Bmper is required for morphogenesis of the anterior and posterior semicircular canal ducts in the developing zebrafish inner ear

S. Baxendale, Esther C. Maier, N. Obholzer, Sarah Burbridge, J. Zinski, F. Tuazon, N. V. Van Hateren, M. M. G. Romero, M. Marzo, K. Yokoya, R. Knight, Sean Gregory Megason, M. Mullins, T. Whitfield
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Abstract

BMP signalling is known to have a conserved function in development of the semicircular canal system of the vertebrate inner ear, but its regulation, target genes and effects on cell behaviour during otic morphogenesis are not fully understood. We have characterised the effects of mutations in the zebrafish gene bmper, which codes for a regulator of BMP signalling with both pro- and anti-BMP roles in different developmental contexts. The inner ears of bmper mutant embryos develop with truncations of the anterior and posterior semicircular canal ducts. To image the developing ear in live embryos, we have exploited a new transgenic line, Tg(smad6b:EGFP), which exhibits strong GFP expression in the otic epithelium. Morphometric analysis indicates defects in the bmper mutant ear from early stages of semicircular canal formation, correlating with a specific reduction in BMP signalling activity and specific loss of dlx5a expression in dorsal otic epithelium. Subsequent changes to cell shape occur at the truncation site and the dorsolateral septum. The bmper mutations that we describe are adult viable; truncation of the anterior and posterior semicircular canal ducts persists into adulthood. Our results argue against a major role for Bmper in specification of the pre-placodal region, induction of the otic placode, or development of the neural crest, processes in which Bmper function has previously been implicated. Instead, we conclude that a key requirement for Bmper function in the zebrafish is to promote BMP signalling during patterning and morphogenesis of the semicircular canal system.
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在发育中的斑马鱼内耳中,前半规管和后半规管的形态发生需要Bmper
众所周知,BMP信号在脊椎动物内耳半规管系统的发育中具有保守的功能,但其调控、靶基因和在听觉形态发生过程中对细胞行为的影响尚不完全清楚。我们描述了斑马鱼基因bper突变的影响,该基因编码BMP信号调节因子,在不同的发育背景下具有促BMP和抗BMP的作用。bmper突变体胚胎的内耳发育伴有前后半规管的截断。为了在活胚胎中成像发育中的耳朵,我们利用了一种新的转基因系Tg(smad6b:EGFP),它在耳上皮中表现出强烈的GFP表达。形态计量学分析表明,在半规管形成的早期阶段,BMP突变体的耳朵存在缺陷,这与BMP信号活性的特异性降低和耳背上皮中dlx5a表达的特异性缺失有关。随后细胞形状的改变发生在截断部位和背外侧隔膜。我们描述的基因突变是成虫存活的;前半规管和后半规管截短一直持续到成年。我们的研究结果反对Bmper在胎盘前区域的指定、耳板的诱导或神经嵴的发育中起主要作用,这些过程先前涉及到Bmper的功能。相反,我们得出结论,斑马鱼中BMP功能的一个关键要求是在半规管系统的模式和形态发生过程中促进BMP信号传导。
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