首页> 外文期刊>Journal of evolutionary biology >Clinal variation and laboratory adaptation in the rainforest species Drosophila birchii for stress resistance, wing size, wing shape and development time
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Clinal variation and laboratory adaptation in the rainforest species Drosophila birchii for stress resistance, wing size, wing shape and development time

机译:雨林物种果蝇果蝇的抗力,机翼大小,机翼形状和发育时间的斜度变化和实验室适应

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Clinal variation has been described in many invertebrates including drosophilids but usually over broad geographical gradients. Here we describe clinal variation in the rainforest species Drosophila birchii from Queensland, Australia, and potential confounding effects of laboratory adaptation. Clinal variation was detected for starvation and development time, but not for size or resistance to temperature extremes. Starvation resistance was higher at southern locations. Wing shape components were not associated with latitude although they did differ among populations. Time in laboratory culture did not influence wing size or heat knockdown resistance, but increased starvation resistance and decreased recovery time following a cold shock. Laboratory culture also increased development time and altered wing shape. The results indicate that clinal patterns can be detected in Drosophila over a relatively narrow geographical area. Laboratory adaptation is unlikely to have confounded the detection of geographical patterns.
机译:在许多无脊椎动物(包括果蝇)中都描述了斜变,但通常在广泛的地理梯度上。在这里,我们描述了来自澳大利亚昆士兰州的热带雨林物种Drosophila birchii的临斜变化,以及实验室适应的潜在混杂效应。检测到饥饿和发育时间的生殖器变异,但未检测到大小或对极端温度的抵抗力。南部地区的饥饿抵抗力较高。机翼形状成分与纬度无关,尽管它们在人群之间确实有所不同。在实验室培养的时间不会影响机翼的大小或抗热击倒性,但会增加抗饥饿性,并减少冷冲击后的恢复时间。实验室培养还增加了开发时间并改变了机翼形状。结果表明可以在相对狭窄的地理区域的果蝇中检测到斜纹样。实验室适应措施不太可能混淆地理图案的检测。

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