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Analyzing Fluctuating Asymmetry with Geometric Morphometrics: Concepts, Methods, and Applications

机译:用几何形态计量学分析波动不对称:概念,方法和应用

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Approximately two decades after the first pioneering analyses, the study of shape asymmetry with the methods of geometric morphometrics has matured and is a burgeoning field. New technology for data collection and new methods and software for analysis are widely available and have led to numerous applications in plants and animals, including humans. This review summarizes the concepts and morphometric methods for studying asymmetry of shape and size. After a summary of mathematical and biological concepts of symmetry and asymmetry, a section follows that explains the methods of geometric morphometrics and how they can be used to analyze asymmetry of biological structures. Geometric morphometric analyses not only tell how much asymmetry there is, but also provide information about the patterns of covariation in the structure under study. Such patterns of covariation in fluctuating asymmetry can provide valuable insight about the developmental basis of morphological integration, and have become important tools for evolutionary developmental biology. The genetic basis of fluctuating asymmetry has been studied from empirical and theoretical viewpoints, but serious challenges remain in this area. There are many promising areas for further research that are only little explored at present.
机译:在首次开创性分析之后大约二十年,使用几何形态计量学方法进行形状不对称性的研究已经成熟,并且正在蓬勃发展。用于数据收集的新技术以及用于分析的新方法和软件广泛可用,并已导致动植物在包括人类在内的众多应用。这篇综述总结了研究形状和尺寸不对称性的概念和形态计量方法。在对对称性和不对称性的数学和生物学概念进行了总结之后,以下部分介绍了几何形态计量学的方法以及如何将其用于分析生物结构的不对称性。几何形态计量分析不仅表明存在多少不对称性,而且还提供有关所研究结构中协变模式的信息。这种在不对称性波动中的协变模式可以提供有关形态整合发展基础的宝贵见解,并已成为进化发育生物学的重要工具。从经验和理论的角度研究了波动不对称的遗传基础,但是在这一领域仍然存在严峻的挑战。目前有很多有希望的领域有待进一步研究,而很少进行探索。

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