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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Integrated phenotypes: understanding trait covariation in plants and animals
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Integrated phenotypes: understanding trait covariation in plants and animals

机译:综合表型:了解植物和动物的性状协变

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摘要

Integration and modularity refer to the patterns and processes of trait interaction and independence. Both terms have complex histories with respect to both conceptualization and quantification, resulting in a plethora of integration indices in use. We review briefly the divergent definitions, uses and measures of integration and modularity and make conceptual links to allometry. We also discuss how integration and modularity might evolve. Although integration is generally thought to be generated and maintained by correlational selection, theoretical considerations suggest the relationship is not straightforward. We caution here against uncontrolled comparisons of indices across studies. In the absence of controls for trait number, dimensionality, homology, development and function, it is difficult, or even impossible, to compare integration indices across organisms or traits. We suggest that care be invested in relating measurement to underlying theory or hypotheses, and that summative, theoryfree descriptors of integration generally be avoided. The papers that follow in this Theme Issue illustrate the diversity of approaches to studying integration and modularity, highlighting strengths and pitfalls that await researchers investigating integration in plants and animals.
机译:整合和模块化是指特质相互作用和独立性的模式和过程。这两个术语在概念化和量化方面都具有复杂的历史,从而导致使用过多的集成指标。我们简要回顾了集成和模块化的不同定义,用法和度量,并在概念上链接到了allometry。我们还将讨论集成和模块化如何发展。尽管通常认为集成是通过相关选择来生成和维护的,但理论上的考虑表明这种关系并不简单。我们在此告诫不要对研究之间的索引进行无控制的比较。在缺乏性状数量,维度,同源性,发育和功能的控制的情况下,很难甚至不可能比较整个生物体或性状的整合指数。我们建议应注意将度量与基础理论或假设联系起来,并且通常应避免使用没有理论性的概括性描述。本主题的后续论文阐述了研究整合和模块性的方法的多样性,突出了等待研究人员研究动植物整合的优势和陷阱。

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