New Disease Reports (2013) 28, 14. [http://dx.doi.org/10.5197/j.2044-0588.2013.028.014]
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First outbreak of Chrysanthemum stem necrosis virus (CSNV) on potted Chrysanthemum in Belgium

K. De Jonghe*, S. Morio and M. Maes

*kris.dejonghe@ilvo.vlaanderen.be

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Received: 10 Apr 2013; Published: 17 Nov 2013

Keywords: tospoviruses

In Belgium, potted Chrysanthemum x morifolium cultivation covers about 400 ha, of which 375 ha is in open fields and the remaining portion in glasshouses. This represents nearly half of total European production. Among the most important pests and diseases with a significant impact on chrysanthemum production are the western flower thrips (Frankliniella occidentalis) and spotted wilt (Tomato spotted wilt virusTSWV), for which the thrips acts as a vector. So far, Chrysanthemum stem necrosis virus (CSNV), a distinct member of the genus Tospovirus (Bezerra et al., 1999), has only been described in a limited host range and with a restricted geographical distribution. However, even with limited data available on losses caused by CSNV in its major areas of distribution i.e. Brazil and Japan, the phytosanitary risk to chrysanthemum and tomato crops, in areas where its vector F. occidentalis is known to occur, is considered high. Moreover, while symptoms of CSNV and TSWV are comparable, CSNV-induced disease often develops faster and is more destructive (Bezerra et al., 1999). In October 2012, plants suspected to be virus-infected in showing wilting and having numerous necrotic lesions surrounded by yellow areas, were received from a seasonal chrysanthemum grower, growing under glass in western Belgium. Initially TSWV infection was suspected but the necrotic zones quickly extended to stems (Fig. 1), ultimately killing most of the crop in the case of cvs. Ludo and Jorca Pink (Fig. 2). Losses for the cv. Mirage Yellow (Fig. 3) also grew to more than 50%. Cultivar Miral White and an assorted cultivar mix were also infected, although symptoms remained less severe. Cuttings from all of these cultivars originated from Brazil.

After an initial screen for TSWV with TSWV reagent set (Art. No. 190165, BIOREBA, Switzerland), followed by a CSNV test (AS-0529; DSMZ, Germany), both by DAS-ELISA, further detection and identification of the virus by PCR was based on the nucleocapsid (N) gene sequence. Total RNA was extracted from leaf and stem tissue using a Spectrum Total Plant RNA kit (Sigma-Aldrich, Belgium). The specific CSNV-N5/N3 PCR primers developed by Takeshita et al. (2011) were used to amplify the N gene ORF (approx. 950 bp) and these fragments were cloned (Clonejet PCR cloning kit, Thermo Scientific, Belgium) and sequenced. CSNV infection was confirmed on all sampled plants with symptoms from all five infected cultivars, and no variability was noticed in their respective N gene sequences. The consensus 937 bp sequence of the N gene is available from GenBank (Accession No. KC525102).

Symptomless plants did not test positive for CSNV nor any other tospoviruses. Infected plant material from the cv. Ludo was mechanically inoculated on a series of indicator plants and resulted in symptoms corresponding to those described by Bezerra et al. (1999). RT-PCR on symptomatic indicator plants again confirmed the presence of CSNV. This is the first report of a CSNV outbreak in Europe in 10 years. Previous outbreaks in the Netherlands (Verhoeven et al., 2003), Slovenia (Ravnikar et al., 2003) and UK (Mumford et al., 2003) were all declared eradicated (EPPO, 2005). The infected production facility is now under eradication measures and the virus will remain subject to official control in 2013.

Figure1+
Figure 1: Necrotic lesions on leaves and stem of a CSNV-infected chrysanthemum cv. Miral White (A), cv. Jorca Pink (B) and cv. Ludo Orange (C).
Figure 1: Necrotic lesions on leaves and stem of a CSNV-infected chrysanthemum cv. Miral White (A), cv. Jorca Pink (B) and cv. Ludo Orange (C).
Figure2+
Figure 2: CSNV infected plants of the varieties ‘Jorca Pink’ (left) and ‘Ludo Orange’ (right) in the affected greenhouse. Plants of the mixed variety pots at the back of the picture also tested positive, but symptoms were less severe.
Figure 2: CSNV infected plants of the varieties ‘Jorca Pink’ (left) and ‘Ludo Orange’ (right) in the affected greenhouse. Plants of the mixed variety pots at the back of the picture also tested positive, but symptoms were less severe.
Figure3+
Figure 3: ‘Mirage Yellow’, the fourth of five varieties infected in this CSNV outbreak.
Figure 3: ‘Mirage Yellow’, the fourth of five varieties infected in this CSNV outbreak.

References

  1. Bezerra IC, Resende R de O, Pozzer L, Nagata T, Kormelink R, de Avila AC, 1999. Increase of tospoviral diversity in Brazil with the identification of two new tospovirus species, one from chrysanthemum and one from zucchini. Phytopathology 89, 823-830. [http://dx.doi.org/10.1094/PHYTO.1999.89.9.823]
  2. EPPO, 2005. Data sheets on quarantine pests. Chrysanthemum stem necrosis virus. EPPO Bulletin 35, 409-412.
  3. Mumford RA, Jarvis B, Morris J, Blockley A, 2003. First record of Chrysanthemum stem necrosis virus (CSNV) in the UK. Plant Pathology 52, 779. [http://dx.doi.org/10.1111/j.1365-3059.2003.00888.x]
  4. Ravnikar M, Vozelj N, Mavriè I, Svigelj SD, Zupanèiè M, Petroviè N, 2003. Detection of Chrysanthemum stem necrosis virus and Tomato spotted wilt virus in Chrysanthemum. Abstracts 8th International Congress of Plant Pathology. International Society for Plant Pathology.
  5. Takeshita M, Nagai N, Okuda M, Matsuura S, Okuda S, Furuya N, Tsuchiya K, 2011. Molecular and biological characterization of Chrysanthemum stem necrosis virus isolates from distinct regions in Japan. European Journal of Plant Pathology 131, 9-14. [http://dx.doi.org/10.1007/s10658-011-9797-z ]
  6. Verhoeven JTJ, Roenhorst JW, Cotes I, Peters D, 1996. Detection of a novel tospovirus in Chrysanthemum. Acta Horticulturae 432, 44–51.

To cite this report: De Jonghe K, Morio S, Maes M, 2013. First outbreak of Chrysanthemum stem necrosis virus (CSNV) on potted Chrysanthemum in Belgium. New Disease Reports 28, 14. [http://dx.doi.org/10.5197/j.2044-0588.2013.028.014]

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