BCO-DMO ERDDAP
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Row Type | Variable Name | Attribute Name | Data Type | Value |
---|---|---|---|---|
attribute | NC_GLOBAL | cdm_data_type | String | Other |
attribute | NC_GLOBAL | Conventions | String | COARDS, CF-1.6, ACDD-1.3 |
attribute | NC_GLOBAL | creator_email | String | info at bco-dmo.org |
attribute | NC_GLOBAL | creator_name | String | BCO-DMO |
attribute | NC_GLOBAL | creator_url | String | https://www.bco-dmo.org/ |
attribute | NC_GLOBAL | doi | String | 10.26008/1912/bco-dmo.923447.1 |
attribute | NC_GLOBAL | infoUrl | String | https://www.bco-dmo.org/dataset/923447 |
attribute | NC_GLOBAL | institution | String | BCO-DMO |
attribute | NC_GLOBAL | license | String | The data may be used and redistributed for free but is not intended\nfor legal use, since it may contain inaccuracies. Neither the data\nContributor, ERD, NOAA, nor the United States Government, nor any\nof their employees or contractors, makes any warranty, express or\nimplied, including warranties of merchantability and fitness for a\nparticular purpose, or assumes any legal liability for the accuracy,\ncompleteness, or usefulness, of this information. |
attribute | NC_GLOBAL | sourceUrl | String | (local files) |
attribute | NC_GLOBAL | summary | String | Across diverse taxa, sublethal exposure to abiotic stressors early in life can lead to benefits such as increased stress tolerance upon repeat exposure. This phenomenon, known as hormetic priming, is largely unexplored in early life stages of marine invertebrates, which are increasingly threatened by anthropogenic climate change. To investigate this phenomenon, larvae of the sea anemone and model marine invertebrate Nematostella vectensis were exposed to control (18 °C) or elevated (24 °C, 30 °C, 35 °C, or 39 °C) temperatures for 1 hour at 3 days post-fertilization (DPF), followed by return to control temperatures (18 °C). The animals were then assessed for growth, development, metabolic rates, and heat tolerance at 4, 7, and 11 DPF. To investigate a possible molecular mechanism for the observed changes in heat tolerance, the expression of heat shock protein 70 (HSP70) was quantified at 11 DPF. The study's findings suggest heat priming may augment the climate resilience of marine invertebrate early life stages via the modulation of key developmental and physiological phenotypes, while also affirming the need to limit further anthropogenic ocean warming.\n\nThis dataset includes data pertaining to the long-term body column lengths and tentacle numbers of larvae and juveniles through 6 weeks post-fertilization (WPF). See related datasets for other results from these experiments. These data and results are published in Glass et al. (2023) (DOI: 10.7717/peerj.16574). |
attribute | NC_GLOBAL | title | String | [Heat priming in Nematostella vectensis: Long-term growth] - Long-term body column lengths and tentacle numbers of larvae and juveniles from experiments investigating heat priming in Nematostella vectensis (Influence of environmental pH variability and thermal sensitivity on the resilience of reef-building corals to acidification stress) |
variable | Priming_temperature_C | int | ||
attribute | Priming_temperature_C | actual_range | int | 18, 39 |
attribute | Priming_temperature_C | long_name | String | Priming_temperature_c |
attribute | Priming_temperature_C | units | String | degrees Celsius |
variable | Group | int | ||
attribute | Group | actual_range | int | 1, 3 |
attribute | Group | long_name | String | Group |
attribute | Group | units | String | unitless |
variable | Weeks_post_fertilization | int | ||
attribute | Weeks_post_fertilization | actual_range | int | 1, 6 |
attribute | Weeks_post_fertilization | long_name | String | Weeks_post_fertilization |
attribute | Weeks_post_fertilization | units | String | unitless |
variable | Body_column_length_cm | float | ||
attribute | Body_column_length_cm | actual_range | float | 0.019, 0.192 |
attribute | Body_column_length_cm | long_name | String | Body_column_length_cm |
attribute | Body_column_length_cm | units | String | cenimeters (cm) |
variable | Body_column_length_mm | float | ||
attribute | Body_column_length_mm | actual_range | float | 0.19, 1.92 |
attribute | Body_column_length_mm | long_name | String | Body_column_length_mm |
attribute | Body_column_length_mm | units | String | millimeters (mm) |
variable | Body_column_width_cm | float | ||
attribute | Body_column_width_cm | actual_range | float | 0.014, 0.049 |
attribute | Body_column_width_cm | long_name | String | Body_column_width_cm |
attribute | Body_column_width_cm | units | String | cenimeters (cm) |
variable | Body_column_width_mm | float | ||
attribute | Body_column_width_mm | actual_range | float | 0.14, 0.49 |
attribute | Body_column_width_mm | long_name | String | Body_column_width_mm |
attribute | Body_column_width_mm | units | String | millimeters (mm) |
variable | Aspect_ratio | float | ||
attribute | Aspect_ratio | actual_range | float | 1.0, 8.95 |
attribute | Aspect_ratio | long_name | String | Aspect_ratio |
attribute | Aspect_ratio | units | String | unitless |
variable | Volume_mm3 | float | ||
attribute | Volume_mm3 | actual_range | float | 0.005387046, 0.237052 |
attribute | Volume_mm3 | long_name | String | Volume_mm3 |
attribute | Volume_mm3 | units | String | cubic millimeters (mm^3) |
variable | Surface_area_mm2 | float | ||
attribute | Surface_area_mm2 | actual_range | float | 0.1701172, 2.337345 |
attribute | Surface_area_mm2 | long_name | String | Surface_area_mm2 |
attribute | Surface_area_mm2 | units | String | square millimeters (mm^2) |
variable | Surface_area_to_volume_ratio | float | ||
attribute | Surface_area_to_volume_ratio | actual_range | float | 9.789282, 32.07207 |
attribute | Surface_area_to_volume_ratio | long_name | String | Surface_area_to_volume_ratio |
attribute | Surface_area_to_volume_ratio | units | String | millimeters (mm^3/mm^2) |
variable | Tentacles | int | ||
attribute | Tentacles | actual_range | int | 0, 8 |
attribute | Tentacles | long_name | String | Tentacles |
attribute | Tentacles | units | String | unitless |