首页> 外文期刊>The Biological Bulletin >SENSITIVITY OF METABOLIC RATE, GROWTH, AND FECUNDITY OF TADPOLE SHRIMP TRIOPS LONGICAUDATUS TO ENVIRONMENTAL VARIATION
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SENSITIVITY OF METABOLIC RATE, GROWTH, AND FECUNDITY OF TADPOLE SHRIMP TRIOPS LONGICAUDATUS TO ENVIRONMENTAL VARIATION

机译:代谢速率,生长和小穗虾的长鳍金枪鱼对环境变化的敏感性

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The influence of fluctuations of ambient oxygen tensions and temperature on the rate of oxygen consumption (Vo(2)) was determined for the tadpole shrimp, Triops longicaudatus. Vo(2) was oxygen dependent up to 185 torr Po-2, and Q(10) for oxygen consumption between 20 degrees and 30 degrees C was 1.9. From these results it was estimated that oxygen consumption increases more than 1100 mu 1 . g(-1). h(-1) in T. longicaudatus for typical diurnal changes in temperature and oxygen in desert ephemeral pools. Elevated Vo(2) may be coupled with increased growth rate and fecundity, because these characteristics were highly sensitive to changes in ambient temperature and oxygen tension. Depressing mean daily temperatures by 2.3 degrees C significantly decreased body mass, whereas hyperoxia (200 torr) significantly increased growth compared to that of animals raised under hypoxic conditions (70 torr). Fecundity was dependent on animal mass and ambient oxygen tension. Thus, for a 22-day season, one T. longicaudatus female could produce 30 more eggs per 10 torr increase in oxygen tension and 43 more eggs per 1 degrees C change in mean daily temperature. These results indicate that there are selective pressures for metabolic sensitivity to the high temperature-high oxygen conditions of the ephemeral environments inhabited by T. longicaudatus.
机译:确定了shrimp虾Triops longicaudatus的环境氧气张力和温度波动对氧气消耗速率(Vo(2))的影响。 Vo(2)取决于氧气直至185 torr Po-2,而在20至30摄氏度之间的耗氧量Q(10)为1.9。根据这些结果,估计氧消耗增加了超过1100μ1。 g(-1)。 T. longicaudatus中的h(-1)用于沙漠临时池中温度和氧气的典型昼夜变化。升高的Vo(2)可能会增加生长速率和繁殖力,因为这些特性对环境温度和氧气张力的变化高度敏感。与在缺氧条件下饲养的动物(70托)相比,将平均每日温度降低2.3摄氏度可显着降低体重,而高氧(200托)可显着增加生长。繁殖力取决于动物的体重和环境中的氧气张力。因此,在22天的季节中,如果一只龙舌草雌虫的氧气压力每升高10托,则可以增加30枚卵,而平均每日温度每升高1摄氏度,雌虫就可以增加43枚卵。这些结果表明,对于长龙舌草所生活的短暂环境的高温-高氧条件,存在对代谢敏感性的选择性压力。

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