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The diet of Australopithecus sediba

机译:南方古猿的饮食

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摘要

Specimens of Australopithecus sediba from the site of Malapa,South Africa (dating from approximately 2 million years (Myr) ago) present a mix of primitive and derived traits that align the taxon with other Australopithecus species and with early Homo.Although much of the available cranial and postcranial material of Au.sediba has been described3"6,its feeding ecology has not been investigated.Here we present results from the first extraction of plant phytoliths from dental calculus of an early hominin.We also consider stable carbon isotope and dental microwear texture data for Au.sediba in light of new palaeoenvironmental evidence.The two individuals examined consumed an almost exclusive C_3 diet that probably included harder foods,and both dicotyledons (for example,tree leaves,fruits,wood and bark) and monocotyledons (for example,grasses and sedges).Like Ardipithecus ramidus (approximately 4.4 Myr ago) and modern savanna chimpanzees,Au.sediba consumed C_3 foods in preference to widely available C_4 resources.The inferred consumption of C_3 monocotyledons,and wood or bark,increases the known variety of early hominin foods.The overall dietary pattern of these two individuals contrasts with available data for other hominins in the region and elsewhere.
机译:来自南非马拉帕遗址的古猿古猿标本(距今大约200万年前)呈现出原始特征和派生特征的混合体,这些特征使该分类单元与其他古猿物种和早期人类保持一致。 Au.sediba的颅骨和颅后材料已被描述为3“ 6,尚未对其进食生态进行研究。在这里,我们介绍了从早期人红素的牙结石中首次提取植物植石的结果。我们还考虑了稳定的碳同位素和牙齿微磨损根据新的古环境证据,得出了金古龙的质地数据。两个被调查者食用了几乎唯一的C_3饮食,其中可能包括较硬的食物,以及双子叶植物(例如,树叶,水果,木材和树皮)和单子叶植物(例如,草和莎草)。像Ardipithecus ramidus(约4.4 Myr以前)和现代大草原黑猩猩一样,Aed.sediba优先使用C_3食物,而不是广泛使用可用的C_4资源。推断的C_3单子叶植物和木材或树皮的食用量增加了已知的早期人参食品种类。这两个人的整体饮食方式与该地区和其他地区其他人参的可用数据形成对比。

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  • 来源
    《Nature》 |2012年第7405期|p.90-93|共4页
  • 作者单位

    Plant Foods and Hominin Dietary Ecology Research Group,Max Planck Institute for Evolutionary Anthropology,Deutscher Platz6,04103 Leipzig,Germany;

    Department of Anthropology,University of Arkansas,Old Main 330,Fayetteville,Arkansas 72701,USA,The Institute for Human Evolution,School of Geosciences,University of the Witwatersrand,Private Bag 3,WITS 2050,Johannesburg,South Africa;

    Department of Earth and Planetary Sciences,Johns Hopkins University,3400 North Charles Street,Baltimore,Maryland 21218,USA;

    The Institute for Human Evolution,School of Geosciences,University of the Witwatersrand,Private Bag 3,WITS 2050,Johannesburg,South Africa,Department of Anthropology,University of Colorado at Boulder,233 UCB,Boulder,Colorado 80309-0233,USA;

    Departmentof Archaeology,National Museum Bloemfontein,PO Box 266,Bloemfontein 9300,South Africa,The Department of Plant Sciences,University of the Free State,PO Box 339,Bloemfontein 9300,South Africa,The Department of BioJpgy,University of Washington,Box351800,24 Kincaid Hall,Seattle,Washington 98195-1800,USA;

    BPI Palaeontology,School of Geosciences,University of the Witwatersrand,Private Bag 3,WITS 2050,Johannesburg,South Africa;

    Department of Anthropology,University of Colorado at Boulder,233 UCB,Boulder,Colorado 80309-0233,USA;

    The Institute for Human Evolution,School of Geosciences,University of the Witwatersrand,Private Bag 3,WITS 2050,Johannesburg,South Africa,Plant Foods and Hominin Dietary Ecology Research Group,Max Planck Institute for Evolutionary Anthropology,Deutscher Platz6,04103 Leipzig,Germany;

    The Institute for Human Evolution,School of Geosciences,University of the Witwatersrand,Private Bag 3,WITS 2050,Johannesburg,South Africa;

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  • 入库时间 2022-08-18 02:54:09

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