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Van der Heyden, H.

Publications and source records attributed to Van der Heyden, H..

3 recordsLinked to original sources

Exploring the mycovirome: novel and diverse mycoviruses in Botrytis cinerea

Botrytis cinerea is a necrotrophic fungal pathogen that causes significant economic losses to many crops, including vegetables, fruits, and ornamental plants. The management of B. cinerea is difficult due to a rise in fungicide resistance. Harnessing mycoviruses that cause reduced virulence (hypovirulence) in B. cinerea is a promising alternative. Over 100 mycoviruses have been identified in Botrytis spp. to date, including several hypovirulence-inducing mycoviruses. This research aimed to further explore, for the first time in Canada, the mycovirome of B. cinerea and identify potential hypovirulence-inducing mycoviruses. Isolates of B. cinerea were collected from fruits and vegetables in the province of Quebec. Fitness and pathogenicity criteria, including sclerotia production, colony morphotype, and lesion size were evaluated. A double-stranded RNA (dsRNA) extraction protocol tailored to the detection of mycoviruses was used to sequence dsRNA from 45 isolates with low fitness/pathogenicity, and an in-house bioinformatics workflow was used to profile the mycovirome. Mycoviruses were identified in 44/45 isolates. Most of these had positive single-stranded RNA or dsRNA genomes, and a small number had negative single-stranded RNA, single-stranded DNA, or reverse transcriptase RNA genomes. Following deep analysis of RNA-dependent RNA polymerase and replication initiation proteins, a total of 62 unique contigs were identified belonging to new strains of mycovirus species. Furthermore, four putative novel mycovirus species belonging to Endornaviridae, Botybirnaviridae, Peribunyaviridae, and Bunyavirales taxa were identified. Several mycovirus species positively and/or negatively co-occurred with B. cinerea isolates collected from strawberry or raspberry. This study revealed a high degree of diversity in the mycovirome of B. cinerea. Species accumulation curve analysis indicated that, with the number of isolates characterized, we were unable to capture the full extent of expected diversity. Nevertheless, we identified potential hypovirulence-inducing mycoviruses, including Botrytis cinerea mitovirus 1, Botrytis cinerea hypovirus 1, and Botrytis porri botybirnavirus 1. Some of these novel mycoviruses belonged to taxa known to produce viral particles, which can be an interesting feature for their use as biocontrol agents (BCA). ImportanceThis study provides the first comprehensive profiling of mycoviruses infecting Botrytis cinerea in Canada, a significant step in understanding how these viruses can naturally limit crop disease. Due to growing resistance against conventional fungicides, new biological methods to control B. cinerea are crucial. By profiling mycoviruses in fungal samples collected in Quebec, we identified several novel viruses that appear to reduce the pathogenicity of B. cinerea. These viruses, known as hypovirulence-inducing mycoviruses, could be used to develop biocontrol agents (BCA), offering a more sustainable disease management alternative. Notably, we found virus families with extracellular potential, which may enable easier application as BCAs in agriculture. This research not only broadens the understanding of fungal virology but also holds promise for innovative, eco-friendly approaches to managing Botrytis cinerea in Canada.

genomics↗

A qPCR assay for the detection of Phytophthora abietivora, an emerging pathogen on fir species cultivated as Christmas trees

Emerging species of the Phytophthora genus are among the most important threats to global plant biodiversity. For instance, Phytophthora root rot (PRR) of Christmas trees is responsible for 10% of the observed mortality rate in nurseries. Diagnosis of PRR involves isolation followed by morphological and molecular identification of the causal agents. However, these methods are rarely adapted to larger scale experiments such as in situ detection. For these applications, molecular detection of environmental DNA (eDNA) provides the high-throughput and the fast result generation needed. Phytophthora abietivora was associated to PRR in firs cultivated as Christmas trees in the province of Quebec (Canada). This study focused on developing a sensitive and specific qPCR assay targeting P. abietivora and validating its efficiency on eDNA samples. A set of primers and probe was designed for this assay, and parameters such as the limit of detection (LoD95%) and limit of quantification (LoQ) were measured. The assay was tested on eDNA obtained from healthy-looking and PRR symptomatic firs. The assay was shown to be semi-specific because it cross-reacted with P. abietivora, and four phylogenetically close species unrelated to fir diseases. The limit of detection (LOD95%) was estimated at 10 copies per reaction (Cq of 35.7). The assay showed reliable detection down to 33 P. abietivora oospores per gram of soil. Out of 488 eDNA samples from soil, 68 tested positive for P. abietivora. While factors such as the tree species, the sampled region or the year of sampling did not affect the proportion of positive results, samples from trees showing PRR-like symptoms had significantly higher odds of testing positive compared to healthy-looking trees. This assay will be useful for rapid diagnostics of P. abietivora infected trees and as a prospecting tool to better characterize the natural distribution and dissemination of the disease.

molecular biology↗

Survey of the Phytophthora species diversity reveals P. europaea-like isolates as Phytophthora root rot pathogens in Quebec Christmas tree plantations

Christmas trees are an economically and culturally important ornamental plant in North America. Many microorganisms are pathogens of firs cultivated as Christmas trees. Among those, Phytophthora causes millions of dollars in damage to plantations annually. In Canada, it is still not known which species are responsible for Phytophthora root rot (PRR) of cultivated Abies species. Between 2019 and 2021, soil and root samples were collected from 40 Christmas tree plantations in Quebec province. We used soil baiting and direct root isolation to assess the diversity of culturable Phytophthora spp. The obtained isolates were identified with a multi-locus sequencing approach, and we used the sequencing data to place them along the Phytophthora phylogeny. A total of 44 isolates from six different Phytophthora species were identified, one fitting the provisional species P. sp.{square}kelmania{square}. A seventh taxa, represented by a group of 10 isolates, could not be assigned to any known Phytophthora species. Among the known species, Phytophthora abietivora was the most prevalent isolated species associated with PRR. Pathogenicity trials confirmed the pathogenicity potential of P. abietivora on both Fraser and balsam fir seedlings. Our studies provide a first snapshot of the Phytophthora diversity in Quebecs Christmas tree productions and describe multiple potential first associations between Phytophthora species and Abies balsamea and A. fraseri.

microbiology↗