Data from: Transcriptomic responses of the calanoid copepod Calanus finmarchicus to the saxitoxin producing dinoflagellate Alexandrium fundyense
Data files
Mar 31, 2017 version files 8.38 MB
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2dayCvsHD.txt
45.08 KB
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2dayCvsLD.txt
34.44 KB
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2dayLDvsHD.txt
14.28 KB
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5dayCvsHD.txt
32.88 KB
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5dayCvsLD.txt
17.92 KB
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5dayLvsHD.txt
21.54 KB
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CfinmarchicusReferenceTranscriptome.csv
8.22 MB
Abstract
In the Gulf of Maine, the copepod Calanus finmarchicus co-occurs with the neurotoxin-producing dinoflagellate, Alexandrium fundyense. The copepod is resistant to this toxic alga, but little is known about other effects. Gene expression profiles were used to investigate the physiological response of females feeding for two and five days on a control diet or a diet containing either a low or a high dose of A. fundyense. The physiological responses to the two experimental diets were similar, but changed between the time points. At 5-days the response was characterized by down-regulated genes involved in energy metabolism. Detoxification was not a major component of the response. Instead, genes involved in digestion were consistently regulated, suggesting that food assimilation may have been affected. Thus, predicted increases in the frequency of blooms of A. fundyense could affect C. finmarchicus populations by changing the individuals’ energy budget and reducing their ability to build lipid reserves.
- Roncalli, Vittoria; Lenz, Petra H.; Cieslak, Matthew C.; Hartline, Daniel K. (2017), Complementary mechanisms for neurotoxin resistance in a copepod, Scientific Reports, Article-journal, https://doi.org/10.1038/s41598-017-14545-z
- Roncalli, Vittoria; Cieslak, Matthew C.; Lenz, Petra H. (2016), Transcriptomic responses of the calanoid copepod Calanus finmarchicus to the saxitoxin producing dinoflagellate Alexandrium fundyense, Scientific Reports, Article-journal, https://doi.org/10.1038/srep25708
