Evolutionarily conserved roles of foxg1a in the developing subpallium of zebrafish embryos

IF 1.7 4区 生物学 Q4 CELL BIOLOGY Development Growth & Differentiation Pub Date : 2024-02-20 DOI:10.1111/dgd.12917
Koto Umeda, Kaiho Tanaka, Gazlima Chowdhury, Kouhei Nasu, Yuri Kuroyanagi, Kyo Yamasu
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Abstract

The vertebrate telencephalic lobes consist of the pallium (dorsal) and subpallium (ventral). The subpallium gives rise to the basal ganglia, encompassing the pallidum and striatum. The development of this region is believed to depend on Foxg1/Foxg1a functions in both mice and zebrafish. This study aims to elucidate the genetic regulatory network controlled by foxg1a in subpallium development using zebrafish as a model. The expression gradient of foxg1a within the developing telencephalon was examined semi-quantitatively in initial investigations. Utilizing the CRISPR/Cas9 technique, we subsequently established a foxg1a mutant line and observed the resultant phenotypes. Morphological assessment revealed that foxg1a mutants exhibit a thin telencephalon together with a misshapen preoptic area (POA). Notably, accumulation of apoptotic cells was identified in this region. In mutants at 24 h postfertilization, the expression of pallium markers expanded ventrally, while that of subpallium markers was markedly suppressed. Concurrently, the expression of fgf8a, vax2, and six3b was shifted ventrally, causing anomalous expression in regions typical of POA formation in wild-type embryos. Consequently, the foxg1a mutation led to expansion of the pallium and disrupted the subpallium and POA. This highlights a pivotal role of foxg1a in directing the dorsoventral patterning of the telencephalon, particularly in subpallium differentiation, mirroring observations in mice. Additionally, reduced expression of neural progenitor maintenance genes was detected in mutants, suggesting the necessity of foxg1a in preserving neural progenitors. Collectively, these findings underscore evolutionarily conserved functions of foxg1 in the development of the subpallium in vertebrate embryos.

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foxg1a 在斑马鱼胚胎皮下发育过程中的进化保守作用
脊椎动物的端脑叶由苍白球(背侧)和苍白球下(腹侧)组成。皮质下产生基底节,包括苍白球和纹状体。在小鼠和斑马鱼中,这一区域的发育被认为取决于 Foxg1/Foxg1a 的功能。本研究旨在以斑马鱼为模型,阐明Foxg1a在丘脑下发育过程中控制的遗传调控网络。初步研究对发育中端脑内 foxg1a 的表达梯度进行了半定量检测。随后,我们利用CRISPR/Cas9技术建立了一个foxg1a突变系,并观察了由此产生的表型。形态学评估显示,foxg1a突变体的端脑较薄,视前区(POA)畸形。值得注意的是,在这一区域发现了凋亡细胞的积累。在受精后 24 小时的突变体中,胼胝体标记的表达向腹侧扩展,而胼胝体下标记的表达则明显受到抑制。同时,fgf8a、vax2 和 six3b 的表达也向腹侧移动,导致野生型胚胎中 POA 形成的典型区域出现异常表达。因此,foxg1a 突变导致胼胝体扩张,破坏了胼胝体下和 POA。这凸显了 foxg1a 在引导端脑背腹模式化,尤其是在皮层下分化中的关键作用,这与在小鼠中的观察结果如出一辙。此外,在突变体中还检测到神经祖细胞维持基因的表达减少,这表明 foxg1a 在保存神经祖细胞方面的必要性。总之,这些研究结果强调了foxg1在脊椎动物胚胎皮层下发育过程中的进化保守功能。
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来源期刊
Development Growth & Differentiation
Development Growth & Differentiation 生物-发育生物学
CiteScore
4.60
自引率
4.00%
发文量
62
审稿时长
6 months
期刊介绍: Development Growth & Differentiation (DGD) publishes three types of articles: original, resource, and review papers. Original papers are on any subjects having a context in development, growth, and differentiation processes in animals, plants, and microorganisms, dealing with molecular, genetic, cellular and organismal phenomena including metamorphosis and regeneration, while using experimental, theoretical, and bioinformatic approaches. Papers on other related fields are also welcome, such as stem cell biology, genomics, neuroscience, Evodevo, Ecodevo, and medical science as well as related methodology (new or revised techniques) and bioresources. Resource papers describe a dataset, such as whole genome sequences and expressed sequence tags (ESTs), with some biological insights, which should be valuable for studying the subjects as mentioned above. Submission of review papers is also encouraged, especially those providing a new scope based on the authors’ own study, or a summarization of their study series.
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