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在一个多样化的蝾螈类群中,微型化、基因组大小和生物大小。

Miniaturization, Genome Size, and Biological Size in a Diverse Clade of Salamanders.

出版信息

Am Nat. 2020 Nov;196(5):634-648. doi: 10.1086/711019. Epub 2020 Sep 23.

Abstract

AbstractGenome size (C-value) can affect organismal traits across levels of biological organization from tissue complexity to metabolism. Neotropical salamanders show wide variation in genome and body sizes, including several clades with miniature species. Because miniaturization imposes strong constraints on morphology and development and because genome size is strongly correlated with cell size, we hypothesize that body size has played an important role in the evolution of genome size in bolitoglossine salamanders. If this hypothesis is correct, then genome size and body size should be correlated in this group. Using Feulgen image analysis densitometry, we estimated genome sizes for 60 species of Neotropical salamanders. We also estimated the "biological size" of species by comparing genome size and physical body sizes in a phylogenetic context. We found a significant correlation between C-value and physical body size using optimal regression with an Ornstein-Uhlenbeck model and report the smallest salamander genome found to date. Our index of biological size showed that some salamanders with large physical body size have smaller biological body size than some miniature species and that several clades demonstrate patterns of increased or decreased biological size compared with their physical size. Our results suggest a causal relationship between physical body size and genome size and show the importance of considering the impact of both on the biological size of organisms. Indeed, biological size may be a more appropriate measure than physical size when considering phenotypic consequences of genome size evolution in many groups.

摘要

摘要 基因组大小(C 值)可以影响从组织复杂性到新陈代谢等不同层次的生物体特征。新热带地区的蝾螈在基因组和体型大小方面表现出广泛的变异,包括几个具有微型物种的分支。由于微型化对形态和发育施加了强烈的限制,并且由于基因组大小与细胞大小强烈相关,因此我们假设体型在玻利托格洛塞氏蝾螈的基因组大小进化中发挥了重要作用。如果这个假设是正确的,那么在这个群体中,基因组大小和体型应该相关。我们使用 Feulgen 图像分析密度计估计了 60 种新热带地区蝾螈的基因组大小。我们还通过在系统发育背景下比较基因组大小和物理体型,估计了物种的“生物大小”。我们使用最优回归和 Ornstein-Uhlenbeck 模型发现 C 值与物理体型之间存在显著相关性,并报告了迄今为止发现的最小蝾螈基因组。我们的生物大小指数表明,一些具有较大物理体型的蝾螈的生物体型比一些微型物种小,并且一些分支与它们的物理体型相比表现出生物大小增加或减少的模式。我们的研究结果表明,体型与基因组大小之间存在因果关系,并表明在考虑许多群体中基因组大小进化对生物体型的表型影响时,考虑两者的重要性。事实上,当考虑基因组大小进化对表型的影响时,生物大小可能是比物理大小更合适的度量标准。

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