We recently characterized a highly dynamic fungal disease outbreak in native populations of Nicotiana attenuata in the southwestern United States. Here, we explore how phytohormone signalling contributes to the observed disease dynamics. Single inoculation with three native Fusarium and Alternaria fungal pathogens, isolated from diseased plants growing in native populations, resulted in disease symptoms characteristic for each pathogen species. While Alternaria sp.‐infected plants displayed fewer symptoms and recovered, Fusarium spp.‐infected plants became chlorotic and frequently spontaneously wilted. Jasmonic acid (JA) and salicylic acid (SA) levels were differentially induced after Fusarium or Alternaria infection. Transgenic N. attenuat...
The wild tobacco species Nicotiana attenuata has been intensively used as a model plant to study its...
International audienceThe role of salicylic acid (SA) and jasmonic acid (JA) signaling in resistance...
Phytohormones, such as salicylic acid (SA), ethylene (ET) and jasmonic acid (JA), play key roles in ...
Like most organisms plants must be able to defend themselves from a variety of pathogens throughout ...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
Stress information received by a particular local plant tissue is transferred to other tissues and n...
Despite the described central role of jasmonate signaling in plant defense against necrotrophic path...
Jasmonate (JA)-mediated defences play important roles in host responses to pathogen attack, in parti...
Jasmonate (JA)-mediated defences play important roles in host responses to pathogen attack, in parti...
Stress information received by a particular local plant tissue is transferred to other tissues and n...
Alternaria alternata (tobacco pathotype) is a necrotrophic fungus causing severe losses in Nicotiana...
Abstract Background Jasmonic acid (JA) is a well-characterized signaling molecule in plant defense r...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
The wild tobacco species Nicotiana attenuata has been intensively used as a model plant to study its...
International audienceThe role of salicylic acid (SA) and jasmonic acid (JA) signaling in resistance...
Phytohormones, such as salicylic acid (SA), ethylene (ET) and jasmonic acid (JA), play key roles in ...
Like most organisms plants must be able to defend themselves from a variety of pathogens throughout ...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
Stress information received by a particular local plant tissue is transferred to other tissues and n...
Despite the described central role of jasmonate signaling in plant defense against necrotrophic path...
Jasmonate (JA)-mediated defences play important roles in host responses to pathogen attack, in parti...
Jasmonate (JA)-mediated defences play important roles in host responses to pathogen attack, in parti...
Stress information received by a particular local plant tissue is transferred to other tissues and n...
Alternaria alternata (tobacco pathotype) is a necrotrophic fungus causing severe losses in Nicotiana...
Abstract Background Jasmonic acid (JA) is a well-characterized signaling molecule in plant defense r...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
The wild tobacco species Nicotiana attenuata has been intensively used as a model plant to study its...
International audienceThe role of salicylic acid (SA) and jasmonic acid (JA) signaling in resistance...
Phytohormones, such as salicylic acid (SA), ethylene (ET) and jasmonic acid (JA), play key roles in ...