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Alex D Rogers

Biographic Data

ID6817895
NAMEAlex D Rogers
GIVEN NAMESAlex D
FAMILY NAMERogers
SIGNATUREROGERS A D
AFFILIATIONSScottish Natural Heritage
ORCID0000-0002-4864-2980
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS3
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2015
LATEST PUBLICATION YEAR2020
H-INDEX1
  • The ocean genome and future prospects for conservation and equity

    Open Access•Robert Blasiak, Rachel Wynberg et al.•ARTICLE•Nature Sustainability•2020•Cited by: 2•References: 2

    Life has evolved in the ocean for 3.7 billion years, resulting in a rich ‘ocean genome’, the ensemble of genetic material present in all marine biodiversity, including both the physical genes and the information they encode. Rapid advances in sequencing technologies and bioinformatics have enabled exploration of the ocean genome and are informing innovative approaches to conservation and a growing number of commercial biotechnology applications. …

  • Antarctic ecosystem responses following ice‐shelf collapse and iceberg calving

    Open Access•Jeroen Ingels, Richard B Aronson et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2020•Cited by: 1•References: 2

    The calving of A‐68, the 5,800‐km 2 , 1‐trillion‐ton iceberg shed from the Larsen C Ice Shelf in July 2017, is one of over 10 significant ice‐shelf loss events in the past few decades resulting from rapid warming around the Antarctic Peninsula. The rapid thinning, retreat, and collapse of ice shelves along the Antarctic Peninsula are harbingers of warming effects around the entire continent. Ice shelves cover more than 1.5 million km 2 and fringe…

  • Contrasting futures for ocean and society from different anthropogenic CO 2 emissions scenarios

    Open Access•Jean‐pierre Gattuso, J-P Gattuso et al.•ARTICLE•Science•2015

    Carbon emissions and their ocean impacts Anthropogenic CO 2 emissions directly affect atmospheric chemistry but also have a strong influence on the oceans. Gattuso et al. review how the physics, chemistry, and ecology of the oceans might be affected based on two CO 2 emission trajectories: one business as usual and one with aggressive reductions. Ocean warming, acidification, sea-level rise, and the expansion of oxygen minimum zones will continue…

  • The ocean genome and future prospects for conservation and equity

    Open Access•Robert Blasiak, Rachel Wynberg et al.•ARTICLE•Nature Sustainability•2020•Cited by: 2•References: 2

    Life has evolved in the ocean for 3.7 billion years, resulting in a rich ‘ocean genome’, the ensemble of genetic material present in all marine biodiversity, including both the physical genes and the information they encode. Rapid advances in sequencing technologies and bioinformatics have enabled exploration of the ocean genome and are informing innovative approaches to conservation and a growing number of commercial biotechnology applications. …

  • Antarctic ecosystem responses following ice‐shelf collapse and iceberg calving

    Open Access•Jeroen Ingels, Richard B Aronson et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2020•Cited by: 1•References: 2

    The calving of A‐68, the 5,800‐km 2 , 1‐trillion‐ton iceberg shed from the Larsen C Ice Shelf in July 2017, is one of over 10 significant ice‐shelf loss events in the past few decades resulting from rapid warming around the Antarctic Peninsula. The rapid thinning, retreat, and collapse of ice shelves along the Antarctic Peninsula are harbingers of warming effects around the entire continent. Ice shelves cover more than 1.5 million km 2 and fringe…

  • Contrasting futures for ocean and society from different anthropogenic CO 2 emissions scenarios

    Open Access•Jean‐pierre Gattuso, J-P Gattuso et al.•ARTICLE•Science•2015

    Carbon emissions and their ocean impacts Anthropogenic CO 2 emissions directly affect atmospheric chemistry but also have a strong influence on the oceans. Gattuso et al. review how the physics, chemistry, and ecology of the oceans might be affected based on two CO 2 emission trajectories: one business as usual and one with aggressive reductions. Ocean warming, acidification, sea-level rise, and the expansion of oxygen minimum zones will continue…

  • The ocean genome and future prospects for conservation and equity

    Open Access•Robert Blasiak, Rachel Wynberg et al.•ARTICLE•Nature Sustainability•2020•Cited by: 2•References: 2

    Life has evolved in the ocean for 3.7 billion years, resulting in a rich ‘ocean genome’, the ensemble of genetic material present in all marine biodiversity, including both the physical genes and the information they encode. Rapid advances in sequencing technologies and bioinformatics have enabled exploration of the ocean genome and are informing innovative approaches to conservation and a growing number of commercial biotechnology applications. …

  • Antarctic ecosystem responses following ice‐shelf collapse and iceberg calving

    Open Access•Jeroen Ingels, Richard B Aronson et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2020•Cited by: 1•References: 2

    The calving of A‐68, the 5,800‐km 2 , 1‐trillion‐ton iceberg shed from the Larsen C Ice Shelf in July 2017, is one of over 10 significant ice‐shelf loss events in the past few decades resulting from rapid warming around the Antarctic Peninsula. The rapid thinning, retreat, and collapse of ice shelves along the Antarctic Peninsula are harbingers of warming effects around the entire continent. Ice shelves cover more than 1.5 million km 2 and fringe…

Biology (2 works) · Business (2 works) · Economics (2 works) · Environmental resource management (2 works) · Geography (2 works) · Natural resource economics (2 works) · Arctic and Antarctic ice dynamics (1 works) · Biodiversity (1 works) · Blue carbon (1 works) · Climate change (1 works)

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