Laboratory of Fish and Amphibian Ethology, Behavioural Biology Unit, University of Liège, 22 Quai van Beneden, 4020 Liège, Belgium.
BMC Evol Biol. 2009 Dec 2;9:278. doi: 10.1186/1471-2148-9-278.
Sexual size dimorphism (SSD) is a key evolutionary feature that has been studied in many organisms. In a wide range of species, this pattern is more complex because of polymorphism within each sex. However, it is not known whether the magnitude and direction of SSD could be affected by alternative developmental trajectories within sexes. Our aim was to test whether an intrasexual polymorphism, facultative paedomorphosis (a process in which the development of somatic and gonadal tissues differs in alternative morphs), could affect SSD variation patterns in European newts.
We report here the first evidence that SSD varies depending on the paedomorphic or metamorphic ontogenetic pathway. In species with a consistent female-biased SSD, paedomorphosis decreased the SSD level, but did not affect its direction. In species with moderate female-biased SSD or variable SSD patterns, paedomorphosis changed the magnitude, or both the magnitude and the direction, of SSD.
Our study highlights the importance of developmental processes for shaping SSD patterns in populations in which contrasting life-history pathways evolved. European newts express different SSD patterns depending on their developmental pathway (i.e., metamorphosis versus paedomorphosis), as well as their species and population. These findings emphasize the importance of studying alternative morphotypes, which are found in a wide range of animal groups, to understand the evolution of SSD.
性二型(SSD)是一个关键的进化特征,已经在许多生物中进行了研究。在广泛的物种中,这种模式更加复杂,因为每个性别内部都存在多态性。然而,目前尚不清楚 SSD 的幅度和方向是否会受到性别内部替代发育轨迹的影响。我们的目的是测试性内多态性——兼性幼态发生(一种在替代形态中体组织和性腺组织的发育不同的过程)是否会影响欧洲蝾螈的 SSD 变化模式。
我们在这里首次报告了 SSD 随幼态发生或变态发生的胚胎发育途径而变化的证据。在具有一致雌性偏态 SSD 的物种中,幼态发生降低了 SSD 水平,但不影响其方向。在具有中度雌性偏态 SSD 或可变 SSD 模式的物种中,幼态发生改变了 SSD 的幅度,或幅度和方向。
我们的研究强调了发育过程对塑造具有不同进化生活史途径的种群中 SSD 模式的重要性。欧洲蝾螈根据其发育途径(即变态与幼态发生)以及其物种和种群表现出不同的 SSD 模式。这些发现强调了研究替代形态的重要性,这些形态存在于广泛的动物群体中,以了解 SSD 的进化。