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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Thermal evolution of growth efficiency in Drosophila melanogaster.
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Thermal evolution of growth efficiency in Drosophila melanogaster.

机译:果蝇生长效率的热演化。

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摘要

Drosophila melanogaster shows geographic clines in body size, with genetically larger flies being found further from the equator and at higher altitudes. In the laboratory, evolution at lower temperatures results in genetically larger flies, and development at low temperature increases adult body size. This study demonstrates that when newly hatched larvae from laboratory temperature selection lines were raised on fixed amounts of food (yeast) at the same temperature, larvae from the lines with the cold evolutionary history required less food to produce a given size of adult. Larvae from both high- and low-temperature selection lines required more food, however, to make a given size of adult when grown in the cold than when grown in the hot. The opposite associations between growth efficiency and adult body size seen with evolution or development at low temperature are puzzling, and suggest that different mechanisms may underlie the size changes. Since environmental and evolutionary effects of temperature on body size seem to be widespread among ectotherms, some basic aspects of thermal physiology must be involved.
机译:果蝇(Drosophila melanogaster)的体型显示地理地理优势,在离赤道更远,海拔更高的地方发现了遗传上更大的苍蝇。在实验室中,低温下的进化会导致遗传上更大的苍蝇,而低温下的发育会增加成虫的体型。这项研究表明,当在相同温度下将一定数量的食物(酵母)上新近孵化的实验室温度选择品系中的幼虫饲养时,具有寒冷进化史的品系中的幼虫需要较少的食物才能生产给定大小的成年。来自高温和低温选择品系的幼虫需要更多的食物,以使其在寒冷条件下生长成一定数量的成年人比在高温条件下生长。在低温下,随着进化或发育,生长效率与成年体重之间的相反关联令人费解,这表明大小变化可能是不同的机制。由于温度对人体大小的环境和进化影响似乎在外热中很普遍,因此必须涉及热生理学的一些基本方面。

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