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Spatial analyses of two color polymorphisms in an alpine grasshopper reveal a role of small‐scale heterogeneity

机译:高山蝗虫两种颜色多态性的空间分析揭示了小规模异质性的作用

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摘要

Discrete color polymorphisms represent a fascinating aspect of intraspecific diversity. Color morph ratios often vary clinally, but in some cases, there are no marked clines and mixes of different morphs occur at appreciable frequencies in most populations. This poses the questions of how polymorphisms are maintained. We here study the spatial and temporal distribution of a very conspicuous color polymorphism in the club‐legged grasshopper Gomphocerus sibiricus. The species occurs in a green and a nongreen (predominately brown) morph, a green–brown polymorphism that is common among Orthopteran insects. We sampled color morph ratios at 42 sites across the alpine range of the species and related color morph ratios to local habitat parameters and climatic conditions. Green morphs occurred in both sexes, and their morph ratios were highly correlated among sites, suggesting shared control of the polymorphism in females and males. We found that in at least 40 of 42 sites green and brown morphs co‐occurred with proportions of green ranging from 0% to 70% with significant spatial heterogeneity. The proportion of green individuals tended to increase with decreasing summer and winter precipitations. Nongreen individuals can be further distinguished into brown and pied individuals, and again, this polymorphism is shared with other grasshopper species. We found pied individuals at all sites with proportions ranging from 3% to 75%, with slight, but significant variation between years. Pied morphs show a clinal increase in frequency from east to west and decreased with altitude and lower temperatures and were more common on grazed sites. The results suggest that both small‐scale and large‐scale spatial heterogeneity affects color morph ratios. The almost universal co‐occurrence of all three color morphs argues against strong effects of genetic drift. Instead, the data suggest that small‐scale migration–selection balance and/or local balancing selection maintain populations polymorphic.
机译:离散的颜色多态性代表种内多样性的一个迷人方面。颜色变体比率通常会发生变化,但是在某些情况下,没有明显的线条,并且在大多数人群中,不同变体的混合以明显的频率出现。这就提出了如何保持多态性的问题。我们在这里研究了棍状蚱Go Gomphocerus sibiricus中一个非常明显的颜色多态性的时空分布。该物种以绿色和非绿色(主要是棕色)形态出现,这是直翅目昆虫中常见的绿棕色多态性。我们在该物种的高山范围内的42个地点采样了颜色形态比,并根据当地生境参数和气候条件对相关颜色形态比进行了采样。男性和女性中均出现绿色形态,并且它们的形态比例高度相关,这表明男性和女性均受多态性的共同控制。我们发现,在42个站点中,至少有40个站点​​同时出现绿色和棕色形态,绿色比例从0%到70%不等,并且存在明显的空间异质性。随着夏季和冬季降水的减少,绿色个体的比例趋于增加。非绿色个体可以进一步区分为棕色和花斑个体,而且这种多态性与其他蚱other物种共有。我们发现所有地点的染色个体的比例从3%到75%不等,不同年份之间差异很小,但差异很大。染色形态从东向西显示出逐渐增加的频率,并随着海拔和温度的降低而下降,在放牧的地方更为常见。结果表明,小范围和大范围的空间异质性都会影响颜色变形率。所有这三种颜色形态几乎都同时出现,这与遗传漂移的强烈影响相抵触。取而代之的是,数据表明,小规模的迁移选择平衡和/或局部平衡选择使种群保持了多态性。

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