首页> 外文期刊>Anthropod-plant interactions >Dual-target detection using simultaneous amplification of PCR in clarifying interaction between Opiinae species (Hymenoptera: Braconidae) associated with Bactrocera spp. (Diptera: Tephritidae) infesting several crops
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Dual-target detection using simultaneous amplification of PCR in clarifying interaction between Opiinae species (Hymenoptera: Braconidae) associated with Bactrocera spp. (Diptera: Tephritidae) infesting several crops

机译:通过同时扩增PCR来进行双目标检测,以阐明与拟杆菌属(Bactrocera spp)相关的鸦皮科物种(膜翅目:Braconidae)之间的相互作用。 (双翅目:天蛾科)侵染几种农作物

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Simultaneous polymerase chain reaction (PCR) by using multiplex PCR was conducted to clarify the interaction between Opiinae associated with Bactrocera carambolae, B. papayae, and B cucurbitae. We sequenced and characterized a dual-band target detected on Opiinae DNA fragments by using two combination pairs of universal primers on two molecular markers, namely cytochrome oxidase subunit I (COI) and cytochrome b. Additionally, each Bactrocera species was identified by amplifying the COI region. Sequence data obtained from multiplex PCR seemed very effective in confirming species-level distinction that has been shown in tree topology. We conducted phylogenetic analyses prior to clarification of the interaction among three taxa levels. Interestingly, the sequences obtained from the simultaneous PCR successfully differentiated between six closely related Opiinae species in three genera, which could potentially be mass-reared as biocontrol agents of bactroceran fruit flies that infest several species of fruit. We discovered, proved, and added molecular data to clarify the interaction between Opiinae parasitoids, their host (Bactrocera spp.), and associated plants species. Psyttalia fletcheri parasitizing Bactrocera cucurbitae, which infests the ridge gourd fruit, has been added as a new record from Malaysia. This information would be extremely useful in taxonomic identification of species as part of an effective method in biological control program of the targeted fruit fly pests and their associated crops.
机译:通过多重PCR同时进行聚合酶链反应(PCR),以阐明与杨桃小杆菌,木瓜芽孢杆菌和葫芦丝芽孢杆菌相关的鸦片藻之间的相互作用。我们通过使用两个分子标记,即细胞色素氧化酶亚基I(COI)和细胞色素b上的两个通用引物组合对,对在鸦片属DNA片段上检测到的双带目标进行了测序和表征。另外,通过扩增COI区鉴定出了每个拟杆菌属。从多重PCR获得的序列数据似乎在确认树形拓扑结构中显示的物种水平差异方面非常有效。在阐明三个分类单元之间的相互作用之前,我们进行了系统发育分析。有趣的是,从同时PCR获得的序列成功地在三个属中的六个紧密相关的鸦片科物种之间进行了区分,这可能是由于侵染数种水果的芽孢杆菌果蝇的生物防治剂而有可能大量增加的。我们发现,证明并添加了分子数据,以阐明鸦片寄生虫,其寄主(Bactrocera spp。)和相关植物物种之间的相互作用。来自马来西亚的新记录中增加了寄生于葫芦果的拟南芥(Pactttalia fletcheri)寄生葫芦(Bactrocera cucurbitae)。该信息对于作为目标果蝇害虫及其相关农作物的生物防治计划中有效方法的一部分,在物种的生物分类识别中将非常有用。

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