Paleoecological Significance of a Pre-Mortem Crinoid-Coral Interaction from the Silurian of Southeastern Indiana

IF 0.5 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE International Journal of Embedded Systems Pub Date : 2021-04-07 DOI:10.14434/IJES.V3I1.31283
J. Thomka, T. Bantel
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Abstract

A noteworthy specimen recording a syn vivo interaction between a stalked echinoderm and a tabulate coral is described herein from the middle Silurian (Wenlock Series, Sheinwoodian Stage) Massie Formation of Ripley County, southeastern Indiana. Part of the column of the camerate crinoid Eucalyptocrinites Goldfuss, 1831 is encrusted around the entirety of its lateral margin by a favositid colony. The radially outward orientation of corallites of the colony show that the coral was elevated completely above the seafloor and, more importantly, that the crinoid column had to be vertical at the time of initial encrustation and subsequent coral astogeny. Hence, the crinoid host was most likely alive throughout the duration of this interaction. No evidence for a paleopathological reaction is present on the crinoid column, suggesting that the encruster did not adversely affect the host. This most likely reflects the long and inflexible column of Eucalyptocrinites, which could have supported encrusting secondarily tiered organisms—even relatively heavy ones—without interfering with the biological functions of the crown or weighing down the column.
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印第安纳州东南部志留纪死前海百合-珊瑚相互作用的古生态意义
本文描述了一个值得注意的标本,记录了印第安纳州东南部里普利县志留纪中期(温洛克系列,Sheinwood阶)Massie组的有柄棘皮动物和板珊瑚之间的体内相互作用。1831年,摄影师海百合Eucalyptocrinites Goldfuss的部分柱子在其整个侧缘周围被一个最喜欢的群体包裹。珊瑚群珊瑚的径向向外方向表明,珊瑚完全高于海底,更重要的是,在最初的结垢和随后的珊瑚发育时,海百合柱必须是垂直的。因此,在这种相互作用的整个过程中,海百合宿主很可能是活着的。海百合柱上没有古病理反应的证据,这表明外壳没有对宿主产生不利影响。这很可能反映了桉树的长而不灵活的柱状体,它本可以支持包裹第二层生物——甚至是相对较重的生物——而不会干扰树冠的生物功能或加重柱状体的重量。
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来源期刊
International Journal of Embedded Systems
International Journal of Embedded Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
CiteScore
2.50
自引率
41.70%
发文量
56
期刊介绍: With the advent of VLSI system level integration and system-on-chip, the centre of gravity of the computer industry is now moving from personal computing into embedded computing. Embedded systems are increasingly becoming a key technological component of all kinds of complex technical systems, ranging from vehicles, telephones, audio-video-equipment, aircraft, toys, security systems, medical diagnostics, to weapons, pacemakers, climate control systems, manufacturing systems, intelligent power systems etc. IJES addresses the state of the art of all aspects of embedded computing systems with emphasis on algorithms, systems, models, compilers, architectures, tools, design methodologies, test and applications.
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