Two hundred years of zooplankton vertical migration research
Двести лет исследований вертикальных миграций зоопланктона
2021-05-04
SCID: 54.1/7j2bj74b
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biological carbon sequestrationdiel vertical migrationglobal climate changeseasonal vertical migrationzooplankton
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Abstract (AI)
Vertical migration is a geographically and taxonomically widespread behaviour among zooplankton that spans across diel and seasonal timescales. The shorter-term diel vertical migration (DVM) has a periodicity of up to 1 day and was first described by the French naturalist Georges Cuvier in 1817. In 1888, the German marine biologist Carl Chun described the longer-term seasonal vertical migration (SVM), which has a periodicity of ca. 1 year. The proximate control and adaptive significance of DVM have been extensively studied and are well understood. DVM is generally a behaviour controlled by ambient irradiance, which allows herbivorous zooplankton to feed in food-rich shallower waters during the night when light-dependent (visual) predation risk is minimal and take refuge in deeper, darker waters during daytime. However, DVMs of herbivorous zooplankton are followed by their predators, producing complex predator-prey patterns that may be traced across multiple trophic levels. In contrast to DVM, SVM research is relatively young and its causes and consequences are less well understood. During periods of seasonal environmental deterioration, SVM allows zooplankton to evacuate shallower waters seasonally and take refuge in deeper waters often in a state of dormancy. Both DVM and SVM play a significant role in the vertical transport of organic carbon to deeper waters (biological carbon sequestration), and hence in the buffering of global climate change. Although many animal migrations are expected to change under future climate scenarios, little is known about the potential implications of global climate change on zooplankton vertical migrations and its impact on the biological carbon sequestration process. Further, the combined influence of DVM and SVM in determining zooplankton fitness and maintenance of their horizontal (geographic) distributions is not well understood. The contrasting spatial (deep versus shallow) and temporal (diel versus seasonal) scales over which these two migrations occur lead to challenges in studying them at higher spatial, temporal and biological resolution and coverage. Extending the largely population-based vertical migration knowledge base to individual-based studies will be an important way forward. While tracking individual zooplankton in their natural habitats remains a major challenge, conducting trophic-scale, high-resolution, year-round studies that utilise emerging field sampling and observation techniques, molecular genetic tools and computational hardware and software will be the best solution to improve our understanding of zooplankton vertical migrations.
Key Findings
1
Both migration types contribute to biological carbon sequestration, but climate-change effects and their combined influence on zooplankton fitness and geographic distributions remain uncertain.
2
Diel vertical migration is primarily controlled by irradiance, enabling herbivorous zooplankton to feed near the surface at night and avoid visual predators during daylight.
3
Predators track herbivorous zooplankton during diel migrations, generating complex predator–prey patterns that propagate across multiple trophic levels.
4
Progress requires individual-based, trophic-scale, high-resolution, year-round studies integrating emerging field observations, molecular genetics, and computational tools.
5
Seasonal vertical migration allows zooplankton to escape periods of environmental deterioration by moving into deeper waters, often entering dormancy; its causes and consequences remain poorly understood.
6
Zooplankton vertical migration is geographically and taxonomically widespread, occurring across diel and seasonal timescales documented since 1817 and 1888, respectively.
Research Object
Zooplankton vertical migration, including diel and seasonal migrations
Research Subject
The mechanisms, adaptive significance, ecological consequences, and climate-change sensitivity of diel and seasonal vertical migration, including effects on predator–prey interactions, zooplankton fitness, geographic distributions, and biological carbon sequestration
Publication Details
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2021-05-04
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