Quantitative Real-Time PCR Based on SYBR Green Technology for the Identification of Philaenus italosignus Drosopoulos & Remane (Hemiptera Aphrophoridae)
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M. Bracalini | T. Panzavolta | P. Sacchetti | E. Rossi | D. Rizzo | L. Bartolini | S. Campigli | Francesco Porcelli | G. Marchi | Anita Nencioni | D. Da Lio
[1] PM 7/98 (5) Specific requirements for laboratories preparing accreditation for a plant pest diagnostic activity , 2021, EPPO Bulletin.
[2] F. Porcelli,et al. Aphrophoridae Role in Xylella fastidiosa subsp. pauca ST53 Invasion in Southern Italy , 2021, Pathogens.
[3] C. Rapisarda,et al. The Rapid Identification of Anoplophora chinensis (Coleoptera: Cerambycidae) From Adult, Larval, and Frass Samples Using TaqMan Probe Assay , 2021, Journal of Economic Entomology.
[4] P. Sacchetti,et al. Development of Three Molecular Diagnostic Tools for the Identification of the False Codling Moth (Lepidoptera: Tortricidae) , 2021, Journal of Economic Entomology.
[5] P. Roversi,et al. A FIVE-YEAR SURVEY IN TUSCANY (ITALY) AND DETECTION OF XYLELLA FASTIDIOSASUBSPECIES MULTIPLEXIN POTENTIAL INSECT VECTORS, COLLECTED IN MONTE ARGENTARIO , 2021 .
[6] Sudhir Kumar,et al. MEGA11: Molecular Evolutionary Genetics Analysis Version 11 , 2021, Molecular biology and evolution.
[7] Daniele Da Lio,et al. Identification of the Red-Necked Longhorn Beetle Aromia bungii (Faldermann, 1835) (Coleoptera: Cerambycidae) with Real-Time PCR on Frass , 2020, Sustainability.
[8] F. Porcelli,et al. A biological control model to manage the vector and the infection of Xylella fastidiosa on olive trees , 2020, PloS one.
[9] PM 7/141 (1) Philaenus spumarius, Philaenus italosignus and Neophilaenus campestris , 2020, EPPO Bulletin.
[10] D. Bosco,et al. Transmission of Xylella fastidiosa Subspecies Pauca Sequence Type 53 by Different Insect Species , 2019, Insects.
[11] F. Porcelli,et al. Collection of data and information on biology and control of vectors of Xylella fastidiosa , 2019, EFSA Supporting Publications.
[12] D. Boscia,et al. A new variant of Xylella fastidiosa subspecies multiplex detected in different host plants in the recently emerged outbreak in the region of Tuscany, Italy , 2019, European Journal of Plant Pathology.
[13] F. Ranaldi,et al. First detection of Xylella fastidiosa subsp. multiplex DNA in Tuscany (Italy) , 2018 .
[14] M. Mcmullen. PM 7/98 (3) Specific requirements for laboratories preparing accreditation for a plant pest diagnostic activity , 2018, EPPO Bulletin.
[15] C. Callejas,et al. PCR Species-Specific Primers for Molecular Gut Content Analysis to Determine the Contribution of Generalist Predators to the Biological Control of the Vector of Xylella fastidiosa , 2018, Sustainability.
[16] Kazutaka Katoh,et al. A simple method to control over-alignment in the MAFFT multiple sequence alignment program , 2016, Bioinform..
[17] A. Luvisi,et al. Occurrence of different phytoplasma infections in wild herbaceous dicots growing in vineyards affected by bois noir in Tuscany (Italy) , 2015 .
[18] Diogo N. Silva,et al. New Mitochondrial and Nuclear Evidences Support Recent Demographic Expansion and an Atypical Phylogeographic Pattern in the Spittlebug Philaenus spumarius (Hemiptera, Aphrophoridae) , 2014, PloS one.
[19] M. Arif,et al. PCR and isothermal-based molecular identification of the stored-product psocid pest Lepinotus reticulatus (Psocoptera: Trogiidae) , 2012 .
[20] O. Paulo,et al. Molecular phylogeny and DNA barcoding in the meadow-spittlebug Philaenus spumarius (Hemiptera, Cercopidae) and its related species. , 2010, Molecular phylogenetics and evolution.
[21] R. Ioos,et al. Sensitive detection of Fusarium circinatum in pine seed by combining an enrichment procedure with a real-time polymerase chain reaction using dual-labeled probe chemistry. , 2009, Phytopathology.
[22] L. Ghelardini,et al. Philaenus italosignus a potential vector of Xylella fastidiosa: occurrence of the spittlebug on olive trees in Tuscany (Italy). , 2019 .
[23] S. Drosopoulos,et al. Biogeographic studies on the spittlebug Philaenus signatus Melichar, 1896 species group (Hemiptera: Aphrophoridae) with the description of two new allopatric species. , 2000 .