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  • 1
    Publication Date: 2019
    Description: Abstract Aim Understanding the drivers of speciation within islands is key to explain the high levels of invertebrate diversification and endemism often observed within islands. Here, we propose an insular topoclimate model for Quaternary diversification (ITQD), and test the general prediction that, within a radially eroded conical island, glacial climate conditions facilitate the divergence of populations within species across valleys. Location Gran Canaria, Canary Islands. Taxon The Laparocerus tessellatus beetle species complex (Coleoptera, Curculionidae). Methods We characterize individual‐level genomic relationships using single nucleotide polymorphisms produced by double‐digest restriction site associated DNA sequencing (ddRAD‐seq). A range of parameter values were explored in order to filter our data. We assess individual relatedness, species boundaries, demographic history and spatial patterns of connectivity. Results The total number of ddRAD‐seq loci per sample ranges from 4,576 to 512, with 11.12% and 4.84% of missing data respectively, depending on the filtering parameter combination. We consistently infer four genetically distinct ancestral populations and two presumed cases of admixture, one of which is largely restricted to high altitudes. Bayes factor delimitation support the hypothesis of four species, which is consistent with the four inferred ancestral gene pools. Landscape resistance analyses identified genomic relatedness among individuals in two out of the four inferred species to be best explained by annual precipitation during the last glacial maximum rather than geographic distance. Main conclusions Our data reveal a complex speciation history involving population isolation and admixture, with broad support for the ITQD model here proposed. We suggest that further studies are needed to test the generality of our model, and enrich our understanding of the evolutionary process in island invertebrates. Our results demonstrate the power of ddRAD‐seq data to provide a detailed understanding of the temporal and spatial dynamics of insular biodiversity.
    Print ISSN: 0305-0270
    Electronic ISSN: 1365-2699
    Topics: Biology , Geography
    Published by Wiley
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  • 2
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Spacecraft Design, Testing and Performance
    Type: GSFC-E-DAA-TN56664 , Constellation Mission Operations Working Group (MOWG); Jun 12, 2018 - Jun 14, 2018; Sioux Falls, SD; United States
    Format: application/pdf
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  • 3
    Publication Date: 2019-07-13
    Description: Constellations have proven to be an effective and efficient way to acquire earth science data. By flying together, sensors on all satellites in a constellation take measurements of the same air, water, or land mass at essentially the same time. The sensors form a single "virtual satellite". The key to making a constellation effective and efficient is keeping the operations as independent as possible in order to minimize the operational burden and costs. The Earth Science Constellation (ESC) has been successful on all counts and continues to welcome new missions to continue its 18+ year record of coincidental earth science observations. The ESC also serves as a model for future constellation designs. This paper describes the ESC and its evolution from its initial launches in 1999 through the present and how new missions might benefit from joining the ESC.
    Keywords: Astronautics (General)
    Type: GSFC-E-DAA-TN60791 , SPIE Remote Sensing Conference; Sep 09, 2019 - Sep 12, 2019; Berlin; Germany
    Format: application/pdf
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  • 4
    Publication Date: 2019-07-13
    Description: Constellations have proven to be an effective and efficient way to acquire earth science data. By flying together, sensors on all satellites in a constellation take measurements of the same air, water, or land mass at essentially the same time. The sensors form a single "virtual satellite". The key to making a constellation effective and efficient is keeping the operations as independent as possible in order to minimize the operational burden and costs. The Earth Science Constellation (ESC) has been successful on all counts and continues to welcome new missions to continue its 18+ year record of coincidental earth science observations. The ESC also serves as a model for future constellation designs. This paper describes the ESC and its evolution from its initial launches in 1999 through the present and how new missions might benefit from joining the ESC.
    Keywords: Earth Resources and Remote Sensing
    Type: GSFC-E-DAA-TN59813 , SPIE Remote Sensing 2018; Sep 10, 2018 - Sep 13, 2018; Berlin; Germany
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  • 5
    Publication Date: 2019-07-13
    Description: The most recent Decadal Survey placed high value on continuing constellation science. The ESC has evolved by seeing new missions joining and old missions retiring. Most recently, GCOM-W1, Landsat-8, and OCO-2 joined during 2012-2014. Landsat-9 is set to join in 2020. Each new mission provides new and improved suite of sensors. The new sensors also benefit both from the multitude of other existing on-orbit sensors as well as from the long-term cross-calibrated climate observations from the sensors that preceded them. At the same time, existing missions leave the constellation due to low fuel reserves or aging spacecraft subsystems. For example, CloudSat and CALIPSO left the ESC orbits in 2018, although they plan to continue making coordinated science observations at their new lower altitudes. This ESC evolution is expected to continue and this paper will discuss the opportunities for other new missions to join the ESC.
    Keywords: Earth Resources and Remote Sensing
    Type: GSFC-E-DAA-TN68006 , European Space Agency Living Planet Symposium 2019 (LPS19); May 13, 2019 - May 17, 2019; Milan; Italy
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  • 6
    Publication Date: 2019-07-13
    Description: This is the Welcome and Introduction presentation for the International Earth Science Constellation (ESC) Mission Operations Working Group (MOWG) meeting held in Albuquerque NM from September 27-29. It contains an org chart, charter, history, significant topics to be discussed, AquaAura 2017 inclination adjust maneuver calendar, a-train long range plans, upcoming events, and action items.
    Keywords: Earth Resources and Remote Sensing; Astronautics (General)
    Type: GSFC-E-DAA-TN35154 , Earth Science Constellation MOWG meeting; Sep 27, 2016 - Sep 29, 2016; Albuquerque, NM; United States
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  • 7
    Publication Date: 2019-12-13
    Description: This presentation will introduce topics of note for the Earth Science Constellation (ESC) Mission Operations Working Group (MOWG) meeting Gilbert AZ, December 3-5, 2019
    Keywords: Astronautics (General)
    Type: GSFC-E-DAA-TN75411 , Mission Operations Working Group Meeting; Dec 03, 2019 - Dec 05, 2019; Gilbert, AZ; United States
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  • 8
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Earth Resources and Remote Sensing; Astronautics (General)
    Type: GSFC-E-DAA-TN68834 , Constellation Mission Operations Working Group; Jun 05, 2019 - Jun 07, 2019; Toulouse; France
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  • 9
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Earth Resources and Remote Sensing
    Type: GSFC-E-DAA-TN54672 , SpaceOps 2018; May 28, 2018 - Jun 01, 2018; Marseille; France
    Format: application/pdf
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