scholarly journals Tomato Chlorotic Spot Virus

EDIS ◽  
2013 ◽  
Vol 2013 (6) ◽  
Author(s):  
Jane E. Polston ◽  
Erin Wood ◽  
Aaron J. Palmateer ◽  
Shouan Zhang

Tomato chlorotic spot virus (TCSV) is a tospovirus, similar to but distinct from other tospoviruses currently present in Florida. Like these viruses, TCSV is transmitted by thrips and is able to replicate in both the vector and the plant. TCSV was first reported in Florida in 2012 in tomato plants in Miami-Dade and Lee Counties, but it may have been in the state for several years. Prior to 2012, TCSV was only known to occur in Brazil and Argentina. It is not known how this virus was introduced into Florida. This 5-page fact sheet was written by Jane E. Polston, Erin Wood, Aaron J. Palmateer, and Shouan Zhang, and published by the UF Department of Plant Pathology, May 2013. http://edis.ifas.ufl.edu/pp306

EDIS ◽  
2009 ◽  
Vol 2009 (1) ◽  
Author(s):  
Gary E. Vallad ◽  
Bielinski M. Santos ◽  
Jane E. Polston ◽  
David J. Schuster ◽  
Andrew W. MacRae ◽  
...  

PP259, a 2-page illustrated fact sheet by Gary E. Vallad, Bielinski M. Santos, Jane E. Polston, David J. Schuster, Andrew W. MacRae, Jeremy D. Edwards, and John W. Scott, describes this disorder, TPLD, observed in tomato fields in Hillsborough, Manatee, and Miami-Dade counties since 2006 — symptoms and field distribution, and the state of current research into the disorder. Published by the UF Department of Plant Pathology, November 2008. PP259/PP259: Tomato Purple Leaf Disorder: A New Challenge for the Tomato Industry in Florida (ufl.edu)


EDIS ◽  
2013 ◽  
Vol 2013 (5) ◽  
Author(s):  
E. Vanessa Campoverde ◽  
Aaron J. Palmateer

In the summer of 2010, leaf blight cases were reported on several Ficus elastica cultivars in Homestead nurseries. Symptoms somewhat resembled those caused by Xanthomonas campestris p.v. fici, but this pathogen has never been reported to occur on Ficus elastica. The outbreak was severe, and the majority of commercial producers in the southern portion of the state were affected. The widespread outbreak from 2010 to date has caused many nurseries to lose entire Ficus elastica crops. This 3-page fact sheet describes the symptoms and disease management recommendations. Written by E. V. Campoverde and A. J. Palmateer, and published by the UF Department of Plant Pathology, April 2013. http://edis.ifas.ufl.edu/pp305


EDIS ◽  
2011 ◽  
Vol 2011 (8) ◽  
Author(s):  
Eugene McAvoy ◽  
Scott Adkins ◽  
Craig Webster ◽  
Charles Mellinger ◽  
Loren Horsman ◽  
...  

Groundnut ringspot virus was recently identified in tomatoes in South Florida — the first report in the United States. It can infect tomato plants at all stages of growth and lead to unmarketable fruits or plant death. This 4-page fact sheet shares what is known about the symptoms, host range, disease transmission, and management. Written by Eugene McAvoy, Scott Adkins, Craig Webster, Charles Mellinger, Loren Horsman, Galen Frantz, Stuart Reitz, and Shouan Zhang, and published by the UF Department of Plant Pathology, July 2011.


Plant Disease ◽  
2014 ◽  
Vol 98 (2) ◽  
pp. 286-286 ◽  
Author(s):  
O. Batuman ◽  
M. R. Rojas ◽  
A. Almanzar ◽  
R. L. Gilbertson

Processing tomatoes (Solanum lycopersicum) are an important industry in the Dominican Republic. In November 2012, symptoms typical of tospovirus infection (bronzing, chlorosis, and necrosis of leaves) appeared in numerous processing tomato fields in the North (>50% incidence in some fields) and a few fields in the South (<1% incidence). Plants in affected fields had large populations of thrips on leaves and in flowers. Symptomatic leaves from four fields in the North (Guayubin, Juan Gomez, Hatillo Palma, and Navarrete) and one field in the South (Azua) were positive for infection by Tomato spotted wilt virus (TSWV) when tested with AgDia immunostrips. However, RT-PCR tests of these samples with a TSWV N gene primer pair (1) were negative, whereas the expected size 590 and 777 bp fragments were amplified with N gene primers for Groundnut ringspot virus (GRSV, 2) and Tomato chlorotic spot virus (TCSV; NF5′ATGTCTAAGGTCAAGCTCACC3′ and NR5′TTATGCAACACCTGAAATTTTGGC3′), respectively. These fragments were sequenced (KF420087 and KF420088) and comparisons revealed 99, 83, and 80% identities with N gene sequences of TCSV, GRSV, and TSWV, respectively. Portions of the L, M, and S RNAs were amplified from symptomatic leaves by RT-PCR with degenerate L (TOSPO L For: CWGARGATRTDATWATAAATAAYAATGC and TOSPO L Rev: GCATCNACAGAWATYTTCCA), M (TOSPO M For: AGAGCAATCAGTGCATC and TOSPO M Rev: CTTRCAGGCTTCAATRAAKGC), and S (3) primers. The expected L, M, and S RNA fragments of 450, 849, and 871 bp, respectively, were amplified and sequenced (KF420089, KF420090, and KF420091). Sequence comparisons revealed 98, 83, and 78%; 99, 94, and 82%; and 99, 83, and 77% identities with TCSV-, GRSV-, and TSWV-L, M, and S RNA sequences, respectively. Weed surveys around tomato fields revealed tospovirus symptoms (chlorosis, mosaic/mottle, and necrosis) in leaves of two common species, Boerhavia erecta and Cleome viscosa. Symptomatic leaves were positive with TSWV immunostrips, whereas RT-PCR and sequence analyses of these leaves from C. viscosa (one each from the North and South) and B. erecta (one from the South) revealed infection with TCSV (99% identities for L, M, and S RNA fragments). In contrast, leaves from pepper plants with tospovirus symptoms (chlorosis, ringspots, and necrosis) in a commercial greenhouse in the North (Villa Gonzales) were positive for TSWV based on immunostrips and RT-PCR and sequence analyses. Dot blot hybridization tests with the cloned TCSV L RNA fragment confirmed TCSV infection in PCR-positive tomato plants and weeds, whereas no hybridization signal was detected for TSWV-infected peppers or uninfected tomatoes. Identification of thrips collected from symptomatic tomato plants at Navarrete and Hatillo Palma revealed that tomato thrips (Frankliniella schultzei) was predominant (90%) along with Western flower thrips (F. occidentalis) (10%), whereas only F. schultzei was identified from weeds in the South. Thus, TCSV is causing the tospovirus disease of processing tomato, and this is the first report of this virus in the Dominican Republic. This is also consistent with F. schultzei being an efficient vector of TCSV. An IPM program for TCSV based on planting thrips- and virus-free transplants and resistant varieties, roguing symptomatic plants, thrips monitoring and management, and area-wide sanitation is being implemented. References: (1) H. R. Pappu et al. Tobacco Sci. 40:74, 1996. (2) C. G. Webster et al. Virol. 413:216, 2011. (3) R. J. Weeks et al. Acta Hort. 431:159, 1996.


EDIS ◽  
2017 ◽  
Vol 2017 (4) ◽  
Author(s):  
Keith W. Wynn ◽  
Nicholas S. Dufault ◽  
Rebecca L. Barocco

This ten-page fact sheet includes a summary of various fungicide spray programs for fungal disease control of early leaf spot, late leaf spot, and white mold/stem rot of peanut in 2012-2016 on-farm trials in Hamilton County. Written by K.W. Wynn, N.S. Dufault, and R.L. Barocco and published by the Plant Pathology Department.http://edis.ifas.ufl.edu/pp334


1999 ◽  
Vol 89 (9) ◽  
pp. 823-830 ◽  
Author(s):  
I. C. Bezerra ◽  
R. de O. Resende ◽  
L. Pozzer ◽  
T. Nagata ◽  
R. Kormelink ◽  
...  

During a survey conducted in several different regions of Brazil, two unique tospoviruses were isolated and characterized, one from chrysanthemum and the other from zucchini. The chrysanthemum virus displayed a broad host range, whereas the virus from zucchini was restricted mainly to the family Cucurbitaceae. Double-antibody sandwich-enzyme-linked immunosorbent assay and western immunoblot analyses demonstrated that both viruses were serologically distinct from all reported tospovirus species including the recently proposed peanut yellow spot virus and iris yellow spot virus (IYSV) species. The nucleotide sequences of the nucleocapsid (N) genes of both viruses contain 780 nucleotides encoding for deduced proteins of 260 amino acids. The N proteins of these two viruses displayed amino acid sequence similarities with the previously described tospovirus species ranging from 20 to 75%, but they were more closely related to each other (80%). Based on the biological and molecular features, these viruses are proposed as two new tospovirus species, designated chrysanthemum stem necrosis virus (CSNV) and zucchini lethal chlorosis virus (ZLCV). With the identification of CSNV and ZLCV, in addition to tomato spotted wilt virus, groundnut ring spot virus, tomato chlorotic spot virus, and IYSV, Brazil harbors the broadest spectrum of tospovirus species reported.


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).


2012 ◽  
Vol 37 (5) ◽  
pp. 333-338 ◽  
Author(s):  
Aurora Londoño ◽  
Heather Capobianco ◽  
Shouan Zhang ◽  
Jane E. Polston

2017 ◽  
Vol 18 (1) ◽  
pp. 17-18 ◽  
Author(s):  
Consuelo Estévez de Jensen ◽  
Ismael E. Badillo-Vargas ◽  
Galen Frantz ◽  
H. Charles Mellinger ◽  
William W. Turechek ◽  
...  

Tomato chlorotic spot virus (TCSV) has recently been detected in tomato, bell pepper, jimsonweed, and lettuce in Puerto Rico. Observations of weeds and additional crops in 2015 and 2016 revealed TCSV-like symptoms. Testing of these symptomatic plants identified three new hosts of TCSV in Puerto Rico: erect spiderling (Boerhavia erecta); Asian spiderflower (Cleome viscosa); and sweet chili pepper (Capsicum chinense).


2015 ◽  
Vol 16 (1) ◽  
pp. 29-30 ◽  
Author(s):  
Carlye A. Baker ◽  
Scott Adkins

To the best of our knowledge, this is the first report of TCSV infection of H. wayetii and S. truncata from any location, although other tospoviruses are known to infect these and related plant species. The identification of these two diverse plant species as the first reported natural ornamental hosts of TCSV has implications for TCSV epidemiology and management in ornamental and vegetable crops, which frequently share production space. Accepted by publication 15 January 2015. Published 25 February 2015.


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