Near-future oceanic CO2 delays development and growth in early-stage larvae of the endemic New Zealand sea urchin, Evechinus chloroticus
Author:
Funder
Marsden Fund
Publisher
Springer Science and Business Media LLC
Subject
Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics
Link
https://link.springer.com/content/pdf/10.1007/s00227-021-03932-w.pdf
Reference79 articles.
1. Anderson D, Hedgecock D (2010) Inbreeding depression and growth heterosis in larvae of the purple sea urchin Stronglyocentrotus purpuratus (Stimpson). J Exp Mar Biol Ecol 384:68–75
2. Baker DW, Hudson ME, Frost EJ, Sewell MA (2018) Repeated measurement of MO2 in small aquatic organisms: a manual intermittent flow respirometer using off-the-shelf components. J Appl Physiol 124:741–749
3. Barker MF (2020) Evechinus chloroticus. In: Lawrence JM (ed) Sea urchins:Biology and ecology, 4th Edition. Book series:developments in aquaculture and fisheries science 43:529–536
4. Bodenstein L (2020) Simulations of sea urchin early development delineate the role of oriented cell division in the morula-to-blastula transition. Mech Dev 162:103606
5. Byrne M (2012) Global change ecotoxicology: Identification of early life history bottlenecks in marine invertebrates, variable species responses and variable experimental approaches. Mar Environ Res 76:3–15
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