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Ultrastructure of enamel and dentine in extant dolphins (Cetacea: Delphinoidea and Inioidea)

机译:现存海豚中牙釉质和牙本质的超微结构(鲸类:Delphinoidea和Inioidea)

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Longitudinal and cross sections of teeth from 17 species of the Recent dolphins (Delphinoidea and Inioidea) were examined under scanning electron microscope to study the arrangement and ultrastructure of dental tissues with reference to phylogenetic and functional constraints. For most species, enamel had a simple bi-layered structure of radial enamel and an outer layer of prismless enamel. The outer prismless layer varied from 5 to 30 % of enamel thickness. The enamel of Burmeister's porpoise (Phocoena spinipinnis) was entirely prismless. The prisms had an open sheath; tubules and tuft-like structures were common at the enamel-dentine junction. Cetacean dentine was characterized by irregularly distributed dentinal tubules in a relatively homogenous dentinal matrix. Radial enamel was observed in all Delphinoidea and in the franciscana (Pontoporia blainvillei), whereas the Amazon river dolphin (Inia geoffrensis) had prisms organized in Hunter-Schreger bands. HSB in enamel are regarded as a device for resisting propagation of cracks. These may occur due to increased functional demands, possibly related to the hardness of the species diet. Simplification in tooth shape and reduced biomechanical demands plausibly explain the primitive radial organization among delphinoids and Pontoporia. The HSB structure in the Amazon river dolphin, similar to those of extinct archaeocetes, seems to have secondary functional implications. However, the distribution of HSB in more-basal odontocetes is too poorly known to judge whether the HSB of Inia are a retained plesiomorphic feature or convergence.
机译:通过扫描电子显微镜检查了来自最近的海豚(Delphinoidea和Inioidea)的17种物种的牙齿的纵向和横截面,并根据系统发育和功能限制研究了牙齿组织的排列和超微结构。对于大多数物种,搪瓷具有放射状搪瓷的简单双层结构和无棱镜搪​​瓷的外层。无棱镜的外层在搪瓷厚度的5%到30%之间变化。 Burmeister海豚(Phocoena spinipinnis)的珐琅质完全没有棱柱。棱柱有一个开放的鞘。牙釉质与牙本质的交界处常见肾小管和簇状结构。鲸类牙本质的特征是在相对均质的牙本质基质中不规则分布的牙本质小管。在所有Delphinoidea和Franciscana(Pontoporia blainvillei)中都观察到了放射状的珐琅质,而亚马逊河海豚(Inia geoffrensis)的棱柱形组织为Hunter-Schreger带。搪瓷中的HSB被认为是一种抗裂扩展的装置。这些可能由于功能需求增加而发生,可能与物种饮食的硬度有关。牙齿形状的简化和生物力学要求的降低有力地解释了飞蝶类和蓬头鲸之间的原始径向组织。与已灭绝的古猿相似,亚马逊河海豚中的HSB结构似乎具有次要功能。但是,对于更基础的齿形突科中的HSB分布知之甚少,无法判断伊尼亚的HSB是保留的多形性特征还是收敛性。

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