Relationships between two taxonomic kingdoms; plants and herbivorous insects, are hypothesized to be a major zone of interaction for generating current day biodiversity; and coevolutionary processes between these intricately linked organisms are hypothesized to maintain diversity in plant secondary chemistry. These metabolites play a key role in plant defence against herbivory and a high degree of intraspecific variation is observed at multiple ecological scales. However, the nature of selection maintaining variation in plant defence profiles is still a major question in evolutionary biology and ecology, and progress towards a deeper understanding is hampered by a lack of studies that take into account ecological context and the multivariat...
Phytochemical diversity is thought to result from coevolutionary cycles as specialization in herbivo...
Direct and indirect plant defences are well studied, particularly in the Brassicaceae. Glucosinolate...
Levels of plant secondary metabolites are not static and often change in relation to plant ontogeny....
Co-evolutionary interactions between plants and herbivores are suggested to be the driving force beh...
Co-evolutionary interactions between plants and herbivores are suggested to be the driving force beh...
Plants form the basis of many food webs and are consumed by a wide variety of organisms, including h...
Plants form the basis of many food webs and are consumed by a wide variety of organisms, including h...
Plants have evolved a range of defence traits that prevent or reduce attack by insect herbivores. Di...
Intraspecific plant diversity can modify the properties of associated arthropod communities and plan...
Allocation of resources to growth and defense against herbivores crucially affects plant competitive...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Natural populations of wild cabbage (Brassica oleracea) show significant qualitative diversity in he...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Phytochemical diversity is thought to result from coevolutionary cycles as specialization in herbivo...
Direct and indirect plant defences are well studied, particularly in the Brassicaceae. Glucosinolate...
Levels of plant secondary metabolites are not static and often change in relation to plant ontogeny....
Co-evolutionary interactions between plants and herbivores are suggested to be the driving force beh...
Co-evolutionary interactions between plants and herbivores are suggested to be the driving force beh...
Plants form the basis of many food webs and are consumed by a wide variety of organisms, including h...
Plants form the basis of many food webs and are consumed by a wide variety of organisms, including h...
Plants have evolved a range of defence traits that prevent or reduce attack by insect herbivores. Di...
Intraspecific plant diversity can modify the properties of associated arthropod communities and plan...
Allocation of resources to growth and defense against herbivores crucially affects plant competitive...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Natural populations of wild cabbage (Brassica oleracea) show significant qualitative diversity in he...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Intraspecific variation in plants plays a major role in the composition and diversity of the associa...
Phytochemical diversity is thought to result from coevolutionary cycles as specialization in herbivo...
Direct and indirect plant defences are well studied, particularly in the Brassicaceae. Glucosinolate...
Levels of plant secondary metabolites are not static and often change in relation to plant ontogeny....