Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolution and epidemiology of diseases. In particular, virulence costs when the corresponding host resistance gene is lacking play a major role in the adaptive biology of pathogens and contribute to the maintenance of their genetic diversity. Here, we investigated whether life-history traits directly linked to the establishment of plant-nematode interactions, that is, ability to locate and move toward the roots of the host plant, and to invade roots and develop into mature females, are affected in Meloidogyne incognita lines virulent against the tomato Mi-1.2 resistance gene. Virulent and avirulent near-isogenic lines only differing in their capac...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Abstract Selection in plant parasites for virulence on resistant hosts and the resulting effects on ...
Root-knot nematodes (RKNs, Meloidogyne spp.) are major plant pathogens of vegetables in most product...
International audienceTrade-offs between virulence (defined as the ability to infect a resistant hos...
Four isolates of the root-hot nematode Meloidogyne incognita were analyzed for their virulence again...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Root-knot nematodes (RKN) are sedentary endoparasites causing severe damage to a wide variety of cro...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Evaluating trade-offs in life-history traits of plant pathogens is essential to understand the evolu...
Abstract Selection in plant parasites for virulence on resistant hosts and the resulting effects on ...
Root-knot nematodes (RKNs, Meloidogyne spp.) are major plant pathogens of vegetables in most product...
International audienceTrade-offs between virulence (defined as the ability to infect a resistant hos...
Four isolates of the root-hot nematode Meloidogyne incognita were analyzed for their virulence again...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Trade-offs between virulence (defined as the ability to infect a resistant host) and life-history tr...
Root-knot nematodes (RKN) are sedentary endoparasites causing severe damage to a wide variety of cro...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...
Adaptation to changing environmental conditions represents a challenge to parthenogenetic organisms ...