首页> 美国卫生研究院文献>Philosophical Transactions of the Royal Society B: Biological Sciences >Molar microwear textures and the diets of Australopithecus anamensis and Australopithecus afarensis
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Molar microwear textures and the diets of Australopithecus anamensis and Australopithecus afarensis

机译:磨牙微磨损质地和南方古猿和南方古猿的饮食

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摘要

Many researchers have suggested that Australopithecus anamensis and Australopithecus afarensis were among the earliest hominins to have diets that included hard, brittle items. Here we examine dental microwear textures of these hominins for evidence of this. The molars of three Au. anamensis and 19 Au. afarensis specimens examined preserve unobscured antemortem microwear. Microwear textures of these individuals closely resemble those of Paranthropus boisei, having lower complexity values than Australopithecus africanus and especially Paranthropus robustus. The microwear texture complexity values for Au. anamensis and Au. afarensis are similar to those of the grass-eating Theropithecus gelada and folivorous Alouatta palliata and Trachypithecus cristatus. This implies that these Au. anamensis and Au. afarensis individuals did not have diets dominated by hard, brittle foods shortly before their deaths. On the other hand, microwear texture anisotropy values for these taxa are lower on average than those of Theropithecus, Alouatta or Trachypithecus. This suggests that the fossil taxa did not have diets dominated by tough foods either, or if they did that directions of tooth–tooth movement were less constrained than in higher cusped and sharper crested extant primate grass eaters and folivores.
机译:许多研究人员认为,南方古猿和南方古猿是最早的人类素,其饮食中包括坚硬易碎的食物。在这里,我们检查了这些人源蛋白的牙齿微磨损质地,以此作为证据。三个金的臼齿。凤梨和19金检查的afarensis标本保留了清晰的前验微磨损。这些个体的微磨损质地非常类似于博伊拟南猿,其复杂度值低于非洲古猿,尤其是健壮拟南芥。 Au的微磨损织构复杂度值。凤梨和金。 afarensis与吃草的Theropithecus gelada和叶状Alouatta palliata和Trachypithecus cristatus的相似。这暗示着这些金。凤梨和金。 afarensis个体在临死前不久就没有以坚硬易碎食物为主的饮食。另一方面,这些类群的微磨损质地各向异性值平均低于Theropithecus,Alouatta或 Trachypithecus 。这表明化石类群也没有以强硬食物​​为主的饮食,或者如果它们这样做的话,那么牙齿-牙齿运动的方向就比那些尖锐,尖锐的现存灵长类草食动物和食草动物更不受约束。

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