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化石肌肉组织的超微细节有机保存。

Organic preservation of fossil musculature with ultracellular detail.

机构信息

UCD School of Geological Sciences, University College Dublin, , Belfield, Dublin 4, Republic of Ireland.

出版信息

Proc Biol Sci. 2010 Feb 7;277(1680):423-7. doi: 10.1098/rspb.2009.1378. Epub 2009 Oct 14.

Abstract

The very labile (decay-prone), non-biomineralized, tissues of organisms are rarely fossilized. Occurrences thereof are invaluable supplements to a body fossil record dominated by biomineralized tissues, which alone are extremely unrepresentative of diversity in modern and ancient ecosystems. Fossil examples of extremely labile tissues (e.g. muscle) that exhibit a high degree of morphological fidelity are almost invariably replicated by inorganic compounds such as calcium phosphate. There is no consensus as to whether such tissues can be preserved with similar morphological fidelity as organic remains, except when enclosed inside amber. Here, we report fossilized musculature from an approximately 18 Myr old salamander from lacustrine sediments of Ribesalbes, Spain. The muscle is preserved organically, in three dimensions, and with the highest fidelity of morphological preservation yet documented from the fossil record. Preserved ultrastructural details include myofilaments, endomysium, layering within the sarcolemma, and endomysial circulatory vessels infilled with blood. Slight differences between the fossil tissues and their counterparts in extant amphibians reflect limited degradation during fossilization. Our results provide unequivocal evidence that high-fidelity organic preservation of extremely labile tissues is not only feasible, but likely to be common. This is supported by the discovery of similarly preserved tissues in the Eocene Grube Messel biota.

摘要

生物体的不稳定(易衰变)、非生物矿化组织很少能形成化石。它们的出现是对以生物矿化组织为主的生物体化石记录的宝贵补充,而这些组织本身对现代和古代生态系统的多样性的代表性非常有限。非常不稳定的组织(例如肌肉)的化石实例,其形态保真度很高,几乎总是被磷酸钙等无机化合物所复制。除了被琥珀包裹的情况之外,人们对于这些组织是否可以像有机遗骸一样以类似的形态保真度保存下来,尚无定论。在这里,我们报告了来自西班牙里贝萨贝斯湖相沉积物中一种约 1800 万年历史的蝾螈的肌肉化石。这些肌肉以有机的方式、三维的形式、以及迄今为止从化石记录中记录到的最高形态保真度得以保存。保存下来的超微结构细节包括肌原纤维、肌内膜、肌膜内的分层结构,以及充满血液的肌内膜循环血管。化石组织与其在现存两栖动物中的对应组织之间的细微差异反映了在化石形成过程中的有限降解。我们的研究结果提供了确凿的证据,表明对非常不稳定的组织进行高保真度的有机保存不仅是可行的,而且可能很常见。这一发现得到了在始新世麦塞尔生物群中同样保存的组织的支持。

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Organic preservation of fossil musculature with ultracellular detail.化石肌肉组织的超微细节有机保存。
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