First report of canker caused by Chrysoporthe austroafricana on the plantation-grown eucalypt Corymbia henryi in South Africa

Author:

Suzuki Hiroyuki12ORCID,Marincowitz Seonju1,Roux Jolanda13,Wingfield Brenda D1,Wingfield Michael J1

Affiliation:

1. Department of Biochemistry, Genetics and Microbiology, Forestry and Agricultural Biotechnology Institute (FABI), University of Pretoria , Lunnon Street Entrance, Hatfield, Pretoria 0083 , South Africa

2. Department of Agro-Food Science, Faculty of Agro-Food Science, Niigata Agro-Food University , 2416 Hiranedai, Tainai, Niigata 959-2702 , Japan

3. Sappi Forests, Research Planning and Nurseries (RPN), Sappi Shaw Research Centre , Tweedie, KwaZulu-Natal 3255 , South Africa

Abstract

Abstract Species of Corymbia are increasingly being tested for plantation establishment in South Africa. During disease surveys in KwaZulu-Natal plantations in 2020, a serious canker disease was found on Corymbia henryi. The cankers were seemingly caused by a fungus belonging to the family Cryphonectriaceae. The aims of the study were to identify the fungus causing the disease, to test its pathogenicity and to determine the genetic diversity of a population of isolates from infected trees. Phylogenetic analyses using sequence data for the internal transcribed spacer, β-tubulin 1 and β-tubulin 2 gene regions showed that the causal agent of the cankers was Chrysoporthe austroafricana. This is the first record of C. austroafricana causing cankers on a Corymbia species. A pathogenicity trial demonstrated that the fungus could infect C. henryi and cause cankers. Fifteen isolates of C. austroafricana were subjected to population genetic analyses using microsatellite markers. Eleven multilocus genotypes (MLGs) were detected. Mating-type distribution was approximately equal (MAT1-1:MAT1-2 = 8:7). The results indicate that a wide diversity of genotypes of C. austroafricana have undergone a host shift to infect C. henryi. This is a similar situation to that observed for Eucalyptus in South Africa and suggests that research efforts will be required to reduce the risk of Cryphonectria canker limiting afforestation using Corymbia species in the future.

Funder

Tree Protection Co-operative Programme

University of Pretoria

Publisher

Oxford University Press (OUP)

Subject

Forestry

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