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首页> 外文期刊>Evolution: International Journal of Organic Evolution >THE EFFECT OF TEMPERATURE ON BODY SIZE AND FECUNDITY IN FEMALE DROSOPHILA MELANOGASTER - EVIDENCE FOR ADAPTIVE PLASTICITY
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THE EFFECT OF TEMPERATURE ON BODY SIZE AND FECUNDITY IN FEMALE DROSOPHILA MELANOGASTER - EVIDENCE FOR ADAPTIVE PLASTICITY

机译:温度对女果蝇身体大小和生殖能力的影响-适应性塑性的证据。

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The reaction norm linking rearing temperature and size in Drosophila melanogaster results in progressively larger flies as the temperature is lowered from 30 degrees C to 18 degrees C, but it has remained unclear whether this phenotypic plasticity is part of an adaptive response to temperature. We found that female D, melanogaster reared to adulthood at 18 degrees C versus 25 degrees C showed a 12% increase in dry weight. Measurements of the fecundity of these two types of fly showed that the size change had no effect on lifetime fecundity, regardless of the adult test temperature. Thus the phenotypic plasticity breaks the usual positive correlation between body size and fecundity. However, at a given temperature, early fecundity (defined as productivity for days 5 through 12 after eclosion at 25 degrees C and days 7 through 17 at 18 degrees C) was highest when the rearing and test temperatures were the same. The early fecundity advantage due to rearing at the test temperature was 25% at 18 degrees C and 16% at 25 degrees C, a result consistent with the overall phenotypic response to temperature being adaptive. This conclusion is further supported by the finding that the temperature treatments resulted in a trade-off between early fecundity and longevity, a trade-off that parallels the known genetic correlation. Another parallel is that both the temperature-induced and genetic effects are independent of total fecundity. By contrast, within the temperature treatments, the phenotypic correlation between early fecundity and longevity was positive, illustrating the danger of assuming that phenotypic and genetic correlations are similar, or even of the same sign. [References: 27]
机译:随着温度从30摄氏度降低到18摄氏度,果蝇黑腹果蝇的饲养温度和大小相关的反应规范导致果蝇逐渐增大,但是尚不清楚这种表型可塑性是否是对温度的适应性反应的一部分。我们发现,雌性黑腹黑猩猩在18摄氏度对25摄氏度饲养到成年后,干重增加了12%。对这两种类型的蝇的繁殖力的测量结果表明,大小变化对终生繁殖力没有影响,而与成年测试温度无关。因此,表型可塑性打破了体重和生殖力之间通常的正相关关系。但是,在给定的温度下,当饲养温度和测试温度相同时,早期繁殖力最高(定义为在25摄氏度下孵化后第5至12天和在18摄氏度下第7至17天的生产率)。由于在测试温度下饲养,早期繁殖力优势在18摄氏度时为25%,在25摄氏度时为16%,其结果与对温度的总体表型响应相适应。这一发现进一步得到以下发现的支持:温度处理导致了早期繁殖力和寿命之间的权衡,这一权衡与已知的遗传相关性平行。另一个相似之处是温度引起的遗传效应与总繁殖力无关。相比之下,在温度处理中,早期生殖力和寿命之间的表型相关为正,说明了假设表型和遗传相关相似或什至相同的迹象的危险。 [参考:27]

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