Affiliation:
1. Department of Horticulture , Oregon State University , Corvallis , OR
2. USDA-ARS Horticultural Crops Disease and Pest Management Research Unit , Corvallis , OR
Abstract
Abstract
Oregon leads the United States in nursery production of shade trees and is third in deciduous and broadleaf evergreen shrub production. Plant-parasitic nematodes have been implicated in problems with the growth of plants in nurseries and are also of phytosanitary risk. A greenhouse experiment was conducted to evaluate the host status of four trees (Quercus alba, Quercus garryana, Acer campestre, Thuja occidentalis) and two shrubs (Buxus sempervirens, Rhododendron catawbiense) to Meloidogyne incognita, Meloidogyne hapla, and Pratylenchus neglectus. Each plant/nematode treatment was replicated five times, and the experiment was conducted twice. Plants were inoculated with 3,000 eggs of M. incognita or M. hapla and 2,500 individuals of P. neglectus two weeks after planting. After three months, the plants were harvested, and the total density of nematodes in soil and roots for P. neglectus and the total density of second-stage juveniles (J2) in soil and eggs on roots for M. hapla and M. incognita were determined. The final nematode population (Pf) and reproductive factor (RF = Pf/initial population density) were calculated. For M. incognita and M. hapla, all of the ornamental trees and shrubs would be considered as fair to good hosts with RF values > 1. Meloidogyne incognita had the highest Pf (5,234 total J2 and eggs/pot) and RF value (28.4) on A. campestre. For P. neglectus, all of the ornamental trees and shrubs were fair to good hosts, except for B. sempervirens. Buxus sermpervirens was not a host for P. neglectus, with an RF value of almost 0. This is the first report of Q. alba, Q. garryana, and A. campestre as hosts for M. incognita, M. hapla, and P. penetrans. This is also the first report of T. occidentalis and R. catawbiense as hosts for P. penetrans and the non-host status of B. sermpervirens for P. penetrans.
Reference50 articles.
1. Anwar, S. A., and M. V. McKenry. 2010. Incidence and reproduction of Meloidogyne incognita on vegetable crop genotypes. Pakistan Journal of Zoology 42:135–141.
2. Arias, M., Robertson, L., Garcia-Alvarez, A., Arcos, S. C., Escuer, M., Sanz, R., and Mansilla, J. P. 2005. Bursaphelenchus fungivorus (Nematoda: Aphelenchida) associated with Orthotomicus erosus (Coleoptera: Scolitydae) in Spain. Forest Pathology 35:375–383.
3. Azizi, K. 2022. Host preference and population level of Pratylenchoides ritteri on six legume crops. University of Yasouj Plant Pathology Science 11:36–47.
4. Baermann, G. 1917. Eine einfache methode zur auffindung von anklostomum (Nematoden) larven in erdproben. Tijdschr Diergeneeskd 57:131–137.
5. Baird, R., Wood-Jones, A., Varco, J., Watson, C., Starrett, W., Taylor, G., and Johnson, K. 2014. Rhododendron decline in the Great Smoky Mountains and surrounding areas: Intensive site study of biotic and abiotic parameters associated with the decline. Southeastern Naturalist 13:1–25.