Survival of Phytophthora cryptogea and Phytophthora cactorum in Commercial Potting Substrates for Eucalyptus globulus Plants

Author:

Benavent-Celma Clara12,McLaggan Debbie2ORCID,van West Pieter2,Woodward Steve1

Affiliation:

1. Department of Plant and Soil Science, School of Biological Sciences, University of Aberdeen, Aberdeen AB24 3UU, UK

2. International Centre for Aquaculture Research and Development (ICARD), Aberdeen Oomycete Laboratory, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, UK

Abstract

The international plant trade is considered to be the main pathway causing the spread of oomycetes internationally, especially when live plants are accompanied by soil or potting substrates. Modern, rapid shipping technologies, together with inadequate management practices in nurseries, increase the probability of survival of plant pathogens and the subsequent chances of disease outbreaks in new locations. The survival of two oomycete soil-borne pathogens, Phytophthora cryptogea and Phytophthora cactorum, was studied in two different commercial potting substrates (peat-based and peat-free) in the absence of a plant host under simulated nursery conditions in a glasshouse for 21 months. Colony forming units (CFUs) of both pathogens were recovered 21 months after substrate inoculation, with a decrease in CFUs of between 92 and 99%, depending on the pathogen and substrate. Eucalyptus globulus plants were then planted into these inoculated pots. After 21 months, P. cryptogea and P. cactorum remained capable of producing diseases in E. globulus plants, resulting in up to 30% mortality and an up to 5-fold greater disease severity. These results highlight the ability of these pathogens to survive in the absence of a suitable host plant in potting substrates over time and to then have the capacity to infect a plant. This research adds to the body of essential evidence that is required to develop meaningful management practices and potting substrates at the nursery level to minimize the risk of the spread of oomycetes through the international plant trade.

Funder

Marie Curie

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference55 articles.

1. New Insights into the Survival Strategy of the Invasive Soilborne Pathogen Phytophthora Cinnamomi in Different Natural Ecosystems in Western Australia;Jung;For. Pathol.,2013

2. Previously Unrecorded Low-Temperature Phytophthora Species Associated with Quercus Decline in a Mediterranean Forest in Eastern Spain;Jung;For. Pathol.,2013

3. Diversity of Phytophthora Species Newly Reported from Japanese Horticultural Production;Rahman;Mycoscience,2015

4. Current Practices and Emerging Possibilities for Reducing the Spread of Oomycete Pathogens in Terrestrial and Aquatic Production Systems in the European Union;Ruba;Fungal Biol. Rev.,2021

5. Existence of Phytophthora Cinnamomi As Chlamydospores and Oospores in Roots and Soil;Mircetich;Phytopathology,1967

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