scholarly journals Discrepancies in Serology-Based and Nucleic Acid-Based Detection and Quantitation of Tomato Spotted Wilt Orthotospovirus in Leaf and Root Tissues from Symptomatic and Asymptomatic Peanut Plants

Pathogens ◽  
2021 ◽  
Vol 10 (11) ◽  
pp. 1476
Author(s):  
Pin-Chu Lai ◽  
Mark R. Abney ◽  
Yi-Ju Chen ◽  
Sudeep Bag ◽  
Rajagopalbabu Srinivasan

Thrips-transmitted tomato spotted wilt orthotospovirus (TSWV) causes spotted wilt disease in peanuts. A serological test (DAS-ELISA) is often used to detect TSWV in peanut leaf samples. However, in a few studies, DAS-ELISA detected more TSWV infection in root than leaf samples. It was not clear if the increased detection was due to increased TSWV accumulation in root tissue or merely an overestimation. Additionally, it was unclear if TSWV detection in asymptomatic plants would be affected by the detection technique. TSWV infection in leaf and root tissue from symptomatic and asymptomatic plants was compared via DAS-ELISA, RT-PCR, and RT-qPCR. TSWV incidence did not vary by DAS-ELISA, RT-PCR, and RT-qPCR in leaf and root samples of symptomatic plants or in leaf samples of asymptomatic plants. In contrast, significantly more TSWV infection and virus load were detected in root samples of asymptomatic plants via DAS-ELISA than other techniques suggesting that DAS-ELISA overestimated TSWV incidence and load. TSWV loads from symptomatic plants via RT-qPCR were higher in leaf than root samples, while TSWV loads in leaf and root samples from asymptomatic plants were not different but were lower than those in symptomatic plants. These findings suggested that peanut tissue type and detection technique could affect accurate TSWV detection and/or quantitation.

Plant Disease ◽  
2007 ◽  
Vol 91 (12) ◽  
pp. 1682-1682 ◽  
Author(s):  
R. J. Holguín-Peña ◽  
E. O. Rueda-Puente

In 2005, serological screening by ELISA of 24 tomato (Solanum lycopersicon Mill.) plants with virus-like foliar symptoms (locally known as “marchitez manchada” [spotted wilt] disease) was done for a variety of RNA viruses: Tomato spotted wilt virus (TSWV; family Bunyaviridae, genus Tospovirus) was specifically detected. The symptomatic plants testing positive were from the most important tomato areas in San Quintin, in the north of Baja California. Symptoms characteristic of TSWV (4), including chlorosis, malformation of apical leaves, stunting, and ringspot lesions, were observed in this region and throughout the peninsula. In 2006, 42 symptomatic tomato plants from La Paz, in the south of Baja California, were analyzed for TSWV by double-antibody sandwich (DAS)-ELISA with a commercially available kit (TSWV ImmunoStrip Kit; Agdia Inc., Elkhart, IN). Total nucleic acids of the TSWV ELISA-positive samples (16 of 42 = 38%) were extracted and preserved on FTA cards (Whatman, Brentford, U.K.) and processed according to the manufacturer's protocol. The positive TSWV samples were verified by reverse transcription (RT)-PCR with primers specific to the TSWV nucleocapsid protein gene, 5′-ATGTCTAAGGTTAAGCTC-3′ and 5′-TTAAGCAAGTTCTGTGAG-3′ (2). Amplicons of the expected size (approximately 800 bp) were obtained from all 16 positive samples but not in the ELISA-negative samples. The spotted wilt disease was mechanically transmitted to tomato (cv. Rutgers) and Nicotiana glauca seedlings. Symptoms on leaves consisting of chlorotic ring patterns and necrotic lesions were observed in tomato, and slightly concentric chlorotic lesions were observed in N. glauca. All symptomatic plants from San Quintin and La Paz were positive for TSWV in the DAS-ELISA and RT-PCR tests and none were positive for the tobamoviruses, Tomato mosaic virus (ToMV) and Tobacco mosaic virus (TMV). TSWV was not detected in symptomless tomato plants used as negative controls. TSWV was detected in Mexico in tomatillo (Physalis ixocarpa), tobacco (Nicotiana tabacum), jimsonweed (Datura stramonium) (3), and recently, in tomato and pepper in the Central Plateau of Mexico (1). Although spotted wilt disease has been previously observed in San Quintin tomato-producing areas, to our knowledge, this is the first confirmation of TSWV in the Baja Peninsula. The role of weed hosts as a natural reservoir and the role of species of thrips in the epidemiology of the disease are currently unknown, although the incidence of the virus in these regions has risen to destructive levels in tomato. References: (1) R. De La Torre-Almaráz et al. Agrociencia 36:211, 2002. (2). R. K. Jain et al. Plant Dis. 82:900, 1998. (3) M. E. Llamas-Llamas et al. Plant Pathol. 47:341, 1998. (4) G. Marchoux et al. Plant Pathol. 40:347, 1991.


2002 ◽  
Vol 27 (3) ◽  
pp. 285-291 ◽  
Author(s):  
MARCELO EIRAS ◽  
ALEXANDRE L. R. CHAVES ◽  
ADDOLORATA COLARICCIO ◽  
RICARDO HARAKAVA ◽  
JANSEN DE ARAUJO ◽  
...  

Os tospovírus são responsáveis por perdas significativas em diversas culturas, principalmente solanáceas. No município de São José dos Campos (SP), plantas de jiló (Solanum gilo) apresentando sintomas de mosaico, bolhosidades, nanismo e queda acentuada da produção foram coletadas para análise. Visando a caracterização do agente causador dos sintomas, testes biológicos, elétrono microscópicos, sorológicos e moleculares foram realizados. Através de inoculação mecânica em plantas indicadoras das famílias Amaranthaceae, Chenopodiaceae e Solanaceae obtiveram-se resultados típicos aos esperados para tospovírus. Ao microscópio eletrônico de transmissão, observaram-se, em contrastação negativa, partículas pleomórficas com diâmetro entre 80 e 110 nm e em cortes ultra-finos partículas presentes em vesículas do retículo endoplasmático. Através de DAS-ELISA, identificou-se o Tomato chlorotic spot virus (TCSV). A partir de RNA total extraído de folhas infetadas, amplificaram-se, via RT-PCR, fragmentos correspondentes ao gene da proteína do capsídeo (cp) os quais foram seqüenciados e comparados com outros depositados no "GenBank". A homologia de nucleotídeos e aminoácidos deduzidos foi respectivamente de 99 e 95% quando comparada com seqüências de isolados de TCSV. A comparação com as outras espécies do gênero Tospovirus apresentou valores de homologia entre 72 e 84%. Estes resultados confirmam a identidade deste vírus como pertencente à espécie TCSV, que é predominante no Estado de São Paulo e importante patógeno de outras plantas cultivadas. Além disso, variedades de jiló quando inoculadas foram susceptíveis tanto ao TCSV como às espécies Tomato spotted wilt virus (TSWV) e Groundnut ringspot virus (GRSV).


Plant Disease ◽  
2005 ◽  
Vol 89 (5) ◽  
pp. 526-526 ◽  
Author(s):  
S. Adkins ◽  
C. A. Baker

Desert rose (Adenium obesum (Forssk.) Roem. & Schult), a member of the family Apocynaceae, is characterized by fleshy stems and leaves and colorful flowers. This exotic ornamental, originally from southeast Africa, is propagated vegetatively and is a perennial in warm climates. Virus-like foliar symptoms, including chlorotic ring and line patterns, were observed in the fall of 2004 on one of five stock plants being maintained in a greenhouse in Fort Pierce, FL. Inclusion body morphology suggested the presence of a Tospovirus in the symptomatic plant, and Tomato spotted wilt virus (TSWV) was specifically identified in this plant using a commercially available double antibody sandwich-enzyme linked immunosorbent assay (DAS-ELISA; Agdia, Elkhart, IN). TSWV was not detected in symptomless desert rose plants nor was Impatiens necrotic spot virus detected in any of the plants using DAS-ELISA. Graft transmission of TSWV to other desert rose plants was successful. Sequence analysis of a nucleocapsid (N) protein gene fragment amplified by reverse transcription-polymerase chain reaction (RT-PCR) with primers TSWV723 and TSWV722 (1) from total RNA of the symptomatic plant confirmed the diagnosis. Nucleotide and deduced amino acid sequences of a 579-bp region of the RT-PCR product were 95 to 99% and 95 to 100% identical, respectively, to TSWV N-gene sequences in GenBank. No product was amplified from symptomless plants. Since these 3-year-old plants were grown on-site from seed and only expressed symptoms 2 months following damage to the greenhouse by hurricanes Frances and Jeanne, it is likely that viruliferous thrips were introduced from local vegetable or ornamental production areas during or following the storms. To our knowledge, this is the first report of TSWV infection of desert rose in Florida, although TSWV was observed in this plant in Europe approximately 10 years ago (3,4). Because of the wide distribution of TSWV in the United States, the increasing popularity of desert rose, and the recent identification of Cucumber mosaic virus in this host (2), attention to sanitation and insect vector management is merited during desert rose propagation and production. References: (1) S. Adkins and E. N. Rosskopf. Plant Dis. 86:1310, 2002. (2) C. A. Baker et al. Plant Dis. 87:1007, 2003. (3) J. Mertelik et al. Acta Hortic. 432:368, 1996. (4) J. Th. J. Verhoeven and J. W. Roenhorst. Acta Hortic. 377:175, 1994.


Plant Disease ◽  
2009 ◽  
Vol 93 (2) ◽  
pp. 202-202 ◽  
Author(s):  
N. A. Barkley ◽  
D. L. Pinnow ◽  
M. L. Wang ◽  
G. A. Pederson

Tomato spotted wilt virus (TSWV; family Bunyaviridae, genus Tospovirus), which is vectored by several species of thrips (order Thysanoptera, family Thripidae), causes a destructive disease that affects many economically important host plants such as tomatoes, peppers, and peanuts. Controlling the spread of this disease is challenging, and currently, only limited strategies are available to prevent and/or control its dissemination, including early diagnosis, destruction of infected material, and elimination of the vector. TSWV has been previously reported in subterranean clover (Trifolium subterraneum), white clover (T. repens), and various unidentified wild clovers (Trifolium spp.) in North America and Australia (1,3), but never before in an African species. T. tembense (Fresen.), an herbaceous annual African clover that is mainly used for grazing, is part of the national germplasm collection housed at the Plant Genetic Resources Conservation Unit in Griffin, GA. TSWV was found naturally infecting several accessions of this species being grown for regeneration in a greenhouse during 2008. Initial putative identification of the virus was done by visual inspection of host symptoms that included ringspots, necrotic and chlorotic local lesions, sometimes mild systemic wilting, and eventually an overall decline of healthy tissue in the infected plants. This was subsequently confirmed by double-antibody sandwich (DAS)-ELISA and reverse transcription (RT)-PCR. Primers (5′-ATGTCTAAGGTTAAGCTC-3′ forward and 5′-TTAAGCAAGTTCTGTGAG-3′ reverse) targeted the nucleocapsid gene of TSWV and amplified an expected product of approximately 800 bp (2). No product was amplified in any of the negative controls. Twenty-six individuals representing twelve plant accessions (PI 517788, 517790, 517792, 517793, 517809, 517832, 517842, 517845, 517851, 517871, 517876, and 517889) were screened for TSWV. Two to three individuals were targeted from each accession. Samples were chosen on the basis of the availability of leaf tissue to perform two diagnostic assays, ELISA and RT-PCR. Samples chosen for this study were all naturally infected by thrips. All but four individuals representing two plant accessions tested positive for the virus. The RT-PCR data substantiated the DAS-ELISA results and confirmed the suspected infection. More than 26% of the positive samples naturally infected by TSWV were further characterized by purifying and sequencing (bidirectionally) the RT-PCR product on an automated CEQ 8000 sequencer (Beckman Coulter, Fullerton, CA). The resulting sequences were aligned and edited using AlignIR (LI-COR, Lincoln, NE). More than 700 bp of sequence data (GenBank Accession No. FJ183743–FJ183746) was compiled and they displayed 98% identity with deposited TSWV nucleocapsid gene sequences in GenBank, with no similarity to any other targets. To our knowledge, this is the first report of TSWV infection in T. tembense. Accessions potentially resistant to TSWV within this species were identified and need to be further substantiated. T. tembense is a wild, native clover in Africa and could serve as a weed host for infection of nearby agronomically important crops. References: (1) I. Bitterlich and L. S. MacDonald. Can. Plant Dis. Surv. 73:137, 1993. (2) R. J. Holguín-Peña and E. O. Rueda-Puente. Plant Dis. 91:1682, 2007. (3) C. R. Wilson. Plant Pathol. 47:171, 1998.


Author(s):  
Fatma Şafak ◽  
Muharrem Arap Kamberoğlu

This study was conducted in order to detect Tomato spotted wilt virus (TSWV), Irish yellow spot virus (IYSV) and Impatients necrotic spot virus (INSV) in ornamental plants growing in hobby gardens and landscaping areas in Adalar district (Büyükada, Heybeliada, Kınalıada and Burgazada) of Istanbul province between 2015 and 2016. During the surveys carried out in that district, the samples were collected from both simptomatologically suspicious ornamental plants and the plants which did not show any symptoms. All of the collected samples (n=150) were firstly tested by Double Antibody Sandwich (DAS) ELISA and none of the samples were found to be infected with TSWV and INSV. The samples detected to be positive with IYSV by ELISA tests were then used in RT-PCR studies. At the RT-PCR using the IYSV-465c; IYSV-239f primer pair, a band with a size of 240 bp was observed for Pittosporum tobira and Hydrangea macrophylla. Therefore, the presence of IYSV infection in Adalar was also confirmed molecularly.


2019 ◽  
Vol 10 (6) ◽  
pp. 1449-1455
Author(s):  
Guadalupe Rios Dominguez ◽  
Martha Lidya Salgado Siclán ◽  
Carlos Aguilar Ortigoza ◽  
Jesus Gaudencio Aquíno Martínez ◽  
Jose Francisco Rámirez Davila
Keyword(s):  
Rt Pcr ◽  

A la fecha, se reportan más de 231 virus capaces de ser transmitidos por semilla de manera externa o interna, esta transmisión constituye uno de los factores más importantes en el desarrollo epidemiológico de enfermedades de origen viral de precoz infección. El virus marchitez manchada del tomate tomato spot wilt orthotospovirus (TSWV), Orthotospoviridae) afecta a más de 900 familias de plantas incluyendo solanáceas, su principal transmisión es por insectos vectores como los trips, sin embargo, poco se conoce de su posible transmisión a través de semilla. El objetivo del presente trabajo fue determinar la posible trasmisión del TSWV por semilla de plantas de jitomate infectadas empleando técnicas serológicas y RT-PCR en su detección. Se colectaron frutos de jitomate provenientes de plantas infectadas de manera natural con TSWV previamente analizadas por Das-Elisa y positivas al virus de cuatro regiones del Estado de México. Posteriormente, se extrajeron las semillas de los frutos enfermos, a un grupo se les realizó la detección del virus por Das-Elisa en embrión y testa y el otro grupo de semillas se desarrollaron en cultivo in vitro por 15 días. Una vez obtenidas las plántulas, se llevó a cabo la extracción de ARN y la RT-PCR, usando los oligos específicos a la nucleocápside. Los análisis de embrión, semilla y plántulas in vitro con Das- Elisa y RT-PCR (respectivamente) resultaron ser negativos a TSWV en las muestras tratadas. Al parecer no existe infección por el virus en embrión, testa y plántulas in vitro de jitomate.


2020 ◽  
Author(s):  
Angelo Virgilio Paradiso ◽  
Simona De Summa ◽  
Daniela Loconsole ◽  
Vito Procacci ◽  
Anna Sallustio ◽  
...  

BACKGROUND Real-time polymerase chain reaction (RT-PCR) testing for the identification of viral nucleic acid is the current standard for the diagnosis of SARS-CoV-2 infection, but technical issues limit its utilization for large-scale screening. Serological immunoglobulin M (IgM)/IgG testing has been proposed as a useful tool for detecting SARS-CoV-2 exposure. OBJECTIVE The objective of our study was to compare the results of the rapid serological VivaDiag test for SARS-CoV-2–related IgM/IgG detection with those of the standard RT-PCR laboratory test for identifying SARS-CoV-2 nucleic acid. METHODS We simultaneously performed both serological and molecular tests with a consecutive series of 191 symptomatic patients. The results provided by a new rapid serological colorimetric test for analyzing IgM/IgG expression were compared with those of RT-PCR testing for SARS-CoV-2 detection. RESULTS Of the 191 subjects, 70 (36.6%) tested positive for SARS-CoV-2 based on RT-PCR results, while 34 (17.3%) tested positive based on serological IgM/IgG expression. Additionally, 13 (6.8%) subjects tested positive based on serological test results, but also tested negative based on RT-PCR results. The rapid serological test had a sensitivity of 30% and a specificity of 89% compared to the standard RT-PCR assay. Interestingly, the performance of both assays improved 8 days after symptom appearance. After 10 days had passed since symptom appearance, the predictive value of the rapid serological test was higher than that of the standard molecular assay (proportion of positive results: 40% vs 20%). Multivariate analysis showed that age &gt;58 years <i>(P</i>&lt;.01) and period of &gt;15 days after symptom onset (<i>P</i>&lt;.02) were significant and independent factors associated with serological test positivity. CONCLUSIONS The rapid serological test analyzed in this study seems limited in terms of usefulness when diagnosing SARS-CoV-2 infection. However, it may be useful for providing relevant information on people’s immunoreaction to COVID-19 exposure.


2006 ◽  
Vol 12 (2) ◽  
pp. 139-143 ◽  
Author(s):  
Jeom-Deog Cho ◽  
Jeong-Soo Kim ◽  
Hyun-Ran Kim ◽  
Bong-Nam Chung ◽  
Ki-Hyun Ryu

Plant Disease ◽  
2013 ◽  
Vol 97 (9) ◽  
pp. 1258-1258 ◽  
Author(s):  
B. Dikova ◽  
N. Petrov ◽  
A. Djourmanski ◽  
H. Lambev

The Siberian plant Leuzea carthamoides or maral root was introduced to Europe as a medicinal crop. Tomato spotted wilt virus (TSWV), genus Tospovirus, family Bunyaviridae, caused a harmful outbreak on L. carthamoides in central Bulgaria near the town of Kazanluk in 2009. In 2011, TSWV was identified on young sprouts from the rootages of L. carthamoides in the same place near the town of Kazanluk, Bulgaria, by means of indicator (test) plants, double antibody sandwich (DAS)-ELISA, and reverse transcription (RT)-PCR. Disease symptoms were small yellow spots on the young leaves grown from the tested sprouts and distortions of the leaf lamina. The old leaves had large yellow spots and necrosis, without deformations. Most of those L. carthamoides plants with such symptoms died in the second and third year. The number of the plants in the plantations decreased 20 to 40% during the 3-year period and some of these losses were from the virus disease except the environment conditions. DAS-ELISA was carried out with polyclonal TSWV antiserum of LOEWE Biochemica, GmbH, Germany. We obtained positive extinction values ODλ 405nm 0.358 ± 0.091 compared to the negative 0.053 ± 0.016 and the positive control 0.510 at a confidential interval at P ≤ 0.05. TSWV symptoms were observed on the following indicator plants according to Antignus et al. (1) and DPV/412 (2): Chenopodium quinoa, Cucumis sativus, Datura stramonium, Nicotiana glutinosa, N. rustica, N. tabacum cv. Samsun NN, and Petunia hybrida. TSWV caused on C. quinoa and on cotyledons of C. sativus cv. Delikates local chlorotic lesions only. In this TSWV differed from CMV because CMV caused systemic mosaic symptoms. Local small necrotic lesions and no systemic symptoms were observed on P. hybrida. We noticed systemic symptoms caused from TSWV on D. stramonium, N. glutinosa, N. rustica, and N. tabacum cv. Samsun NN. The systemic symptoms were chlorotic spots, concentric ring spots, and line patterns proceeding to necrosis. RT-PCR, adapted by Mumford et al. (3), was carried out on samples of L. carthamoides. Oligonucleotide primer sequences were used in accordance with Mumford et al. (3). The DNA fragment was visualized by UV trans-illumination. A fragment of the TSWV genome with a length of 276 base pairs was found in three young L. carthamoides leaf samples taken from the sprouts (marker 100 bp). The PCR fragment was sequenced and deposited to NCBI with GenBank Accession No. KC918808. PCR master mix without RNA template was used as a negative control. L. carthamoides is a newly established TSWV host in the world. To our knowledge, this is the first report of TSWV in L. carthamoides identified by RT-PCR. References: (1) Y. Antignus et al. Phytoparasitica 25:319, 1997. (2) R. Kormelink. Descriptions of Plant Viruses, p. 412, 2005. (3) R. A. Mumford et al. J. Virol. Methods 57:109, 1996.


10.2196/19152 ◽  
2020 ◽  
Vol 22 (10) ◽  
pp. e19152
Author(s):  
Angelo Virgilio Paradiso ◽  
Simona De Summa ◽  
Daniela Loconsole ◽  
Vito Procacci ◽  
Anna Sallustio ◽  
...  

Background Real-time polymerase chain reaction (RT-PCR) testing for the identification of viral nucleic acid is the current standard for the diagnosis of SARS-CoV-2 infection, but technical issues limit its utilization for large-scale screening. Serological immunoglobulin M (IgM)/IgG testing has been proposed as a useful tool for detecting SARS-CoV-2 exposure. Objective The objective of our study was to compare the results of the rapid serological VivaDiag test for SARS-CoV-2–related IgM/IgG detection with those of the standard RT-PCR laboratory test for identifying SARS-CoV-2 nucleic acid. Methods We simultaneously performed both serological and molecular tests with a consecutive series of 191 symptomatic patients. The results provided by a new rapid serological colorimetric test for analyzing IgM/IgG expression were compared with those of RT-PCR testing for SARS-CoV-2 detection. Results Of the 191 subjects, 70 (36.6%) tested positive for SARS-CoV-2 based on RT-PCR results, while 34 (17.3%) tested positive based on serological IgM/IgG expression. Additionally, 13 (6.8%) subjects tested positive based on serological test results, but also tested negative based on RT-PCR results. The rapid serological test had a sensitivity of 30% and a specificity of 89% compared to the standard RT-PCR assay. Interestingly, the performance of both assays improved 8 days after symptom appearance. After 10 days had passed since symptom appearance, the predictive value of the rapid serological test was higher than that of the standard molecular assay (proportion of positive results: 40% vs 20%). Multivariate analysis showed that age >58 years (P<.01) and period of >15 days after symptom onset (P<.02) were significant and independent factors associated with serological test positivity. Conclusions The rapid serological test analyzed in this study seems limited in terms of usefulness when diagnosing SARS-CoV-2 infection. However, it may be useful for providing relevant information on people’s immunoreaction to COVID-19 exposure.


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