Background: Macrophytes are key players in aquatic ecosystems diversity, but knowledge on variability of their functional traits, among and within species, is still limited. Remote sensing is a high-throughput, feasible option for characterizing plant traits at different scales, provided that reliable spectroscopy models are calibrated with congruous empirical data, but existing applications are biased towards terrestrial plants. We sampled leaves from six floating and emergent macrophyte species common in temperate areas, covering different phenological stages, seasons, and environmental conditions, and measured leaf reflectance (400–2500 nm) and leaf traits (dealing with photophysiology, pigments, and structure). We explored optimal spect...
Environmental conditions are very changeable; fluctuations in temperature, precipitation, illuminati...
Optical-based remote sensing offers great potential for phenotyping vegetation traits and functions ...
We assessed the potential for using optical functional types as effective markers to monitor changes...
Background: Macrophytes are key players in aquatic ecosystems diversity, but knowledge on variabilit...
Macrophytes are important elements of freshwater ecosystems, fulfilling a pivotal role in biogeochem...
Macrophytes are important elements of freshwater ecosystems, fulfilling a pivotal role in biogeochem...
This dataset includes leaf samples from six floating and emergent macrophyte species common in tempe...
Leaf biochemical and structural traits are vegetation characteristics related to various physiologic...
Submerged macrophytes give important information about a lake´s trophic state and its ecosystem. Aqu...
Field spectroscopy is a powerful tool for monitoring leaf functional traits in situ, but it remains ...
The peer-reviewed and edited version of this article was published in Volume 34, Issue 22 of the Int...
Field spectroscopy is a powerful tool for monitoring leaf functional traits in situ, but it remains ...
Trait predictions from leaf spectral properties are mainly applied to tree species, while herbaceous...
How plants interact with sunlight is central to the existence of life and provides a window to the f...
Plant trait data have been used in various studies related to ecosystem functioning, community ecolo...
Environmental conditions are very changeable; fluctuations in temperature, precipitation, illuminati...
Optical-based remote sensing offers great potential for phenotyping vegetation traits and functions ...
We assessed the potential for using optical functional types as effective markers to monitor changes...
Background: Macrophytes are key players in aquatic ecosystems diversity, but knowledge on variabilit...
Macrophytes are important elements of freshwater ecosystems, fulfilling a pivotal role in biogeochem...
Macrophytes are important elements of freshwater ecosystems, fulfilling a pivotal role in biogeochem...
This dataset includes leaf samples from six floating and emergent macrophyte species common in tempe...
Leaf biochemical and structural traits are vegetation characteristics related to various physiologic...
Submerged macrophytes give important information about a lake´s trophic state and its ecosystem. Aqu...
Field spectroscopy is a powerful tool for monitoring leaf functional traits in situ, but it remains ...
The peer-reviewed and edited version of this article was published in Volume 34, Issue 22 of the Int...
Field spectroscopy is a powerful tool for monitoring leaf functional traits in situ, but it remains ...
Trait predictions from leaf spectral properties are mainly applied to tree species, while herbaceous...
How plants interact with sunlight is central to the existence of life and provides a window to the f...
Plant trait data have been used in various studies related to ecosystem functioning, community ecolo...
Environmental conditions are very changeable; fluctuations in temperature, precipitation, illuminati...
Optical-based remote sensing offers great potential for phenotyping vegetation traits and functions ...
We assessed the potential for using optical functional types as effective markers to monitor changes...