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- W4376223893 startingPage "e3002102" @default.
- W4376223893 abstract "Connectivity of coral reef fish populations relies on successful dispersal of a pelagic larval phase. Pelagic larvae must exhibit high swimming abilities to overcome ocean and reef currents, but once settling onto the reef, larvae transition to endure habitats that become hypoxic at night. Therefore, coral reef fish larvae must rapidly and dramatically shift their physiology over a short period of time. Taking an integrative, physiological approach, using swimming respirometry, and examining hypoxia tolerance and transcriptomics, we show that larvae of cinnamon anemonefish (Amphiprion melanopus) rapidly transition between physiological extremes at the end of their larval phase. Daily measurements of swimming larval anemonefish over their entire early development show that they initially have very high mass-specific oxygen uptake rates. However, oxygen uptake rates decrease midway through the larval phase. This occurs in conjunction with a switch in haemoglobin gene expression and increased expression of myoglobin, cytoglobin, and neuroglobin, which may all contribute to the observed increase in hypoxia tolerance. Our findings indicate that critical ontogenetic changes in the gene expression of oxygen-binding proteins may underpin the physiological mechanisms needed for successful larval recruitment to reefs." @default.
- W4376223893 created "2023-05-13" @default.
- W4376223893 creator A5040899272 @default.
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- W4376223893 date "2023-05-11" @default.
- W4376223893 modified "2023-10-01" @default.
- W4376223893 title "Rapid physiological and transcriptomic changes associated with oxygen delivery in larval anemonefish suggest a role in adaptation to life on hypoxic coral reefs" @default.
- W4376223893 cites W1515052158 @default.
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- W4376223893 cites W1966105954 @default.
- W4376223893 cites W1977061297 @default.
- W4376223893 cites W1990111082 @default.
- W4376223893 cites W2004391982 @default.
- W4376223893 cites W2005545059 @default.
- W4376223893 cites W2008264704 @default.
- W4376223893 cites W2009463893 @default.
- W4376223893 cites W2015177658 @default.
- W4376223893 cites W2015583540 @default.
- W4376223893 cites W2017747777 @default.
- W4376223893 cites W2023075441 @default.
- W4376223893 cites W2024925761 @default.
- W4376223893 cites W2025518907 @default.
- W4376223893 cites W2033616165 @default.
- W4376223893 cites W2039206232 @default.
- W4376223893 cites W2048448569 @default.
- W4376223893 cites W2050345155 @default.
- W4376223893 cites W2054056959 @default.
- W4376223893 cites W2055315077 @default.
- W4376223893 cites W2058245537 @default.
- W4376223893 cites W2059626889 @default.
- W4376223893 cites W2077869250 @default.
- W4376223893 cites W2080725398 @default.
- W4376223893 cites W2084073041 @default.
- W4376223893 cites W2086075233 @default.
- W4376223893 cites W2088866723 @default.
- W4376223893 cites W2094873727 @default.
- W4376223893 cites W2102619082 @default.
- W4376223893 cites W2105020422 @default.
- W4376223893 cites W2107060225 @default.
- W4376223893 cites W2108354364 @default.
- W4376223893 cites W2109624746 @default.
- W4376223893 cites W2110684031 @default.
- W4376223893 cites W2119349404 @default.
- W4376223893 cites W2126326877 @default.
- W4376223893 cites W2130116522 @default.
- W4376223893 cites W2133472248 @default.
- W4376223893 cites W2138207763 @default.
- W4376223893 cites W2145825942 @default.
- W4376223893 cites W2147170648 @default.
- W4376223893 cites W2147819535 @default.
- W4376223893 cites W2150869840 @default.
- W4376223893 cites W2151441751 @default.
- W4376223893 cites W2156054670 @default.
- W4376223893 cites W2164612624 @default.
- W4376223893 cites W2167819432 @default.
- W4376223893 cites W2169456326 @default.
- W4376223893 cites W2171552191 @default.
- W4376223893 cites W2179438025 @default.
- W4376223893 cites W2254509181 @default.
- W4376223893 cites W2300354143 @default.
- W4376223893 cites W2302676960 @default.
- W4376223893 cites W2303243836 @default.
- W4376223893 cites W2395916326 @default.
- W4376223893 cites W2406250479 @default.
- W4376223893 cites W2555032057 @default.
- W4376223893 cites W2618840874 @default.
- W4376223893 cites W2731828384 @default.
- W4376223893 cites W2767038349 @default.
- W4376223893 cites W2809514549 @default.
- W4376223893 cites W2811326047 @default.
- W4376223893 cites W2898580681 @default.
- W4376223893 cites W2910266765 @default.
- W4376223893 cites W2944566332 @default.
- W4376223893 cites W2998089069 @default.
- W4376223893 cites W3014155635 @default.
- W4376223893 cites W3020270716 @default.
- W4376223893 cites W3049229588 @default.
- W4376223893 cites W3120924783 @default.
- W4376223893 cites W3173208887 @default.
- W4376223893 cites W3209172815 @default.
- W4376223893 cites W4200135473 @default.
- W4376223893 cites W4200313877 @default.
- W4376223893 cites W4250250061 @default.
- W4376223893 cites W4281263717 @default.
- W4376223893 cites W4292219767 @default.
- W4376223893 cites W4309506674 @default.
- W4376223893 doi "https://doi.org/10.1371/journal.pbio.3002102" @default.
- W4376223893 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37167194" @default.
- W4376223893 hasPublicationYear "2023" @default.
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