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Full-Text Articles in Life Sciences
Reimagining The Potential Of Earth Observations For Ecosystem Service Assessments, Frank Muller-Karger
Reimagining The Potential Of Earth Observations For Ecosystem Service Assessments, Frank Muller-Karger
Marine Science Faculty Publications
The benefits nature provides to people, called ecosystem services, are increasingly recognized and accounted for in assessments of infrastructure development, agricultural management, conservation prioritization, and sustainable sourcing. These assessments are often limited by data, however, a gap with tremendous potential to be filled through Earth observations (EO), which produce a variety of data across spatial and temporal extents and resolutions. Despite widespread recognition of this potential, in practice few ecosystem service studies use EO. Here, we identify challenges and opportunities to using EO in ecosystem service modeling and assessment. Some challenges are technical, related to data awareness, processing, and access. …
Reimagining The Potential Of Earth Observations For Ecosystem Service Assessments, Frank E. Muller-Karger
Reimagining The Potential Of Earth Observations For Ecosystem Service Assessments, Frank E. Muller-Karger
Marine Science Faculty Publications
The benefits nature provides to people, called ecosystem services, are increasingly recognized and accounted for in assessments of infrastructure development, agricultural management, conservation prioritization, and sustainable sourcing. These assessments are often limited by data, however, a gap with tremendous potential to be filled through Earth observations (EO), which produce a variety of data across spatial and temporal extents and resolutions. Despite widespread recognition of this potential, in practice few ecosystem service studies use EO. Here, we identify challenges and opportunities to using EO in ecosystem service modeling and assessment. Some challenges are technical, related to data awareness, processing, and access. …
Assessing Eukaryotic Biodiversity In The Florida Keys National Marine Sanctuary Through Environmental Dna Metabarcoding, Natalie Sawaya, Anni Djurhuus, Collin Closek, Megan Hepner, Emily Olesin, Lindsey Visser, Christopher Kelble, Katherine Hubbard, Mya Breitbart
Assessing Eukaryotic Biodiversity In The Florida Keys National Marine Sanctuary Through Environmental Dna Metabarcoding, Natalie Sawaya, Anni Djurhuus, Collin Closek, Megan Hepner, Emily Olesin, Lindsey Visser, Christopher Kelble, Katherine Hubbard, Mya Breitbart
Marine Science Faculty Publications
Environmental DNA (eDNA) is the DNA suspended in the environment (e.g., water column), which includes cells, gametes, and other material derived from but not limited to shedding of tissue, scales, mucus, and fecal matter. Amplifying and sequencing marker genes (i.e., metabarcoding) from eDNA can reveal the wide range of taxa present in an ecosystem through analysis of a single water sample. Metabarcoding of eDNA provides higher resolution data than visual surveys, aiding in assessments of ecosystem health. This study conducted eDNA metabarcoding of two molecular markers (cytochrome c oxidase I (COI) and 18S ribosomal RNA (rRNA) genes) to survey eukaryotic …