The establishment of species-specific primers for the molecular identification of ten stored-product psocids based on ITS2 rDNA

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作者
Zi-Hua Zhao
Bing-Yi Cui
Zhi-Hong Li
Fan Jiang
Qian-Qian Yang
Zuzana Kučerová
Václav Stejskal
George Opit
Yang Cao
Fu-Jun Li
机构
[1] College of Plant Protection,Department of Entomology
[2] China Agricultural University,Department of Entomology and Plant Pathology
[3] Crop Research Institute,undefined
[4] 127 Noble Research Center,undefined
[5] Oklahoma State University,undefined
[6] Academy of State Administration of Grain,undefined
[7] Institute of Plant Quarantine Research,undefined
[8] Chinese Academy of Inspection and Quarantine,undefined
[9] College of Life Science,undefined
[10] China Jiliang University,undefined
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摘要
Psocids are important stored product pests found worldwide that can be spread through grain trade. Most stored-product psocids, including eggs, nymphs, and adults, are very small (~1 mm) and difficult to identify morphologically. Here, we collected 10 economically important stored-product Liposcelis spp. psocids (L. bostrychophila, L. entomophila, L. decolor, L. paeta, L. brunnea, L. corrodens, L. mendax, L. rufa, L. pearmani, and L. tricolor) from 35 geographical locations in 5 countries (China, Czech Republic, Denmark, Germany, and the United States). The ITS2 rDNA gene was extracted and sequenced. The interspecific genetic distance of the stored-product psocids was significantly higher than the intraspecific genetic distance according to the barcoding gap analysis. Ten pairs of species-specific primers based on the ITS2 rDNA were developed for psocid identification. The sensitivity estimation indicated that the species-specific primers could correctly amplify the target ITS2 gene and successfully identify psocids at 1.0 ng/mL. Additionally, these species-specific primers could quantify specificity and identify 10 stored-product psocids; this approach could also be used to accurately identify other stored-product psocids. This work provides a practical approach for the precise examination of 10 stored-product psocid species and also contributes to the development of an identification method using ITS2 rDNA.
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