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首页> 外文期刊>Evolutionary Ecology >Fruit colour polymorphism in Acacia ligulata: seed and seedling performance, clinal patterns, and chemical variation
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Fruit colour polymorphism in Acacia ligulata: seed and seedling performance, clinal patterns, and chemical variation

机译:阿拉伯相思果实颜色多态性:种子和幼苗性能,斜纹格局和化学变化

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摘要

Fruit colour polymorphisms arc widespread in nature, but their ecological and evolutionary dynamics remain poorly understood. Here we examine Acacia ligulata, a shrub of the Australian arid zone which exhibits u red/orange/yellow aril colour polymorphism. We asked whether the polymorphism had a genetic basis; whether selection acted differentially on morphs during the seed and seedling stages; whether geographic variation in morph frequencies was correlated with environmental factors; and whether morphs differed in physical or chemical characteristics that might influence selection on them. When grown to maturity in a common greenhouse environment, maternal families of seeds showed phenotypic patterns consistent with biparental genetic control of the polymorphism. In contrast to other fruit-colour polymorphic species, progeny of A. ligulata morphs did not vary in rates of seedling emergence or survival in a common garden. Sampling along a 580 km transect revealed clinal variation in morph frequencies. Frequencies of the yellow morph decreased, and frequencies of the red morph increased, across a gradient of decreasing temperature and increasing rainfall. Morphs did not differ in seed mass, aril mass, or in profiles of fatty acids and flavonoids in either arils or seeds. However, morphs showed consistent differences in carotenoid profiles and elemental content of arils, suggesting that selection by avian and insect seed dispersers, seed predators and herbivores should be investigated. These patterns indicate that both abiotic and biotic factors may contribute to selection on the A. ligulata polymorphism.
机译:水果颜色多态性在自然界中很普遍,但是对其生态和进化动力学的了解仍然很少。在这里,我们研究了澳大利亚干旱地区的灌木相思树(Acacia ligulata),该灌木表现出u红色/橙色/黄色假种皮颜色多态性。我们问多态性是否有遗传基础?在种子和幼苗阶段选择是否对形态有不同的作用;变体频率的地理变化是否与环境因素相关;以及变体的物理或化学特性是否不同,这可能会影响其选择。在常见的温室环境中成熟后,种子的母亲家庭表现出与双亲遗传控制多态性相一致的表型模式。与其他果色多态性物种相比,A。ligulata形态的后代在普通花园中的幼苗出苗率或存活率没有变化。沿580 km的断面采样显示出变体频率的梯度变化。在温度下降和降雨增加的梯度下,黄色变体的频率降低,红色变体的频率增加。形态在种子质量,假种皮质量或假种皮或种子中脂肪酸和类黄酮的概况上没有差异。然而,形态显示类胡萝卜素的轮廓和假种皮的元素含量具有一致的差异,这表明应该研究鸟类和昆虫种子分散剂,种子捕食者和草食动物的选择。这些模式表明非生物因素和生物因素都可能有助于对轻木曲霉多态性的选择。

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