Anthocyanins are synthesized during leaf senescence in certain plants across virtually all biomes, but are most spectacular in the autumn foliage of temperate deciduous forests. The patterns of color production in senescing foliage depend at least partly upon species composition and their phenology. Both ecological and physiological explanations have been raised to explain why plants produce this pigment just before leaf fall. Physiological explanations, as photoprotection, predict that cyanic leaves would be better able to resorb nitrogen during the process of chlorophyll degradation. Ecological explanations predict better dispersal of propagules advertised by association with the brilliantly colored leaves (plausible for only a minority o...
Leaf colour change is commonly observed in temperate deciduous forests in autumn. This is not simply...
Leaves of fullmoon maple (Acer japonicum) turn brilliant red with anthocyanins synthesis in autumn. ...
Red pigments, products of different metabolic pathways, occur in terrestrial plants. The flavonoid p...
The color changes that occur during foliar senescence are directly related to the regulation of nutr...
The leaves of woody plants at Harvard Forest in Central Massachusetts, USA, changed color during sen...
Several theories exist about the role of anthocyanins in senescing leaves. To elucidate factors con...
Why the leaves of many woody species accumulate anthocyanins prior to being shed has long puzzled bi...
Although anthocyanins are most recognized as pigments contributing to coloration in fruits and flowe...
We examined the anatomy of expanding, mature, and senescing leaves of tropical plants for the presen...
Anthocyanins, the pigments responsible for spectacular displays of vermilion in the leaves of decidu...
Leaf senescence is currently considered the last stage of leaf development and is a genetically prog...
Anthocyanins are red and purple pigments commonly found in plant leaves. The function of anthocyanin...
Anthocyanin biosynthesis and accumulation is closely associated with tissue/organ coloring in plants...
Anthocyanins and nonphotochemical quenching (NPQ) are two important tools that provide photoprotecti...
Accumulation of abaxial anthocyanins is an intriguing leaf trait particularly common among deeply sh...
Leaf colour change is commonly observed in temperate deciduous forests in autumn. This is not simply...
Leaves of fullmoon maple (Acer japonicum) turn brilliant red with anthocyanins synthesis in autumn. ...
Red pigments, products of different metabolic pathways, occur in terrestrial plants. The flavonoid p...
The color changes that occur during foliar senescence are directly related to the regulation of nutr...
The leaves of woody plants at Harvard Forest in Central Massachusetts, USA, changed color during sen...
Several theories exist about the role of anthocyanins in senescing leaves. To elucidate factors con...
Why the leaves of many woody species accumulate anthocyanins prior to being shed has long puzzled bi...
Although anthocyanins are most recognized as pigments contributing to coloration in fruits and flowe...
We examined the anatomy of expanding, mature, and senescing leaves of tropical plants for the presen...
Anthocyanins, the pigments responsible for spectacular displays of vermilion in the leaves of decidu...
Leaf senescence is currently considered the last stage of leaf development and is a genetically prog...
Anthocyanins are red and purple pigments commonly found in plant leaves. The function of anthocyanin...
Anthocyanin biosynthesis and accumulation is closely associated with tissue/organ coloring in plants...
Anthocyanins and nonphotochemical quenching (NPQ) are two important tools that provide photoprotecti...
Accumulation of abaxial anthocyanins is an intriguing leaf trait particularly common among deeply sh...
Leaf colour change is commonly observed in temperate deciduous forests in autumn. This is not simply...
Leaves of fullmoon maple (Acer japonicum) turn brilliant red with anthocyanins synthesis in autumn. ...
Red pigments, products of different metabolic pathways, occur in terrestrial plants. The flavonoid p...