Characterisation of an endospore population of Pasteuria that adheres to the plant-parasitic nematode Heterodera schachtii

Author:

Hirschfield Ramona1,Mohan Sharad2ORCID,Davies Keith G.1ORCID

Affiliation:

1. School of Life and Medical Sciences, University of Hertfordshire, College Lane, Hatfield, Hertfordshire AL10 9AB, UK

2. Division of Nematology, Indian Agricultural Research Institute, Pusa Campus, New Delhi 110012, India

Abstract

Summary Selected strains of Pasteuria species from the endospore-forming Gram-positive bacteria group have the potential to be developed into control agents for plant-parasitic nematodes. If Pasteuria is to be deployed successfully as a control agent, endospores of the bacterium initially have to adhere to the cuticle of the infective juvenile. Studies of the bacteria isolated from root-knot nematodes have suggested that collagen-like fibres on the endospore surface interact with a cuticle receptor on the second-stage juvenile through a host specific ‘Velcro-like’ mechanism. However, very little is known regarding the biochemical nature of the mechanism in Pasteuria strains isolated from cyst nematodes. Here, using several polyclonal antibodies raised to whole endospores and to synthetic collagen-like peptides, we compare two Pasteuria populations, one a strain from a root-knot nematode, Meloidogyne javanica, and another from cowpea cyst nematode, Heterodera cajani. We demonstrate that there is differential adhesion of endospores to the beet cyst nematode H. schachtii and that the sugar moieties on the endospore surface may protect the collagen-like fibres on the endospore from proteolytic digestion and be involved in the endospore’s specificity.

Publisher

Brill

Subject

Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics

Reference26 articles.

1. Understanding the interaction between an obligate hyperparasitic bacterium, Pasteuria penetrans and its obligate plant-parasitic nematode host, Meloidogyne spp.;Davies, K.G.

2. Cuticle surface coat of plant-parasitic nematodes;Davies, K.G.

3. Carbohydrate/protein interactions between the cuticle of infective juveniles of Meloidogyne incognita and spores of the obligate hyperparasite Pasteuria penetrans;Davies, K.G.

4. Diversity and partial characterization of putative virulence determinants in Pasteuria penetrans, the hyperparasitic bacterium of root-knot nematodes (Meloidogyne spp.);Davies, K.G.

5. Biological control of plant-parasitic nematodes: building coherence between microbial ecology and molecular mechanisms

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