Transcriptomic Landscape of Polypide Development in the Freshwater Bryozoan Cristatella mucedo: From Budding to Degeneration.

IF 1.8 3区 生物学 Q3 DEVELOPMENTAL BIOLOGY
A Yu Kvach, V A Kutyumov, V V Starunov, A N Ostrovsky
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引用次数: 0

Abstract

Colonial invertebrates consist of iterative semi-autonomous modules (usually termed zooids) whose lifespan is significantly shorter than that of the entire colony. Typically, module development begins with budding and ends with degeneration. Most studies on the developmental biology of colonial invertebrates have focused on blastogenesis, whereas the changes occurring throughout the entire zooidal life were examined only for a few tunicates. Here we provide the first description of transcriptomic changes during polypide development in the freshwater bryozoan Cristatella mucedo. For the first time for Bryozoa, we performed bulk RNA sequencing of six polypide stages in C. mucedo (buds, juvenile polypides, three mature stages, and degeneration stage) and generated a high-quality de novo reference transcriptome. Based on these data, we analyzed clusters of differentially expressed genes for enriched pathways and biological processes that may be involved in polypide budding, growth, active functioning, and degradation. Although stem cells have never been described in Bryozoa, our analysis revealed the expression of conservative "stemness" markers in developing buds and juvenile polypides. Our data also indicate that polypide degeneration is a complex regulated process involving autophagy and other types of programmed cell death. We hypothesize that the mTOR signaling pathway plays an important role in regulating the polypide lifespan.

淡水苔藓虫(Cristatella mucedo)多形体发育的转录组学景观:从萌芽到退化。
殖民地无脊椎动物由迭代的半自治模块(通常称为动物)组成,其寿命明显短于整个殖民地。通常,模块开发从萌芽开始,以退化结束。大多数关于群体无脊椎动物发育生物学的研究都集中在胚胎发生上,而在整个动物生命过程中发生的变化只对少数被囊动物进行了研究。在这里,我们首次描述了淡水苔藓虫Cristatella mucedo多晶体发育过程中转录组学的变化。我们首次对苔藓虫(Bryozoa)的6个多形体阶段(芽、幼多形体、3个成熟期和退化期)进行了大量RNA测序,并生成了一个高质量的从头参照转录组。基于这些数据,我们分析了差异表达基因簇的富集途径和生物过程,这些途径和生物过程可能涉及聚酰亚胺的萌芽、生长、活性功能和降解。虽然干细胞从未在苔藓虫中被描述过,但我们的分析揭示了保守的“干性”标记在发育中的芽和幼体息肉中的表达。我们的数据还表明,多晶体变性是一个复杂的调控过程,涉及自噬和其他类型的程序性细胞死亡。我们假设mTOR信号通路在调节多细胞寿命中起重要作用。
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来源期刊
CiteScore
4.80
自引率
9.10%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Developmental Evolution is a branch of evolutionary biology that integrates evidence and concepts from developmental biology, phylogenetics, comparative morphology, evolutionary genetics and increasingly also genomics, systems biology as well as synthetic biology to gain an understanding of the structure and evolution of organisms. The Journal of Experimental Zoology -B: Molecular and Developmental Evolution provides a forum where these fields are invited to bring together their insights to further a synthetic understanding of evolution from the molecular through the organismic level. Contributions from all these branches of science are welcome to JEZB. We particularly encourage submissions that apply the tools of genomics, as well as systems and synthetic biology to developmental evolution. At this time the impact of these emerging fields on developmental evolution has not been explored to its fullest extent and for this reason we are eager to foster the relationship of systems and synthetic biology with devo evo.
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