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纤毛虫中超高度碎片化巨核的进化模型。

A model for the evolution of extremely fragmented macronuclei in ciliates.

机构信息

Department of Biology, Pomona College, Claremont, California, United States of America.

出版信息

PLoS One. 2013 May 21;8(5):e64997. doi: 10.1371/journal.pone.0064997. Print 2013.

Abstract

While all ciliates possess nuclear dimorphism, several ciliates - like those in the classes Phyllopharyngea, Spirotrichea, and Armophorea - have an extreme macronuclear organization. Their extensively fragmented macronuclei contain upwards of 20,000 chromosomes, each with upwards of thousands of copies. These features have evolved independently on multiple occasions throughout ciliate evolutionary history, and currently no models explain these structures in an evolutionary context. In this paper, we propose that competition between two forces - the limitation and avoidance of chromosomal imbalances as a ciliate undergoes successive asexual divisions, and the costs of replicating massive genomes - is sufficient to explain this particular nuclear structure. We present a simulation of ciliate cell evolution under control of these forces, allowing certain features of the population to change over time. Over a wide range of parameters, we observe the repeated emergence of this unusual genomic organization found in nature. Although much remains to be understood about the evolution of macronuclear genome organization, our results show that the proposed model is a plausible explanation for the emergence of these extremely fragmented, highly polyploid genomes.

摘要

虽然所有纤毛虫都具有核二态性,但有几种纤毛虫——如 Phyllopharyngea、Spirotrichea 和 Armophorea 类的纤毛虫——具有极端的巨核组织。它们广泛碎片化的巨核含有多达 20000 条染色体,每条染色体都有数千个拷贝。这些特征在纤毛虫进化史上多次独立进化,目前没有模型能从进化的角度解释这些结构。在本文中,我们提出,两种力量之间的竞争——纤毛虫经历连续无性分裂时染色体失衡的限制和避免,以及复制庞大基因组的成本——足以解释这种特殊的核结构。我们提出了一种在这些力控制下的纤毛虫细胞进化的模拟,允许种群中的某些特征随时间发生变化。在广泛的参数范围内,我们观察到了在自然界中发现的这种不寻常基因组组织的反复出现。尽管巨核基因组组织的进化还有很多需要了解,但我们的结果表明,所提出的模型是对这些极度碎片化、高度多倍体基因组出现的合理解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1c8/3660376/1e3f0fe368a0/pone.0064997.g001.jpg

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