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Selection: Gonthier:P [4 articles] 

Publications by author Gonthier:P.
 

Pest categorisation of Pseudocercospora pini-densiflorae

  
EFSA Journal, Vol. 15, No. 11. (November 2017), e05029, https://doi.org/10.2903/j.efsa.2017.5029

Abstract

Following a request from the European Commission, the EFSA Plant Health (PLH) Panel performed a pest categorisation of Pseudocercospora pini-densiflorae, a well-defined and distinguishable fungal species of the family Mycosphaerellaceae. The regulated harmful organism is the anamorph Cercoseptoria pini-densiflorae (synonym Cercospora pini-densiflorae) with the corresponding teleomorph Mycosphaerella gibsonii. P. pini-densiflorae causes a needle blight of Pinus spp. also known as Cercospora blight of pines or Cercospora needle blight. P. pini-densiflorae is reported from sub-Saharan Africa, Central and South America, Asia and ...

References

  1. Anon, 2015. PM 7/46 (3) Lecanosticta acicola (formerly Mycosphaerella dearnessii), Dothistroma septosporum (formerly Mycosphaerella pini) and Dothistroma pini. EPPO Bulletin 45, 163–182.
  2. Bossard, M., Feranec, J., Otahel, J., 2000. CORINE land cover technical guide - addendum 2000. Tech. Rep. 40, European Environment Agency. https://www.eea.europa.eu/ds_resolveuid/032TFUPGVR .
  3. Büttner, G., Kosztra, B., Maucha, G., Pataki, R., 2012. Implementation and achievements of CLC2006. Tech. rep., European Environment Agency. http://www.eea.europa.eu/ds_resolveuid/GQ4JECM8TB .
 

Pest categorisation of Gremmeniella abietina

  
EFSA Journal, Vol. 15, No. 11. (November 2017), e05030, https://doi.org/10.2903/j.efsa.2017.5030

Abstract

Following a request from the European Commission, the EFSA Plant Health (PLH) Panel performed a pest categorisation of Gremmeniella abietina, a well-defined species and distinguishable fungus of the family Godroniaceae. The species G. abietina includes several varieties, races and biotypes that are found in different geographical locations, on different hosts and that vary in aggressiveness. The pathogen causes diseases on Pinus species and other conifers such as Abies spp., Picea spp., Larix spp. and Pseudotsuga spp. known as Scleroderris canker in ...

References

  1. Ahlqvist, B., Karlman, M., Witzell, J., 1996. Gremmeniella-infected Pinus contorta as raw material in the production of kraft pulp. European Journal of Forest Pathology 26, 113–121.
  2. Anon, 2009. PM 7/92(1): Gremmeniella abietina. EPPO Bulletin 39, 310–317.
  3. Barbeito, I., Brücker, R., Rixen, C., Bebi, P., 2013. Snow fungi-induced mortality of Pinus cembra at the alpine treeline: evidence from plantations. Arctic, Antarctic, and Alpine Research 45, 455–470.
  4. Bernhold, A., Witzell,
 

Characterization of fungal communities associated with the bark beetle Ips typographus varies depending on detection method, location, and beetle population levels

  
Mycological Progress In Mycological Progress, Vol. 12, No. 1. (11 May 2013), pp. 127-140, https://doi.org/10.1007/s11557-012-0822-1

Abstract

The Eurasian spruce bark beetle Ips typographus and their fungal associates can cause severe damage to Norway spruce forests. In this paper, by using both molecular and cultural methods, we compared fungal assemblages on bark beetles from different locations, characterized by different beetle population levels. Ips typographus was trapped in the western Alps in two outbreak and in two control areas. Sequencing of clone libraries of Internal Transcribed Spacer (ITS) identified 31 fungal Operational Taxonomic Units (OTUs), while fungal isolations yielded ...

 

Emerging plant diseases:combining genotypic and phenotypicdata to improve our predictions ofinvasive pathogens

  
In EFSA's 16th Scientific Colloquium on emerging risks in plant health: from plant pest interactions to global change (09 June 2011)

Abstract

While technological advances currently allow to genotype pathogen strains relatively easily, the connection between genotype (the unit of genetic inheritance) and phenotype (the unit upon which selection operates) is complicated by the fact that genetic, environmental, and epigenetic factors are all important contributing factors in phenotype determination. However, the genetic structure of a potentially invasive species can help in at least assessing the complete range of risks it may pose and in determining appropriate precautions that should be taken to ensure ...

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