Program in Organismic and Evolutionary Biology, University of Massachusetts Amherst, Amherst, Massachusetts, USA.
Department of Biological Sciences, Smith College, Northampton, Massachusetts, USA.
J Eukaryot Microbiol. 2022 Sep;69(5):e12898. doi: 10.1111/jeu.12898. Epub 2022 Mar 16.
Ciliates are defined by the presence of dimorphic nuclei as they have both a somatic macronucleus and germline micronucleus within each individual cell. The size and structure of both germline micronuclei and somatic macronuclei vary tremendously among ciliates. Except just after conjugation (i.e. the nuclear exchange in their life cycle), the germline micronucleus is transcriptionally inactive and contains canonical chromosomes that will be inherited between generations. In contrast, the transcriptionally active macronucleus contains chromosomes that vary in size in different classes of ciliates, with some lineages having extensively fragmented gene-sized somatic chromosomes while others contain longer multigene chromosomes. Here, we describe the variation in somatic macronuclear architecture in lineages sampled across the ciliate tree of life, specifically focusing on lineages with extensively fragmented chromosomes (e.g. the classes Phyllopharyngea and Spirotrichea). Further, we synthesize information from the literature on the development of ciliate macronuclei, focusing on changes in nuclear architecture throughout life cycles. These data highlight the tremendous diversity among ciliate nuclear cycles, extend our understanding of patterns of genome evolution, and provide insight into different germline and somatic nuclear features (e.g. nuclear structure and development) among eukaryotes.
纤毛虫的定义是存在二形核,因为它们在每个个体细胞中都有体细胞巨核和生殖线微核。生殖线微核和体细胞巨核的大小和结构在纤毛虫中差异极大。除了刚刚发生接合(即生命周期中的核交换)之后,生殖线微核是转录失活的,并且包含将在世代之间遗传的规范染色体。相比之下,转录活跃的巨核含有在不同类纤毛虫中大小不同的染色体,有些谱系具有广泛碎片化的基因大小的体细胞染色体,而其他谱系则含有更长的多基因染色体。在这里,我们描述了跨越纤毛虫生命之树的谱系中体细胞巨核结构的变化,特别是重点关注染色体广泛碎片化的谱系(例如 Phyllopharyngea 和 Spirotrichea 类)。此外,我们综合了文献中关于纤毛虫巨核发育的信息,重点关注整个生命周期中核结构的变化。这些数据突出了纤毛虫核循环之间的巨大差异,扩展了我们对基因组进化模式的理解,并提供了对真核生物中不同生殖线和体细胞核特征(例如核结构和发育)的深入了解。