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Gene flow and genetic structure of Bactroceracarambolae (Diptera, Tephritidae) among geographical differences and sister species, B.dorsalis, inferred from microsatellite DNA data

Identifieur interne : 000638 ( Main/Exploration ); précédent : 000637; suivant : 000639

Gene flow and genetic structure of Bactroceracarambolae (Diptera, Tephritidae) among geographical differences and sister species, B.dorsalis, inferred from microsatellite DNA data

Auteurs : Nidchaya Aketarawong [Thaïlande] ; Siriwan Isasawin [Thaïlande] ; Punchapat Sojikul [Thaïlande] ; Sujinda Thanaphum [Thaïlande]

Source :

RBID : PMC:4714072

Abstract

The Carambola fruit fly, Bactroceracarambolae, is an invasive pest in Southeast Asia. It has been introduced into areas in South America such as Suriname and Brazil. Bactroceracarambolae belongs to the Bactroceradorsalis species complex, and seems to be separated from Bactroceradorsalis based on morphological and multilocus phylogenetic studies. Even though the Carambola fruit fly is an important quarantine species and has an impact on international trade, knowledge of the molecular ecology of Bactroceracarambolae, concerning species status and pest management aspects, is lacking. Seven populations sampled from the known geographical areas of Bactroceracarambolae including Southeast Asia (i.e., Indonesia, Malaysia, Thailand) and South America (i.e., Suriname), were genotyped using eight microsatellite DNA markers. Genetic variation, genetic structure, and genetic network among populations illustrated that the Suriname samples were genetically differentiated from Southeast Asian populations. The genetic network revealed that samples from West Sumatra (Pekanbaru, PK) and Java (Jakarta, JK) were presumably the source populations of Bactroceracarambolae in Suriname, which was congruent with human migration records between the two continents. Additionally, three populations of Bactroceradorsalis were included to better understand the species boundary. The genetic structure between the two species was significantly separated and approximately 11% of total individuals were detected as admixed (0.100 ≤ Q ≤ 0.900). The genetic network showed connections PageBreakbetween Bactroceracarambolae and Bactroceradorsalis groups throughout Depok (DP), JK, and Nakhon Sri Thammarat (NT) populations. These data supported the hypothesis that the reproductive isolation between the two species may be leaky. Although the morphology and monophyly of nuclear and mitochondrial DNA sequences in previous studies showed discrete entities, the hypothesis of semipermeable boundaries may not be rejected. Alleles at microsatellite loci could be introgressed rather than other nuclear and mitochondrial DNA. Bactroceracarambolae may be an incipient rather than a distinct species of Bactroceradorsalis. Regarding the pest management aspect, the genetic sexing Salaya5 strain (SY5) was included for comparison with wild populations. The SY5 strain was genetically assigned to the Bactroceracarambolae cluster. Likewise, the genetic network showed that the strain shared greatest genetic similarity to JK, suggesting that SY5 did not divert away from its original genetic makeup. Under laboratory conditions, at least 12 generations apart, selection did not strongly affect genetic compatibility between the strain and wild populations. This knowledge further confirms the potential utilization of the Salaya5 strain in regional programs of area-wide integrated pest management using SIT.


Url:
DOI: 10.3897/zookeys.540.10058
PubMed: 26798262
PubMed Central: 4714072


Affiliations:


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Le document en format XML

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, inferred from microsatellite DNA data</title>
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<name sortKey="Aketarawong, Nidchaya" sort="Aketarawong, Nidchaya" uniqKey="Aketarawong N" first="Nidchaya" last="Aketarawong">Nidchaya Aketarawong</name>
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<p>The Carambola fruit fly,
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<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
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, is an invasive pest in Southeast Asia. It has been introduced into areas in South America such as Suriname and Brazil.
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
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belongs to the
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<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">dorsalis</named-content>
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species complex, and seems to be separated from
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">dorsalis</named-content>
</named-content>
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based on morphological and multilocus phylogenetic studies. Even though the Carambola fruit fly is an important quarantine species and has an impact on international trade, knowledge of the molecular ecology of
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
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, concerning species status and pest management aspects, is lacking. Seven populations sampled from the known geographical areas of
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
</italic>
including Southeast Asia (i.e., Indonesia, Malaysia, Thailand) and South America (i.e., Suriname), were genotyped using eight microsatellite DNA markers. Genetic variation, genetic structure, and genetic network among populations illustrated that the Suriname samples were genetically differentiated from Southeast Asian populations. The genetic network revealed that samples from West Sumatra (Pekanbaru, PK) and Java (Jakarta, JK) were presumably the source populations of
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
</italic>
in Suriname, which was congruent with human migration records between the two continents. Additionally, three populations of
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">dorsalis</named-content>
</named-content>
</italic>
were included to better understand the species boundary. The genetic structure between the two species was significantly separated and approximately 11% of total individuals were detected as admixed (0.100 ≤
<italic>Q</italic>
≤ 0.900). The genetic network showed connections
<pmc-comment>PageBreak</pmc-comment>
between
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
</italic>
and
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">dorsalis</named-content>
</named-content>
</italic>
groups throughout Depok (DP), JK, and Nakhon Sri Thammarat (NT) populations. These data supported the hypothesis that the reproductive isolation between the two species may be leaky. Although the morphology and monophyly of nuclear and mitochondrial DNA sequences in previous studies showed discrete entities, the hypothesis of semipermeable boundaries may not be rejected. Alleles at microsatellite loci could be introgressed rather than other nuclear and mitochondrial DNA.
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
</italic>
may be an incipient rather than a distinct species of
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">dorsalis</named-content>
</named-content>
</italic>
. Regarding the pest management aspect, the genetic sexing Salaya5 strain (SY5) was included for comparison with wild populations. The SY5 strain was genetically assigned to the
<italic>
<named-content content-type="taxon-name">
<named-content content-type="genus">Bactrocera</named-content>
<named-content content-type="species">carambolae</named-content>
</named-content>
</italic>
cluster. Likewise, the genetic network showed that the strain shared greatest genetic similarity to JK, suggesting that SY5 did not divert away from its original genetic makeup. Under laboratory conditions, at least 12 generations apart, selection did not strongly affect genetic compatibility between the strain and wild populations. This knowledge further confirms the potential utilization of the Salaya5 strain in regional programs of area-wide integrated pest management using SIT.</p>
</div>
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