Root Infection and Systemic Colonization of Maize by Colletotrichum graminicola

Author:

Sukno Serenella A.12,García Verónica M.1,Shaw Brian D.1,Thon Michael R.12

Affiliation:

1. Department of Plant Pathology and Microbiology, Texas A&M University, College Station, Texas 77843

2. Centro Hispano-Luso de Investigaciones Agrarias (CIALE), Departamento de Microbiologia y Genética, Universidad de Salamanca, 37007 Salamanca, Spain

Abstract

ABSTRACT Colletotrichum graminicola is a filamentous ascomycete that causes anthracnose disease of maize. While the fungus can cause devastating foliar leaf blight and stalk rot diseases, little is known about its ability to infect roots. Previously published reports suggest that C. graminicola may infect maize roots and that root infections may contribute to the colonization of aboveground plant tissues, leading to disease. To determine whether C. graminicola can infect maize roots and whether root infections can result in the colonization of aboveground plant tissues, we developed a green fluorescent protein-tagged strain and used it to study the plant root colonization and infection process in vivo. We observed structures produced by other root pathogenic fungi, including runner hyphae, hyphopodia, and microsclerotia. A mosaic pattern of infection resulted from specific epidermal and cortical cells becoming infected by intercellular hyphae while surrounding cells were uninfected, a pattern that is distinctly different from that described for leaves. Interestingly, falcate conidia, normally restricted to acervuli, were also found filling epidermal cells and root hairs. Twenty-eight percent of plants challenged with soilborne inoculum became infected in aboveground plant parts (stem and/or leaves), indicating that root infection can lead to asymptomatic systemic colonization of the plants. Many of the traits observed for C. graminicola have been previously reported for other root-pathogenic fungi, suggesting that these traits are evolutionally conserved in multiple fungal lineages. These observations suggest that root infection may be an important component of the maize anthracnose disease cycle.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference64 articles.

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2. Bayman, P., L. L. Lebron, R. L. Tremblay, and D. J. Lodge. 1997. Variation in endophytic fungi from roots and leaves of Lepanthes (Orchidaceae). New Phytol.135:143-149.

3. Bergstrom, F. B., and G. C. Bergstrom. 1987. Influence of maize growth stage on fungal movement, viability, and rot induction in stalks inoculated with Colletotrichum graminicola. Phytopathology77:115.

4. Bergstrom, G. C., and R. L. Nicholson. 2000. The biology of Colletotrichum graminicola and maize anthracnose, p. 374-394. In D. Prusky, S. Freeman, and M. B. Dickman (ed.), Host specificity, pathology and host pathogen interaction of Colletotrichum. American Phytopathological Society, St. Paul, MN.

5. Bergstrom, G. C., and R. L. Nicholson. 1999. The biology of corn anthracnose—knowledge to exploit for improved management. Plant Dis.83:596-608.

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