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首页> 外文期刊>Journal of Genetics >Adaptation to different climates results in divergent phenotypic plasticity of wing size and shape in an invasive drosophilid
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Adaptation to different climates results in divergent phenotypic plasticity of wing size and shape in an invasive drosophilid

机译:适应不同的气候会导致侵入性果蝇的机翼大小和形状出现不同的表型可塑性

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摘要

The phenotypic plasticity of wing size and wing shape of Zaprionus indianus was investigated in relation to growth temperature (17°C to 31°C) in two natural populations living under different climates, equatorial and subtropical. The two populations were clearly distinguished not only by their wing size (the populations from the colder climate being bigger in size), but also by the shape of the response curves to growth temperature i.e., their reaction norms. In this respect, the temperature at which the size of the wing was maximum was about 3°C higher in the equatorial population. Such a difference in size plasticity is already found in two other nonclosely related species, might be a general evolutionary pattern in drosophilids. Wing shape was investigated by calculating an ellipse included into the wing blade, then by considering the ratio of the two axes, and also by analysing the angular position of 10 wing-vein landmarks. For an overall shape index (ratio of the two axes of the ellipse), a regular and almost linear increase was observed with increasing temperature i.e., a more round shape at high temperatures. Wing shape was also analysed by considering the variations of the various angles according to temperature. A diversity of response curves was observed, revealing either a monotonous increase or decrease with increasing temperature, and sometimes a bell shape curve. An interesting conclusion is that, in most cases, a significant difference was observed between the two populations, and the difference was more pronounced at low temperatures. These angular variations are difficult to interpret in an evolutionary context. More comparative studies should be undertaken before reaching some general conclusions.
机译:研究了赤道​​和亚热带不同气候下两个自然种群Zaprionus indianus机翼大小和机翼形状的表型可塑性与生长温度(17°C至31°C)的关系。这两个种群不仅通过机翼大小(来自较冷气候的种群更大)而明显地区分,还通过对生长温度的响应曲线的形状即它们的反应范数得以明显区分。在这方面,赤道人口中机翼尺寸最大的温度大约高出3°C。这种大小可塑性的差异已经在其他两个非密切相关的物种中发现,可能是果蝇中的一般进化模式。通过计算包含在机翼叶片中的椭圆,然后考虑两个轴的比率,并通过分析10个机翼静脉界标的角位置,来研究机翼形状。对于总体形状指数(椭圆的两个轴的比率),观察到随着温度升高即在高温下更圆的形状而规则且几乎线性地增加。还通过考虑随温度变化的各种角度来分析机翼形状。观察到响应曲线的多样性,显示出随温度升高而单调增加或减少,有时呈钟形曲线。一个有趣的结论是,在大多数情况下,两个种群之间观察到了显着差异,并且在低温下差异更加明显。这些角度变化很难在进化的背景下解释。在得出一些一般性结论之前,应该进行更多的比较研究。

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