>
      <originInfo>
        <dateIssued>2008</dateIssued>
      </originInfo>
      <identifier type="issn">0018-067X</identifier>
    </relatedItem>
    <identifier type="uri">https://www.documentation.ird.fr/hor/PAR00002166</identifier>
    <identifier type="doi">10.1038/sj.hdy.6801080</identifier>
    <identifier type="issn">0018-067X</identifier>
    <location>
      <url usage="primary display" access="object in context">https://www.documentation.ird.fr/hor/PAR00002166</url>
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      <recordContentSource>IRD - Base Horizon / Pleins textes</recordContentSource>
      <recordCreationDate encoding="w3cdtf">2008-03-31</recordCreationDate>
      <recordChangeDate encoding="w3cdtf">2017-08-23</recordChangeDate>
      <recordIdentifier>PAR00002166</recordIdentifier>
      <languageOfCataloging>
        <languageTerm authority="iso639-2b">fre</languageTerm>
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