APOMICTIC, POLYPHAGOUSROOT-KNOTNEMATODES: Exceptionally Successful and Damaging Biotrophic Root Pathogens
Top Cited Papers
- 1 September 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Phytopathology
- Vol. 39 (1) , 53-77
- https://doi.org/10.1146/annurev.phyto.39.1.53
Abstract
▪ Abstract Most apomictic root-knot nematodes (RKN; Meloidogyne spp.) have host ranges that encompass the majority of flowering plants, and M. incognita is possibly the world's most damaging crop pathogen. The ancestors, age, and origins of the polyphagous RKN are obscure, but there is increasing evidence that M. incognita, M. javanica, and M. arenaria are closely related, heterogeneous species with a recent, hybrid (reticulate) origin. If so, they must owe much of their current worldwide distributions to spread by agriculture. Host resistance appears to be generally durable in the field, but laboratory studies suggest that apomixis does not prevent evolution in response to selection by a parasitic bacterium (Pasteuria penetrans) and host resistance. Maintaining general fitness may be the evolutionary priority for most populations of polyphagous RKN, and a wide host range, important in the field but not in the laboratory, may be conserved by apomixis. Several factors may help confer a wide host range, including suppression of host resistance, perhaps as a consequence of the strength of the induced susceptible response. Resistance genes effective against RKN appear not to have resulted from coevolution. Rates of juvenile invasion and/or development are low in many wild and some crop plants, with the result that they are both poor hosts and sustain less damage. Overall, it is suggested that greater coordination, particularly of fundamental research, is required.Keywords
This publication has 65 references indexed in Scilit:
- Biotic interactions: Genomics and coevolutionCurrent Opinion in Plant Biology, 2000
- Divergence of the CytochromebGene in theLacerta raddeiComplex and Its Parthenogenetic Daughter Species: Evidence for Recent Multiple OriginsIchthyology & Herpetology, 2000
- Plant nematode resistance genesCurrent Opinion in Plant Biology, 1999
- Selection forMeloidogyne incognita virulence against resistance genes from tomato and pepper and specificity of the virulence/resistance determinantsEuropean Journal of Plant Pathology, 1996
- Clonal variation in the parthenogenetic rock lizardLacerta armeniacaGenome, 1995
- Conceptual and Practical Aspects of Variability in Root-Knot Nematodes Related to Host Plant ResistanceAnnual Review of Phytopathology, 1995
- Genetic variation inMeloidogyne incognita virulence against the tomatoMi resistance gene: evidence from isofemale line selection studiesTheoretical and Applied Genetics, 1994
- Differential gene expression in nematode‐induced feeding structures of transgenic plants harbouring promoter—gusA fusion constructsThe Plant Journal, 1993
- Multinucleate transfer cells induced in coleus roots by the root-knot nematode,Meloidogyne arenariaProtoplasma, 1972
- Ultrastructure of the hypersensitive reaction in roots of tomato, Lycopersicon esculentum L., to infection by the root-knot nematode, Meloidogyne incognitaPhysiological Plant Pathology, 1972