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Featured researches published by Pierre Hellin.


Food Additives and Contaminants Part A-chemistry Analysis Control Exposure & Risk Assessment | 2016

Relationship between Fusarium spp. diversity and mycotoxin contents of mature grains in southern Belgium

Pierre Hellin; Géraldine Dedeurwaerder; Maxime Duvivier; Jonathan Scauflaire; Bart Huybrechts; Alfons Callebaut; Françoise Munaut; Anne Legrève

ABSTRACT Over a 4-year period (2010–13), a survey aiming at determining the occurrence of Fusarium spp. and their relations to mycotoxins in mature grains took place in southern Belgium. The most prevalent species were F. graminearum, F. avenaceum, F. poae and F. culmorum, with large variations between years and locations. An even proportion of mating type found for F. avenaceum, F. culmorum, F. cerealis and F. tricinctum is usually a sign of ongoing sexual recombination. In contrast, an unbalanced proportion of mating type was found for F. poae and no MAT1-2 allele was present in the F. langsethiae population. Genetic chemotyping indicates a majority of deoxynivalenol (DON)-producing strains in F. culmorum (78%, all 3-ADON producers) and F. graminearum (95%, mostly 15-ADON producers), while all F. cerealis strains belong to the nivalenol (NIV) chemotype. Between 2011 and 2013, DON, NIV, enniatins (ENNs) and moniliformin (MON) were found in each field in various concentrations. By comparison, beauvericin (BEA) was scarcely detected and T-2 toxin, zearalenone and α- and β-zearalenols were never detected. Principal component analysis revealed correlations of DON with F. graminearum, ENNs and MON with F. avenaceum and NIV with F. culmorum, F. cerealis and F. poae. BEA was associated with the presence of F. tricinctum and, to a lesser extent, with the presence of F. poae. The use of genetic chemotype data revealed that DON concentrations were mostly influenced by DON-producing strains of F. graminearum and F. culmorum, whereas the concentrations of NIV were influenced by the number of NIV-producing strains of both species added to the number of F. cerealis and F. poae strains. This study emphasises the need to pay attention to less-studied Fusarium spp. for future Fusarium head blight management strategies, as they commonly co-occur in the field and are associated with a broad spectrum of mycotoxins. GRAPHICAL ABSTRACT


Pest Management Science | 2017

Sensitivity of Fusarium culmorum to triazoles: impact of trichothecene chemotypes, oxidative stress response and genetic diversity

Pierre Hellin; Jonathan Scauflaire; Viviane Van Hese; Françoise Munaut; Anne Legrève

BACKGROUND Fusarium culmorum is a fungal pathogen occurring worldwide on various weeds and important crops. Triazoles have been shown to be the most effective fungicide for managing Fusarium spp., but little is known about their specific activity on F. culmorum. RESULTS The sensitivity of 107 F. culmorum strains to triazoles was assessed using microtitre plate assays. The EC50 values ranged from 0.14 to 1.53 mg L-1 for tebuconazole and from 0.25 to 2.47 mg L-1 for epoxiconazole. Cross-resistance to both azoles was found (r = 0.61). F. culmorum appeared to be significantly more sensitive than F. graminearum or F. cerealis. No increase in the mean EC50 was observed over time, which might be related to an unfavourable fitness cost, measured here as fungal growth. On average, nivalenol-producing strains of F. culmorum were significantly more resistant than deoxynivalenol-producing strains. The relationship between resistance and chemotype-dependent adaptation to oxidative stress was investigated, but remained unclear. No link between inter-simple sequence repeat (ISSR) genetic diversity and triazole resistance could be established. CONCLUSION Fungicide use might not be a driving force in the evolution of F. culmorum, and the benefit of a resistance trait probably does not outweigh its costs.


Frontiers in Microbiology | 2018

The adaptation of Fusarium culmorum to DMI Fungicides Is Mediated by Major Transcriptome Modifications in Response to Azole Fungicide, Including the Overexpression of a PDR Transporter (FcABC1).

Pierre Hellin; Robert King; Martin Urban; Kim E. Hammond-Kosack; Anne Legrève

Fusarium culmorum is a fungal pathogen causing economically important diseases on a variety of crops. Fungicides can be applied to control this species with triazoles being the most efficient molecules. F. culmorum strains resistant to these molecules have been reported, but the underlying resistance mechanisms remain unknown. In this study, a tebuconazole-adapted F. culmorum strain was developed with a level of fitness similar to its parental strain. The adapted strain showed cross-resistance to all demethylation inhibitors (DMIs), but not to other classes of fungicides tested. RNA-Seq analysis revealed high transcriptomic differences between the resistant strain and its parental strain after tebuconazole treatment. Among these changes, FcABC1 (FCUL_06717), a pleiotropic drug resistance transporter, had a 30-fold higher expression level upon tebuconazole treatment in the adapted strains as compared to the wild-type strain. The implication of this transporter in triazole resistance was subsequently confirmed in field strains harboring distinct levels of sensitivity to triazoles. FcABC1 is present in other species/genera, including F. graminearum in which it is known to be necessary for azole resistance. No difference in FcABC1 sequences, including the surrounding regions, were found when comparing the resistant strain to the wild-type strain. Fusarium culmorum is therefore capable to adapt to triazole pressure by overexpressing a drug resistance transporter when submitted to triazoles and the same mechanism is anticipated to occur in other species.


European Journal of Plant Pathology | 2018

Evaluation of the temporal distribution of Fusarium graminearum airborne inoculum above the wheat canopy and its relationship with Fusarium head blight and DON concentration

Pierre Hellin; Maxime Duvivier; Géraldine Dedeurwaerder; Charlotte Bataille; Michel De Proft; Anne Legrève

With the aim of unravelling the role of airborne Fusarium graminearum inoculum in the epidemic of Fusarium head blight (FHB) caused by this species in wheat spikes, a network of Burkard air samplers was set up in five wheat fields distributed in Belgium from 2011 to 2013. Each year from April to July, the daily amounts of F. graminearum inoculum above the wheat canopy were quantified using a newly developed TaqMan qPCR assay. The pattern of spore trapping observed was drastically different per year and per location with a frequency of detection between 9 and 66% and a mean daily concentration between 0.8 and 10.2 conidia-equivalent/m3. In one location, air was sampled for a whole year. Inoculum was frequently detected from the wheat stem elongation stage until the end of the harvesting period, but high inoculum levels were also observed during the fall. Using a window-pane analysis, different periods of time around wheat flowering (varying in length and starting date) were investigated for their importance in the relation between airborne inoculum and FHB parameters (FHB severity, frequency of F. graminearum infection and DON). For almost all the combinations of variables, strong and significant correlations were found for multiple window lengths and starting times. Inoculum quantities trapped around flowering were highly correlated with F. graminearum infection (up to R = 0.84) and DON (up to R = 0.9). Frequencies of detection were also well correlated with both of these parameters. DON concentrations at harvest could even be significantly associated with the F. graminearum inoculum trapped during periods finishing before the beginning of the anthesis (R = 0.77). Overall, these results highlight the key role of the airborne inoculum in F. graminearum epidemics and underline the importance of monitoring it for the development of disease forecasting tools.


European Journal of Plant Pathology | 2014

Detection of Fusarium langsethiae on wheat in Belgium

Géraldine Dedeurwaerder; Julien Ghysselinckx; Pierre Hellin; Frédéric Janssen; Maxime Duvivier; Anne Legrève


The 31 st Meeting of the Fusarium working group of the Koninklijke Nederlandse Plantenziektekundige Vereniging | 2016

New insight on the molecular mechanisms conferring resistance to DMI fungicides in Fusarium culmorum

Pierre Hellin; Anne Legrève


Livre blanc céréales | 2016

Fusarium culmorum en wallonie : prévalence et résistance d'une espèce à conséquence agro-économique

Pierre Hellin; Anne Legrève


Communications in agricultural and applied biological sciences | 2015

Fusarium head blight symptom discrimination : a useful tool in the field evaluation of fungicide treatments

Pierre Hellin; Maxime Duvivier; Géraldine Dedeurwaerder; Charlotte Bataille; Guillaume Jacquemin; Anne Chandelier; Anne Legrève


13th European Fusarium Seminar | 2015

Differences in sensitivity of Fusarium culmorum towards triazoles and relation with trichothecene chemotypes

Pierre Hellin; Jonathan Scauflaire; Françoise Munaut; Anne Legrève


66th International Symposium on Crop Protection | 2014

Presence of mycotoxins in conjunction with the Fusarium species occurring in Belgian winter wheat fields.

Pierre Hellin; Géraldine Dedeurwaerder; Maxime Duvivier; Bart Huybrechts; Alfons Callebaut; Anne Legrève

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Anne Legrève

Université catholique de Louvain

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Géraldine Dedeurwaerder

Université catholique de Louvain

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Françoise Munaut

Université catholique de Louvain

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Jonathan Scauflaire

Université catholique de Louvain

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Julien Ghysselinckx

Université catholique de Louvain

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Viviane Van Hese

Université catholique de Louvain

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Frédéric Janssen

Université catholique de Louvain

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Marie-Eve Renard

Université catholique de Louvain

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