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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Comparative Analyses of Phenotypic Trait Covariation within and among Populations
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Comparative Analyses of Phenotypic Trait Covariation within and among Populations

机译:群体内部和群体中表型特性协变的比较分析

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Many morphological, behavioral, physiological, and life-history traits covary across the biological scales of individuals, populations, and species. However, the processes that cause traits to covary also change over these scales, challenging our ability to use patterns of trait covariance to infer process. Trait relationships are also widely assumed to have generic functional relationships with similar evolutionary potentials, and even though many different trait relationships are now identified, there is little appreciation that these may influence trait covariation and evolution in unique ways. We use a trait-performance-fitness framework to classify and organize trait relationships into three general classes, address which ones more likely generate trait covariation among individuals in a population, and review how selection shapes phenotypic covariation. We generate predictions about how trait covariance changes within and among populations as a result of trait relationships and in response to selection and consider how these can be tested with comparative data. Careful comparisons of covariation patterns can narrow the set of hypothesized processes that cause trait covariation when the form of the trait relationship and how it responds to selection yield clear predictions about patterns of trait covariation. We discuss the opportunities and limitations of comparative approaches to evaluate hypotheses about the evolutionary causes and consequences of trait covariation and highlight the importance of evaluating patterns within populations replicated in the same and in different selective environments. Explicit hypotheses about trait relationships are key to generating effective predictions about phenotype and its evolution using covariance data.
机译:跨越个人,人群和物种的生物学尺度的许多形态学,行为,生理和生活历史特征。然而,导致科罗拉里的过程的过程也会改变这些尺度,挑战我们利用特质协方差模式来推断过程的能力。众所周知,特质关系也被广泛地具有与类似的进化潜力具有通用的功能关系,甚至现在已经确定了许多不同的特征关系,几乎没有欣赏这些可能以独特方式影响特质协变量和演变。我们使用特质 - 性能健身框架来分类和组织特质关系分为三个一般课程,在人口中更有可能在人口中的个体之间产生特质协变的地址,以及审查如何选择表型协变量。我们生成关于如何由于特质关系而在群体内部和群体中的特征变化以及选择选择,并考虑如何用比较数据进行测试。当特征关系的形式以及如何响应特性协变度的选择率明确预测时,仔细的协变模式可以缩小导致特质协变的假设过程。我们讨论了对比较方法的机会和局限性评估了对特性协会的进化原因和后果的假设,并突出了在同一和不同选择性环境中复制的种群内评估模式的重要性。关于特征关系的显式假设是产生关于使用协方差数据的表型及其演进的有效预测的关键。

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