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Improving the effectiveness of the release strategy for the array of Dactylopius tomentosus biotypes for the biocontrol of Cylindropuntia speciesby using DNA analysis

机译:使用DNA分析,提高DACTYLOPIAS TOENTOSUS BIOTOSUSS BIOTOSS BIOTOSES BIOCOSES的释放策略的有效性

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Six biotypes of Dactylopius tomentosus (Lamarck) (Hemiptera: Dactylopiidae) have been imported into Australia as biological control agents to combat the eight naturalised invasive Cylindropuntia species. Each D. tomentosus biotype tested exhibited significant differences in host specificity, host preference and performance across the Cylindropuntia species. Biocontrol success is dependent on the correct identification of the targeted plant species and the correct matching of an insect or pathogen tothat plant. An optimal release strategy is to match the most effective biotype to the targeted Cylindropuntia species. Biotype matching to Cylindropuntia species was enhanced through the use of molecular phylogenetic tools and more thorough morphologicalobservations of the cacti species. Molecular studies demonstrated that using two plastid markers (Rpl36-Rps8 spacer region and TrnH-PsbA spacer) and a nuclear region (phosphoenolpyruvate carboxylase) allowed for differentiation of the eight Cylindropuntia species. Molecular analyses using three markers enable the identification of unknown Cylindropuntia species when species identification is not possible using traditional phenological and morphological tools. The genetic identification of the Cylindropuntia provides a time efficient match of target host species and biotype within days rather than the traditional long term host trials (three month life cycle) previously required. Utilising DNA analyses will markedly improve the chance of containment ofCylindropuntia infestations in Australia through better matching of biocontrol agents with their most preferred host.
机译:Daytylopius tomentosus(Lamarck)(Hemiptera:dactylopiidae)的六种生物型被进口到澳大利亚作为生物控制剂,以打击八种归化侵袭性圆柱形物种。每个D. Tomentosus Biotype测试的宿主特异性呈现显着差异,宿主偏好和穿过圆柱形物种的性能。生物控制成功依赖于靶向植物物种的正确鉴定和昆虫或病原体植物的正确匹配。最佳释放策略是将最有效的生物型与靶向圆柱形物种匹配。通过使用分子系统发育工具和仙人掌种类更彻底的形态学,通过使用分子系统和更彻底的形态学,增强了与Cylindropuntia物种的生物型。分子研究证明,使用两个塑性标记物(RPL36-RPS8间隔区和TrnH-PSBA间隔物)和核区域(磷酸丙酮酸羧酸盐酶)允许八个圆柱形物种的分化。使用三个标记的分子分析使得当使用传统的酚类和形态学工具无法进行物种鉴定时,可以识别未知的圆柱形物种。圆柱形的遗传识别在几天内而不是先前需要的传统长期宿主试验(三个月生命周期)提供靶宿主物种和生物型的时间有效匹配。利用DNA分析将显着改善澳大利亚含有肠道侵蚀的机会,通过更好地与最优选的宿主更好地匹配生物控制剂。

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