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首页> 外文期刊>Royal Society Open Science >Deletion/loss of bone morphogenetic protein 7 changes tooth morphology and function in Mus musculus: implications for dental evolution in mammals
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Deletion/loss of bone morphogenetic protein 7 changes tooth morphology and function in Mus musculus: implications for dental evolution in mammals

机译:骨形态发生蛋白7的缺失/缺失改变了小家鼠的牙齿形态和功能:对哺乳动物牙齿进化的影响

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Quantifying regulatory gene effects on dental morphology and function has implications for the underlying mechanisms that generated dental diversity in mammals. We tested the hypothesis that regulatory gene expression changes lead to differences in molars using a neural crest knockout of bone morphogenetic protein 7 (BMP7) in Mus musculus . Three-dimensional geometric morphometric methods were used to quantify the shape of the molar toothrow. BMP7 mutants have extra cusps on the first upper and lower molars, and alterations in cusp orientation and morphology. Furthermore, significant shape differences between control and mutant were found for upper and lower toothrows. Mutant mice also exhibited differences in attrition facets, indicating functional changes that could lead to advantages in chewing new food resources and eventually niche diversification. The size ratio of the molars in the toothrow remained unchanged, implying that BMP7-induced changes in molar size ratio are a result of knocking out epithelial, rather than neural crest, expression of BMP7. Our results indicate that changes in BMP7 expression are sufficient to alter the morphology and function of the toothrow, suggesting that BMP7 or genes affecting its function could have played a role in structuring the dental diversity of extinct and extant mammals.
机译:量化调节基因对牙齿形态和功能的影响,对在哺乳动物中产生牙齿多样性的潜在机制有影响。我们使用小家鼠中骨形态发生蛋白7(BMP7)的神经c基因敲除测试了调节基因表达变化导致臼齿差异的假说。三维几何形态计量学方法用于量化臼齿的形状。 BMP7突变体在第一和第二磨牙上具有额外的尖瓣,并且尖瓣方向和形态发生变化。此外,发现上下牙的对照和突变体之间存在明显的形状差异。突变小鼠的磨损面也表现出差异,表明功能变化可能导致咀嚼新的食物资源并最终利基多样化。牙槽中磨牙的大小比保持不变,这表明BMP7引起的磨牙大小比变化是敲除BMP7上皮而不是神经c表达的结果。我们的结果表明,BMP7表达的变化足以改变牙齿的形态和功能,表明BMP7或影响其功能的基因可能在构造灭绝和现存哺乳动物的牙齿多样性中发挥了作用。

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