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- W2324037535 abstract "The calanoid copepod Eurytemora affinis (Poppe) is a year-round inhabitat of the Chesapeake Bay, experiencing temperatures ranging from 0 C to 30 C. Since the generation time is only about three weeks at 15 C, much less than the seasonal cycle, individuals do not experience the entire range of temperatures. Adaptation to seasonal variation could be at least partly genetic. However, although seasonal differences in adaptation, measured as temperature tolerance, were found, these differences were not genetic (Bradley, 1981), in spite of the presence of a large amount of genetic variance in temperature tolerance in Eurytemora (Bradley, 1978b). The apparent absence of short-term selection effects raises the question of whether temperature tolerance can in fact be changed genetically by selection. Morrison and Milkman (1978) were able to alter heat resistance in Drosophila lines, especially in the downward direction and, earlier, Dallinger (1887) selected populations of flagellates for temperature tolerance over a seven-year period, beginning at 16 C. When the culture temperature reached 70 C the selected populations would no longer grow at 16 C, their original optimum. The results reported here show genetic adaptation to several constant and fluctuating temperatures. Based on other experiments, genetic response in Eurytemora seems to depend on the rate of environmental change." @default.
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- W2324037535 date "1982-03-01" @default.
- W2324037535 modified "2023-10-17" @default.
- W2324037535 title "RATE OF ENVIRONMENTAL CHANGE AND ADAPTATION IN THE COPEPOD <i>EURYTEMORA AFFINIS</i>" @default.
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- W2324037535 doi "https://doi.org/10.1111/j.1558-5646.1982.tb05045.x" @default.
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