Monitoring and modelling marine zooplankton in a changing climate.

Monitoring and modelling marine zooplankton in a changing climate.
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DOI:
10.1038/s41467-023-36241-5
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发表时间:
2023-02-02
影响因子:
16.6
通讯作者:
Yebra, Lidia
Yebra, Lidia
中科院分区:
综合性期刊1区
文献类型:
--
作者:
Ratnarajah, Lavenia;Abu-Alhaija, Rana;Atkinson, Angus;Batten, Sonia;Bax, Nicholas J.;Bernard, Kim S.;Canonico, Gabrielle;Cornils, Astrid;Everett, Jason D.;Grigoratou, Maria;Ishak, Nurul Huda Ahmad;Johns, David;Lombard, Fabien;Muxagata, Erik;Ostle, Clare;Pitois, Sophie;Richardson, Anthony J.;Schmidt, Katrin;Stemmann, Lars;Swadling, Kerrie M.;Yang, Guang;Yebra, Lidia

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Zooplankton are major consumers of phytoplankton primary production in marine ecosystems. As such, they represent a critical link for energy and matter transfer between phytoplankton and bacterioplankton to higher trophic levels and play an important role in global biogeochemical cycles. In this Review, we discuss key responses of zooplankton to ocean warming, including shifts in phenology, range, and body size, and assess the implications to the biological carbon pump and interactions with higher trophic levels. Our synthesis highlights key knowledge gaps and geographic gaps in monitoring coverage that need to be urgently addressed. We also discuss an integrated sampling approach that combines traditional and novel techniques to improve zooplankton observation for the benefit of monitoring zooplankton populations and modelling future scenarios under global changes. Zooplankton are a critical link to higher trophic levels and play an important role in global biogeochemical cycles. This Review examines key responses of zooplankton to ocean warming, highlights key knowledge and geographic gaps that need to be addressed, and discusses how better use of observations and long-term zooplankton monitoring programmes can help fill these gaps.
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