A novel molecular toolkit for rapid detection of the pathogen and primary vector of thousand cankers disease

被引:21
|
作者
Oren, Emel [1 ,6 ]
Klingeman, William [2 ]
Gazis, Romina [1 ]
Moulton, John [1 ]
Lambdin, Paris [1 ]
Coggeshall, Mark [3 ]
Hulcr, Jiri [4 ]
Seybold, Steven J. [5 ]
Hadziabdic, Denita [1 ]
机构
[1] Univ Tennessee, Dept Entomol & Plant Pathol, Knoxville, TN 37901 USA
[2] Univ Tennessee, Dept Plant Sci, Knoxville, TN USA
[3] US Forest Serv, USDA, W Lafayette, IN USA
[4] Univ Florida, Sch Forest Resources & Conservat, Gainesville, FL 32611 USA
[5] US Forest Serv, USDA, Davis, CA USA
[6] Diyarbakir Plant Protect Res Inst, Diyarbakir, Turkey
来源
PLOS ONE | 2018年 / 13卷 / 01期
基金
美国农业部;
关键词
WALNUT TWIG BEETLE; GEOSMITHIA-MORBIDA; JUGLANS-NIGRA; BLACK-WALNUT; PITYOPHTHORUS-JUGLANDIS; CAUSAL AGENT;
D O I
10.1371/journal.pone.0185087
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Thousand Cankers Disease (TCD) of Juglans and Pterocarya (Juglandaceae) involves a fungal pathogen, Geosmithia morbida, and a primary insect vector, Pityophthorus juglandis. TCD was described originally from dying Juglans nigra trees in the western United States (USA), but it was reported subsequently from the eastern USA and northern Italy. The disease is often difficult to diagnose due to the absence of symptoms or signs on the bark surface of the host. Furthermore, disease symptoms can be confused with those caused by other biotic and abiotic agents. Thus, there is a critical need for a method for rapid detection of the pathogen and vector of TCD. Using species-specific microsatellite DNA markers, we developed a molecular protocol for the detection of G. morbida and P. juglandis. To demonstrate the utility of the method for delineating TCD quarantine zones, we tested whether geographical occurrence of symptoms and signs of TCD was correlated with molecular evidence for the presence of the cryptic TCD organisms. A total of 1600 drill cores were taken from branch sections collected from three regions (n = 40 trees for each location): California- J. hindsii (heavy disease incidence); Tennessee-J. nigra (mild disease incidence); and outside the known TCD zone (Missouri-J. nigra, no record of the disease). California samples had the highest incidence of the TCD organisms (85%, 34/40). Tennessee had intermediate incidence (42.5%, 17/40), whereas neither organism was detected in samples from Missouri. The low cost molecular protocol developed here has a high degree of sensitivity and specificity, and it significantly reduces sample-processing time, making the protocol a powerful tool for rapid detection of TCD.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] A nucleic acid detection device for rapid multiplexed molecular disease diagnostics
    Mahshid, Sahar S.
    Yedire, Sripadh Guptha
    Moakhar, Roozbeh S.
    Abdelfatah, Tamer
    Mahshid, Sara
    NATURE REVIEWS BIOENGINEERING, 2025, 3 (03): : 187 - 189
  • [32] Insect Vector Densities, Disease Incidence and Molecular Detection of Associated Phytopathogens in Tomato
    Nava-Camberos, Urbano
    Avila-Rodriguez, Veronica
    Alvarado-Gomez, Omar G.
    Jimenez Diaz, Florencio
    SOUTHWESTERN ENTOMOLOGIST, 2017, 42 (02) : 531 - 544
  • [33] Different Methods for Molecular and Rapid Detection of Human Novel Coron-avirus
    Shahrajabian, Mohamad H.
    Sun, Wenli
    Cheng, Qi
    CURRENT PHARMACEUTICAL DESIGN, 2021, 27 (25) : 2893 - 2903
  • [34] Minute level ultra-rapid and thousand copies level high-sensitive pathogen nucleic acid identification based on contactless impedance detection microsensor
    Zhang, Zhikang
    Yuan, Haojun
    Ni, Renhao
    Yin, Jiawen
    Li, Min
    Yang, Panhui
    Cao, Xinyi
    Zhou, Jun
    Su, Xiurong
    Chen, Yongbin
    Gao, Wanlei
    Jin, Qinghui
    TALANTA, 2024, 278
  • [35] Rapid molecular diagnosis of von Willebrand disease by direct sequencing. Detection of 12 novel putative mutations in VWF gene
    Corrales, Irene
    Ramirez, Lorena
    Altisent, Carme
    Parra, Rafael
    Vidal, Francisco
    THROMBOSIS AND HAEMOSTASIS, 2009, 101 (03) : 570 - 576
  • [36] Rapid virus detection procedure for molecular tracing of shellfish associated with disease outbreaks
    Husman, Ana Maria de Roda
    Lodder-Verschoor, Froukje
    Van den Berg, Harold H. J. L.
    Le Guyader, Francoise S.
    Van Pelt, Hilde
    Van der Poel, Wim H. M.
    Rutjes, Saskia A.
    JOURNAL OF FOOD PROTECTION, 2007, 70 (04) : 967 - 974
  • [37] Development and field application of a molecular probe for the primary pathogen of the coral disease white plague type II
    Richardson, LL
    Mills, DK
    Remily, ER
    Voss, JD
    REVISTA DE BIOLOGIA TROPICAL, 2005, 53 : 1 - 10
  • [38] Rapid detection of Ginseng root rot pathogen, Cylindrocarpon destructans, from soil samples using molecular biological techniques
    Jang, C. S.
    Ra, J. B.
    Yoo, S. J.
    Song, J. Y.
    Kim, H. G.
    PHYTOPATHOLOGY, 2004, 94 (06) : S45 - S45
  • [39] Rapid identification of novel specific molecular targets for PCR detection of four Enterococcus species
    Xiang, Xinran
    Lu, Jiaran
    Xu, Xiaowei
    Hou, Xiaogai
    Diao, Enjie
    Qian, Shiquan
    Song, Huwei
    Liang, Liqin
    He, Yinglong
    Shang, Yuting
    LWT-FOOD SCIENCE AND TECHNOLOGY, 2023, 173
  • [40] The Molecular Pap Test: A novel test for the detection of cervical disease.
    Sampson, Susan
    Prpic, Nikki
    Harden, Allison
    Chatterjee, Arundhati
    Purnell, Dondrea
    He, Qin
    Hall, Laura
    Doobay, Hema
    Taylor, Adriann
    Fischer, Timothy
    CANCER CYTOPATHOLOGY, 2006, 108 (05): : 393 - 393