Herbivory initiates a shift in plant metabolism from growth to defence that may reduce fitness in the absence of further herbivory. However, the defence-induced changes in carbon assimilation that precede this reallocation in resources remain largely undetermined. This study characterized the response of photosynthesis to herbivore induction of jasmonic acid (JA)-related defences in Nicotiana attenuata to increase understanding of these mechanisms. It was hypothesized that JA-induced defences would immediately reduce the component processes of photosynthesis upon attack and was predicted that wild-type plants would suffer greater reductions in photosynthesis than plants lacking JA-induced defences. Gas exchange, chlorophyll fluorescence, an...
Jasmonic acid (JA) is a crucial plant defence signalling substance that has recently been shown to m...
Nitric oxide‐associated protein 1 (NOA1) is involved in various abiotic stress responses and is requ...
Herbivory is thought to be detrimental to plant fitness and commonly results in a metabolic shift in...
Herbivory initiates a shift in plant metabolism from growth to defence that may reduce fitness in th...
685-694Herbivory initiates a shift in plant metabolism from growth to defence that may reduce fitnes...
Herbivory-induced changes in photosynthesis have been documented in many plant species; however, the...
Herbivory-induced changes in photosynthesis have been documented in many plant species, however the ...
Herbivore attack leads to resource conflicts between plant defensive strategies. Photoassimilates ar...
A plant’s inducible defenses against herbivores as well as certain developmental processes are known...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
BACKGROUND: Rapid herbivore-induced jasmonic acid (JA) accumulation is known to mediate many induced...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
Rapid herbivore-induced jasmonic acid (JA) accumulation is known to mediate many induced defense res...
To defend themselves against herbivore attack, plants produce secondary metabolites, which are vario...
Jasmonic acid (JA) is a crucial plant defence signalling substance that has recently been shown to m...
Nitric oxide‐associated protein 1 (NOA1) is involved in various abiotic stress responses and is requ...
Herbivory is thought to be detrimental to plant fitness and commonly results in a metabolic shift in...
Herbivory initiates a shift in plant metabolism from growth to defence that may reduce fitness in th...
685-694Herbivory initiates a shift in plant metabolism from growth to defence that may reduce fitnes...
Herbivory-induced changes in photosynthesis have been documented in many plant species; however, the...
Herbivory-induced changes in photosynthesis have been documented in many plant species, however the ...
Herbivore attack leads to resource conflicts between plant defensive strategies. Photoassimilates ar...
A plant’s inducible defenses against herbivores as well as certain developmental processes are known...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
BACKGROUND: Rapid herbivore-induced jasmonic acid (JA) accumulation is known to mediate many induced...
Plants respond to herbivory by reconfiguring hormonal networks, increasing secondary metabolite prod...
Rapid herbivore-induced jasmonic acid (JA) accumulation is known to mediate many induced defense res...
To defend themselves against herbivore attack, plants produce secondary metabolites, which are vario...
Jasmonic acid (JA) is a crucial plant defence signalling substance that has recently been shown to m...
Nitric oxide‐associated protein 1 (NOA1) is involved in various abiotic stress responses and is requ...
Herbivory is thought to be detrimental to plant fitness and commonly results in a metabolic shift in...