Descriptive versus causal morphology: gynandromorphism and intersexuality.

IF 1.3 4区 生物学 Q3 BIOLOGY
Giuseppe Fusco, Alessandro Minelli
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引用次数: 2

Abstract

In animal species with separate sexes, abnormal individuals with a mix of phenotypically male and phenotypically female body parts are generally indicated as gynandromorphs, whereas individuals with intermediate sexual phenotypic traits are generally indicated as intersexes. However, this distinction, clear as it may seem, is neither universally agreed upon, nor free of critical issues. In consideration of the role of sex anomalies in understanding normal development, we reassess these phenomena of abnormal sexual development, taking into consideration the more recent advances in the study of sex determination and sexual differentiation. We argue that a distinction between gynandromorphism and intersexuality, although useful for descriptive purposes, is not always possible or sensible. We discuss the conceptual and terminological intricacies of the literature on this subject and provide reasons for largely, although not strictly, preferring a terminology based on descriptive rather than causal morphology, that is, on the observed phenotypic patterns rather on the causal process behind them.

Abstract Image

Abstract Image

描述性形态学与因果形态学:雌雄同体和中间性。
在雌雄分离的动物物种中,混合了雄性和雌性身体部位的异常个体通常被认为是雌雄同体,而具有中间性表型特征的个体通常被认为是雌雄同体。然而,这种区别,虽然看起来很清楚,但既不是普遍同意的,也不是没有关键问题。考虑到性别异常在理解正常发育中的作用,我们重新评估这些异常性发育现象,并考虑到性别决定和性别分化研究的最新进展。我们认为,雌雄同体和间性之间的区别,虽然对描述目的有用,但并不总是可能的或明智的。我们讨论了关于这一主题的文献的概念和术语的复杂性,并在很大程度上(尽管不是严格地)提供了基于描述性形态学而不是因果形态学的术语的原因,也就是说,基于观察到的表型模式而不是它们背后的因果过程。
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来源期刊
Theory in Biosciences
Theory in Biosciences 生物-生物学
CiteScore
2.70
自引率
9.10%
发文量
21
审稿时长
3 months
期刊介绍: Theory in Biosciences focuses on new concepts in theoretical biology. It also includes analytical and modelling approaches as well as philosophical and historical issues. Central topics are: Artificial Life; Bioinformatics with a focus on novel methods, phenomena, and interpretations; Bioinspired Modeling; Complexity, Robustness, and Resilience; Embodied Cognition; Evolutionary Biology; Evo-Devo; Game Theoretic Modeling; Genetics; History of Biology; Language Evolution; Mathematical Biology; Origin of Life; Philosophy of Biology; Population Biology; Systems Biology; Theoretical Ecology; Theoretical Molecular Biology; Theoretical Neuroscience & Cognition.
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