Jump to content

Jurassic: Difference between revisions

From Wikipedia, the free encyclopedia
Content deleted Content added
Replaced content with 'Dealdo'
Dawei20 (talk | contribs)
m Undid revision 698540476 by 170.185.184.17 (talk)
Line 1: Line 1:
{{about|the geologic period and system|other uses|Jurassic Park (disambiguation) }}
Dealdo
{{Geological period
|image=
|o2=26
|co2=1950
|temp=16.5
|timeline = off
}}
The '''Jurassic''' ({{IPAc-en|dʒ|uː|ˈ|r|æ|s|ɪ|k}}; from [[Jura Mountains]]) is a [[Period (geology)|geologic period and system]] that extends from 201.3± 0.6 [[Year#SI prefix multipliers|Ma]] (million years ago) to 145± 4 Ma; from the end of the [[Triassic]] to the beginning of the [[Cretaceous]]. The Jurassic constitutes the middle period of the [[Mesozoic Era]], also known as the Age of Reptiles. The start of the period is marked by the major [[Triassic–Jurassic extinction event]]. Two other [[extinction]] events occurred during the period: the [[Toarcian turnover|Late Pliensbachian/Early Toarcian event]] in the Early Jurassic, and the Late [[Tithonian]] event at the end; however, neither event ranks among the "Big Five" mass extinctions. The Jurassic is named after the [[Jura Mountains]] within the [[European Alps]], where [[limestone]] strata from the period were first identified.
By the beginning of the Jurassic, the [[supercontinent]] [[Pangaea]] had begun [[rift]]ing into two landmasses, [[Laurasia]] to the north and [[Gondwana]] to the south. This created more coastlines and shifted the continental climate from dry to humid, and many of the [[arid]] deserts of the Triassic were replaced by lush rainforests. On land, the fauna transitioned from the Triassic fauna, dominated by both [[Dinosauromorpha|dinosauromorph]] and [[Crocodylomorpha|crocodylomorph]] [[archosaur]]s, to one dominated by [[dinosaur]]s alone. The first [[bird]]s also appeared during the Jurassic, having evolved from a branch of [[theropod]] dinosaurs. Other major events include the appearance of the earliest lizards, and the evolution of therian mammals, including primitive placentals. Crocodilians made the transition from a terrestrial to an aquatic mode of life. The oceans were inhabited by [[marine reptiles]] such as [[ichthyosaur]]s and [[plesiosaur]]s, while [[pterosaur]]s were the dominant flying [[vertebrates]].

==Etymology==
The chronostratigraphic term "Jurassic" is directly linked to the [[Jura Mountains]]. [[Alexander von Humboldt]] recognized the mainly [[limestone]] dominated mountain range of the Jura Mountains as a separate formation that had not been included in the established stratigraphic system defined by [[Abraham Gottlob Werner]], and he named it "Jurakalk" in 1795.<ref>Humboldt names the Jura limestone ("Jurakalkstein") deposits in: Alexander von Humboldt, ''Ueber die unterirdischen Gasarten und die Mittel, ihren Nachteil zu vermindern, ein Beitrag zur Physik der praktischen Bergbaukunde'' [On the types of subterranean gases and means of minimizing their harm, a contribution to the physics of practical mining] (Braunschweig, (Germany): Vieweg, 1799), [https://books.google.com/books?id=xiQ7AAAAcAAJ&pg=PA39#v=onepage&q&f=false p. 39.] From p. 39: ''" … die ausgebreitete Formation, welche zwischen dem alten Gips und neueren Sandstein liegt, und welchen ich vorläufig mit dem Nahmen Jura-Kalkstein bezeichne."'' ( … the widespread formation which lies between the old gypsum and the more recent sandstone and which I provisionally designate with the name "Jura limestone".)<br />
He explains that he coined the name during a tour of the region in 1795 in: Alexander von Humboldt, ''Kosmos'', volume 4 (Stuttgart, (Germany): Cotta, 1858), [http://babel.hathitrust.org/cgi/pt?id=ucm.5322149281;view=1up;seq=638 p. 632.] From p. 632: ''"Ich hatte mich auf einer geognostischen Reise, die ich 1795 durch das südliche Franken, die westliche Schweiz and Ober-Italien machte, davon überzeugt, daß der Jura-Kalkstein, welchen Werner zu seinem Muschelkalk rechnete, eine eigne Formation bildete. In meiner Schrift über die unterirdischen Gasarten, welche mein Bruder Wilhelm von Humboldt 1799 während meines Aufenthalts in Südamerika herausgab, wird der Formation, die ich vorläufig mit dem Namen Jura-Kalkstein bezeichnete, zuerst (S. 39) gedacht."'' (On a geological tour that I made in 1795 through southern France, western Switzerland and upper Italy, I convinced myself that the Jura limestone, which Werner included in his shell limestone, constituted a separate formation. In my paper about subterranean types of gases, which my brother Wilhelm von Humboldt published in 1799 during my stay in South America, the formation, which I provisionally designated with the name "Jura limestone", is first conceived (p. 39).)</ref><ref name="Hölder, 1964">Hölder, H. 1964. Jura&nbsp;— Handbuch der stratigraphischen Geologie, IV. ''Enke-Verlag'', 603 pp., 158 figs, 43 tabs; Stuttgart</ref><ref name="Arkell, 1956">Arkell, W.J. 1956. Jurassic Geology of the World. ''Oliver & Boyd'', 806 pp.; Edinburgh und London.</ref><ref name="Pieńkowski et al., 2008">Pieńkowski, G.; Schudack, M.E.; Bosák, P.; Enay, R.; Feldman-Olszewska, A.; Golonka, J.; Gutowski, J.; Herngreen, G.F.W.; Jordan, P.; Krobicki, M.; Lathuiliere, B.; Leinfelder, R.R.; Michalík, J.; Mönnig, E.; Noe-Nygaard, N.; Pálfy, J.; Pint, A.; Rasser, M.W.; Reisdorf, A.G.; Schmid, D.U.; Schweigert, G.; Surlyk, F.; Wetzel, A. & Theo E. Wong, T.E. 2008. Jurassic. In: McCann, T. (ed.): The Geology of Central Europe. Volume 2: Mesozoic and Cenozoic, ''Geological Society'', pp.: 823-922; London.</ref> The name "Jura" is derived from the Celtic root "jor", which was Latinised into "juria", meaning forest (i.e., "''Jura''" is forest mountains).<ref name="Hölder, 1964"/><ref name="Arkell, 1956"/><ref name="Rollier, 1903">Rollier, L. 1903. Das Schweizerische Juragebirge. ''Sonderabdruck aus dem Geographischen Lexikon der Schweiz, Verlag von Gebr. Attinger,'' 39 pp; Neuenburg</ref>

==Divisions==
{{Jurassic graphical timeline}}

The Jurassic period is divided into the [[Early Jurassic]], [[Middle Jurassic|Middle]], and [[Late Jurassic]] [[Epoch (geology)|epochs]]. The Jurassic System, in [[stratigraphy]], is divided into the [[Lower Jurassic]], [[Middle Jurassic|Middle]], and [[Upper Jurassic]] [[Series (stratigraphy)|series]] of rock formations, also known as ''Lias'', ''Dogger'' and ''Malm'' in [[Europe]].<ref name="Palaeos website">Kazlev, M. Alan (2002) [http://www.palaeos.com/Mesozoic/Jurassic/Jurassic.htm Palaeos website] Accessed July. 22, 2008</ref> The separation of the term '''Jurassic''' into three sections goes back to [[Leopold von Buch]].<ref name="Pieńkowski et al., 2008"/> The [[faunal stage]]s from youngest to oldest are:

{|
| '''[[Late Jurassic|Upper/Late Jurassic]]'''
|
|-
|&nbsp; [[Tithonian]]
| ({{period start|tithonian}} {{period start error|tithonian}}&nbsp;– {{period end|tithonian}} {{period end error|tithonian}} [[annum|Mya]])
|-
|&nbsp; [[Kimmeridgian]]
| ({{period start|Kimmeridgian}} {{period start error|Kimmeridgian}}&nbsp;– {{period end|Kimmeridgian}} {{period end error|Kimmeridgian}} Mya)
|-
|&nbsp; [[Oxfordian stage|Oxfordian]]
| ({{period start|Oxfordian}} {{period start error|Oxfordian}}&nbsp;– {{period end|Oxfordian}} {{period end error|Oxfordian}} Mya)
|-
| '''[[Middle Jurassic]]'''
|
|-
|&nbsp; [[Callovian]]
| ({{period start|Callovian}} {{period start error|Callovian}}&nbsp;– {{period end|Callovian}} {{period end error|Callovian}} Mya)
|-
|&nbsp; [[Bathonian]]
| ({{period start|Bathonian}} {{period start error|Bathonian}}&nbsp;– {{period end|Bathonian}} {{period end error|Bathonian}} Mya)
|-
|&nbsp; [[Bajocian]]
| ({{period start|Bajocian}} {{period start error|Bajocian}}&nbsp;– {{period end|Bajocian}} {{period end error|Bajocian}} Mya)
|-
|&nbsp; [[Aalenian]]
| ({{period start|Aalenian}} {{period start error|Aalenian}}&nbsp;– {{period end|Aalenian}} {{period end error|Aalenian}} Mya)
|-
| '''[[Early Jurassic|Lower/Early Jurassic]]'''
|
|-
|&nbsp; [[Toarcian]]
| ({{period start|Toarcian}} {{period start error|Toarcian}}&nbsp;– {{period end|Toarcian}} {{period end error|Toarcian}} Mya)
|-
|&nbsp; [[Pliensbachian]]
| ({{period start|Pliensbachian}} {{period start error|Pliensbachian}}&nbsp;– {{period end|Pliensbachian}} {{period end error|Pliensbachian}} Mya)
|-
|&nbsp; [[Sinemurian]]
| ({{period start|Sinemurian}} {{period start error|Sinemurian}}&nbsp;– {{period end|Sinemurian}} {{period end error|Sinemurian}} Mya)
|-
|&nbsp; [[Hettangian]]
| ({{period start|Hettangian}} {{period start error|Hettangian}}&nbsp;– {{period end|Hettangian}} {{period end error|Hettangian}} Mya)
|}
[[File:Europasaurus holgeri Scene 2.jpg|thumb|260px|Various [[dinosaur]]s roamed forests of similarly large [[conifer]]s during the Jurassic period.]]

==Paleogeography and tectonics==
During the early Jurassic period, the [[supercontinent]] [[Pangaea]] broke up into the northern supercontinent [[Laurasia]] and the southern supercontinent [[Gondwana]]; the [[Gulf of Mexico]] opened in the new rift between [[North America]] and what is now Mexico's [[Yucatan Peninsula]]. The Jurassic North [[Atlantic Ocean]] was relatively narrow, while the South Atlantic did not open until the following Cretaceous period, when Gondwana itself rifted apart.<ref>[http://www.scotese.com/late1.htm Late Jurassic<!-- Bot generated title -->]</ref> The [[Tethys Ocean|Tethys Sea]] closed, and the [[Mediterranean Basin|Neotethys]] basin appeared. Climates were warm, with no evidence of [[glacier|glaciation]]. As in the Triassic, there was apparently no land near either pole, and no extensive ice caps existed.

The Jurassic geological record is good in western [[Europe]], where extensive marine sequences indicate a time when much of the continent was submerged under shallow tropical seas; famous locales include the [[Jurassic Coast]] [[World Heritage Site]] in southern England and the renowned late Jurassic ''[[lagerstätte]]n'' of [[Holzmaden]] and [[Solnhofen limestone|Solnhofen]] in Germany.<ref>[http://www.urweltmuseum.de/Englisch/museum_eng/Geologie_eng/Tektonik_eng.htm Jurassic Period<!-- Bot generated title -->]</ref> In contrast, the North American Jurassic record is the poorest of the Mesozoic, with few outcrops at the surface.<ref>[http://www.nationalatlas.gov/articles/geology/legend/ages/jurassic.html map]</ref> Though the [[Epeiric Sea|epicontinental]] [[Sundance Sea]] left marine deposits in parts of the northern plains of the United States and Canada during the late Jurassic, most exposed sediments from this period are continental, such as the [[alluvium|alluvial]] deposits of the [[Morrison Formation]].

The Jurassic was a time of [[calcite sea]] geochemistry in which low-magnesium [[calcite]] was the primary inorganic marine precipitate of calcium carbonate. [[Carbonate hardgrounds]] were thus very common, along with calcitic [[ooids]], calcitic cements, and invertebrate faunas with dominantly calcitic skeletons (Stanley and Hardie, 1998, 1999).

The first of several massive [[batholith]]s were emplaced in the northern [[American cordillera|Cordillera]] beginning in the mid-Jurassic, marking the [[Nevadan orogeny]].<ref>Monroe and Wicander, 607.</ref> Important Jurassic exposures are also found in Russia, India, South America, Japan, Australasia and the United Kingdom.

In Africa, Early Jurassic strata are distributed in a similar fashion to Late Triassic beds, with more common outcrops in the south and less common fossil beds which are predominated by tracks to the north.<ref name="dinopedia-african"/> As the Jurassic proceeded, larger and more iconic groups of dinosaurs like sauropods and ornithopods proliferated in Africa.<ref name="dinopedia-african"/> Middle Jurassic strata are neither well represented nor well studied in Africa.<ref name="dinopedia-african"/> Late Jurassic strata are also poorly represented apart from the spectacular Tendeguru fauna in Tanzania.<ref name="dinopedia-african"/> The Late Jurassic life of Tendeguru is very similar to [[Paleobiota of the Morrison Formation|that]] found in western North America's [[Morrison Formation]].<ref name="dinopedia-african">Jacobs, Louis, L. (1997). "African Dinosaurs". ''Encyclopedia of Dinosaurs''. Edited by Phillip J. Currie and Kevin Padian. Academic Press. p. 2-4.</ref>

<gallery class="center">
File:MakhteshGadolCenter02.jpg|Jurassic limestones and marls (the [[Matmor Formation]]) in southern [[Israel]].
File:MorrisonType-2.JPG|The late Jurassic [[Morrison Formation]] in [[Colorado]] is one of the most fertile sources of dinosaur fossils in North America.
File:Gigandipus.JPG|''Gigandipus'', a [[dinosaur]] footprint in the Lower Jurassic [[Moenave Formation]] at the St. George Dinosaur Discovery Site at Johnson Farm, southwestern [[Utah]].
File:SEUtahStrat.JPG|The [[Permian]] through Jurassic stratigraphy of the [[Colorado Plateau]] area of southeastern [[Utah]].
</gallery>

==Fauna==

===Aquatic and marine===
During the Jurassic period, the primary vertebrates living in the sea were [[fish]] and marine [[reptile]]s. The latter include [[ichthyosaur]]s, who were at the peak of their diversity, [[plesiosauria|plesiosaurs]], [[pliosaur]]s, and marine [[crocodilia|crocodiles]] of the families [[Teleosauridae]] and [[Metriorhynchidae]].<ref>Motani, R. (2000), Rulers of the Jurassic Seas, Scientific American vol.283, no. 6</ref> Numerous [[turtle]]s could be found in lakes and rivers.<ref name=nws>{{citation
|journal=Naturwissenschaften: The Science of Nature
|title=An enormous Jurassic turtle bone bed from the Turpan Basin of Xinjiang, China
|first=Oliver|last= Wings
|first2=Márton|last2= Rabi
|first3=Jörg W.|last3= Schneider
|first4=Leonie|last4= Schwermann
|first5=Ge |last5=Sun
|first6=Chang-Fu|last6= Zhou
|first7=Walter G.|last7= Joyce
|volume=114|year=2012
|url=http://www.springerlink.com/content/l55q277254344462/
|doi=10.1007/s00114-012-0974-5|bibcode = 2012NW.....99..925W }}</ref><ref name=ls>{{citation|url=http://www.cbsnews.com/8301-205_162-57542904/jurassic-turtle-graveyard-found-in-china/
|first=Megan|last= Gannon
|periodical=Livescience.com|date=October 31, 2012
|title=Jurassic turtle graveyard found in China}}</ref>

In the [[invertebrate]] world, several new groups appeared, including [[rudists]] (a [[reef]]-forming variety of [[bivalvia|bivalves]]) and [[Belemnitida|belemnites]]. Calcareous [[Sabellidae|sabellids]] (''[[Glomerula]]'') appeared in the Early Jurassic.<ref name=VinnMutvei2009>{{cite journal
| last1 = Vinn | first1 = O.
| last2 = Mutvei |first2 = H.
| year = 2009
| title = Calcareous tubeworms of the Phanerozoic
| journal = Estonian Journal of Earth Sciences
| volume = 58
| issue = 4
| pages = 286–296
| url = http://www.kirj.ee/public/Estonian_Journal_of_Earth_Sciences/2009/issue_4/earth-2009-4-286-296.pdf
| accessdate = 2012-09-16
| doi=10.3176/earth.2009.4.07
}}</ref><ref name='VinnTenHoveMutvei2008'>{{cite journal
| doi = 10.1111/j.1475-4983.2008.00763.x
| title = On the tube ultrastructure and origin of calcification in sabellids (Annelida, Polychaeta)
| year = 2008
| author = Vinn, O.
| author2 = ten Hove, H.A.
| author3 = Mutvei, H.
| journal = Palaeontology
| volume = 51
| pages = 295–301
| url = https://www.researchgate.net/publication/222089802_On_the_tube_ultrastructure_and_origin_of_calcification_in_sabellids_%28Annelida_Polychaeta%29
| accessdate = 2014-06-11}}</ref> The Jurassic also had diverse encrusting and [[bioerosion|boring]] (sclerobiont) communities, and it saw a significant rise in the [[bioerosion]] of carbonate shells and hardgrounds. Especially common is the [[ichnotaxa|ichnogenus]] ([[trace fossil]]) ''[[Gastrochaenolites]]''.<ref>{{cite journal |last=Taylor |first=P. D. |last2=Wilson |first2=M. A. |year=2003 |title=Palaeoecology and evolution of marine hard substrate communities |journal=Earth-Science Reviews |volume=62 |issue=1–2 |pages=1–103 |doi=10.1016/S0012-8252(02)00131-9 |bibcode = 2003ESRv...62....1T }}</ref>

During the Jurassic period, about four or five of the twelve [[clade]]s of planktonic organisms that exist in the fossil record either experienced a massive evolutionary radiation or appeared for the first time.<ref name="Palaeos website"/>

<gallery class="center">
File:Leedsi&Liopl DB.jpg|A ''[[Pliosaurus]]'' (right) harassing a ''[[Leedsichthys]]'' in a Jurassic sea.
File:Fischsaurier fg01.jpg|''[[Ichthyosaurus]]'' from lower (early) Jurassic slates in southern [[Germany]] featured a [[dolphin]]-like body shape.
File:Muraenosaurus l2.jpg|[[Plesiosaur]]s like ''[[Muraenosaurus]]'' roamed Jurassic oceans.
File:JurassicMarineIsrael.JPG|[[Gastropod]] and attached mytilid [[bivalve]]s on a Jurassic limestone bedding plane in southern [[Israel]].
</gallery>

===Terrestrial===
On land, various [[archosaur]]ian reptiles remained dominant. The Jurassic was a golden age for the large herbivorous dinosaurs known as the [[sauropod]]s—''[[Camarasaurus]]'', ''[[Apatosaurus]]'', ''[[Diplodocus]]'', ''[[Brachiosaurus]]'', and many others—that roamed the land late in the period; their mainstays were either the [[prairie]]s of [[fern]]s, palm-like [[cycad]]s and [[bennettitales]], or the higher coniferous growth, according to their adaptations. They were preyed upon by large [[theropod]]s, such as ''[[Ceratosaurus]]'', ''[[Megalosaurus]]'', ''[[Torvosaurus]]'' and ''[[Allosaurus]]''. All these belong to the 'lizard hipped' or [[saurischia]]n branch of the [[dinosaur]]s.<ref>{{cite book |last=Haines |first=Tim |year=2000 |title=Walking with Dinosaurs: A Natural History |location=New York |publisher=Dorling Kindersley |isbn=0-7894-5187-5 }}</ref>
During the Late Jurassic, the first [[Aves|avialans]], like ''[[Archaeopteryx]]''<!--Archaeopteryx is not included within the class Aves and thus not considered a bird by some scientists, see article on birds-->, [[Evolution|evolved]] from small [[coelurosaur]]ian dinosaurs. [[Ornithischia]]n dinosaurs were less predominant than saurischian dinosaurs, although some, like [[stegosaur]]s and small [[ornithopod]]s, played important roles as small and medium-to-large (but not sauropod-sized) herbivores. In the air, [[pterosaur]]s were common; they ruled the skies, filling many ecological roles now taken by [[bird]]s.<ref>{{cite book |last=Feduccia |first=A. |year=1996 |title=The Origin and Evolution of Birds |publisher=Yale University Press |location=New Haven |isbn=0-300-06460-8 }}</ref> Within the undergrowth were various types of early [[mammals]], as well as [[Tritylodontidae|tritylodont]]s<!--'mammal-like reptiles' reptiles has been redefined as a subset of the sauropsids, whereas tritylodonts are a subset of synapsids, a sister clade to the sauropsids - see talk-->, lizard-like [[Sphenodontia|sphenodonts]], and early [[lissamphibia]]ns.

The rest of the [[Lissamphibia]] evolved in this period, introducing the first [[salamander]]s and [[caecilian]]s.<ref>{{cite book |last=Carroll |first=R. L. |year=1988 |title=Vertebrate Paleontology and Evolution |publisher=WH Freeman |location=New York |isbn=0-7167-1822-7 }}</ref>

<gallery class="center">
File:Diplodocus BW.jpg|''[[Diplodocus]]'', reaching lengths over 30 m, was a common [[sauropod]] during the late Jurassic.
File:Allosaurus BW.jpg|''[[Allosaurus]]'' was one of the largest land predators during the Jurassic.
File:Stegosaurus BW.jpg|''[[Stegosaurus]]'' is one of the most recognizable genera of dinosaurs and lived during the mid to late Jurassic.
File:Archaeopteryx 2.JPG|''[[Archaeopteryx]]'', a primitive bird, appeared in the [[Late Jurassic]].
</gallery>

==Flora==
[[File:Douglas fir leaves and bud.jpg|140px|upright|thumb|[[Conifer]]s were the dominant land plants of the Jurassic]]
The arid, continental conditions characteristic of the [[Triassic]] steadily eased during the Jurassic period, especially at higher latitudes; the warm, humid climate allowed lush jungles to cover much of the landscape.<ref name="Haines, 2000">Haines, 2000.</ref> [[Gymnosperm]]s were relatively diverse during the Jurassic period.<ref name="Palaeos website"/> The [[Conifers]] in particular dominated the flora, as during the Triassic; they were the most diverse group and constituted the majority of large trees.

Extant conifer families that flourished during the Jurassic included the [[Araucariaceae]], [[Cephalotaxaceae]], [[Pinaceae]], [[Podocarpaceae]], [[Taxaceae]] and [[Taxodiaceae]].<ref>Behrensmeyer ''et al.'', 1992, 349.</ref> The extinct Mesozoic conifer family [[Cheirolepidiaceae]] dominated low latitude vegetation, as did the shrubby [[Bennettitales]].<ref name="Behrensmeyer et al., 1992, 352">Behrensmeyer ''et al.'', 1992, 352</ref> [[Cycad]]s were also common, as were [[ginkgo]]s and [[tree ferns|Dicksoniaceous tree ferns]] in the forest.<ref name="Palaeos website"/> Smaller [[fern]]s were probably the dominant undergrowth. [[Caytoniacea|Caytoniaceous seed ferns]] were another group of important plants during this time and are thought to have been shrub to small-tree sized.<ref>Behrensmeyer ''et al.'', 1992, 353</ref> Ginkgo plants were particularly common in the mid- to high northern latitudes.<ref name="Palaeos website"/> In the Southern Hemisphere, [[podocarps]] were especially successful, while [[Ginkgo]]s and [[Czekanowskiales]] were rare.<ref name="Haines, 2000"/><ref name="Behrensmeyer et al., 1992, 352"/>

In the oceans, modern [[coralline algae]] appeared for the first time.<ref name="Palaeos website"/> However, they were a part of another major extinction that happened within the next major time period.

== See also ==
* [[Black Jurassic]]
* [[Brown Jurassic]]
* [[White Jurassic]]

{{Portal bar|Jurassic|Mesozoic|Geology|Paleontology|Time}}

==Notes==
{{Reflist|30em}}

==References==
* Behrensmeyer, Damuth, J.D., DiMichele, W.A., Potts, R., Sues, H.D. & Wing, S.L. (eds.) (1992), ''Terrestrial Ecosystems through Time: the Evolutionary Paleoecology of Terrestrial Plants and Animals'', [[University of Chicago Press]], Chicago and London, ISBN 0-226-04154-9 (cloth), ISBN 0-226-04155-7 (paper).
* Haines, Tim (2000) ''Walking with Dinosaurs: A Natural History'', New York: Dorling Kindersley Publishing, Inc., p.&nbsp;65. ISBN 0-563-38449-2.
* Kazlev, M. Alan (2002) [http://www.palaeos.com/Mesozoic/Jurassic/Jurassic.htm Palaeos website] Accessed Jan. 8, 2006.
* Mader, Sylvia (2004) Biology, eighth edition.
* Monroe, James S., and Reed Wicander. (1997) ''The Changing Earth: Exploring Geology and Evolution'', 2nd ed. Belmont: West Publishing Company, 1997. ISBN 0-314-09577-2.
* Ogg, Jim; June, 2004, ''Overview of Global Boundary Stratotype Sections and Points (GSSP's)'', International Commission on Stratigraphy, pp.&nbsp;17
* Stanley, S.M. and Hardie, L.A. (1998). "Secular oscillations in the carbonate mineralogy of reef-building and sediment-producing organisms driven by tectonically forced shifts in seawater chemistry". Palaeogeography, Palaeoclimatology, Palaeoecology 144: 3–19.
* Stanley, S.M. and Hardie, L.A. (1999). "Hypercalcification; paleontology links plate tectonics and geochemistry to sedimentology". GSA Today 9: 1–7.
* Taylor, P.D. and Wilson, M.A., (2003). Palaeoecology and evolution of marine hard substrate communities. Earth-Science Reviews 62: 1–103. [http://www3.wooster.edu/geology/Taylor%26Wilson2003.pdf].

==External links==
{{Commons category|Jurassic}}
{{Wiktionary}}
{{Portal|Jurassic}}
* [http://www.geo-lieven.com/erdzeitalter/jura/jura.htm Examples of Jurassic Fossils]
* [http://www.palaeos.com/Mesozoic/Jurassic/Jurassic.htm Palaeos.com]
* [http://harbury.villagebuzz.co.uk/viewtopic.php?f=16&t=297 Jurassic fossils in Harbury, Warwickshire]
* [http://www.foraminifera.eu/querydb.php?period=Jurassic&aktion=suche Jurassic Microfossils: 65+ images of Foraminifera]
{{Spoken Wikipedia|Jurassic_spoken_article.ogg|2010-08-19}}

{{clr}}
{{Jurassic Footer}}
{{Phanerozoic eon}}
{{Geological history|p|m|state=collapsed}}

{{Authority control}}

[[Category:Jurassic| ]]
[[Category:Mesozoic]]
[[Category:Geological periods]]
[[Category:Mesozoic geochronology]]

Revision as of 19:36, 6 January 2016

Template:Geological period The Jurassic (ˈræsɪk; from Jura Mountains) is a geologic period and system that extends from 201.3± 0.6 Ma (million years ago) to 145± 4 Ma; from the end of the Triassic to the beginning of the Cretaceous. The Jurassic constitutes the middle period of the Mesozoic Era, also known as the Age of Reptiles. The start of the period is marked by the major Triassic–Jurassic extinction event. Two other extinction events occurred during the period: the Late Pliensbachian/Early Toarcian event in the Early Jurassic, and the Late Tithonian event at the end; however, neither event ranks among the "Big Five" mass extinctions. The Jurassic is named after the Jura Mountains within the European Alps, where limestone strata from the period were first identified. By the beginning of the Jurassic, the supercontinent Pangaea had begun rifting into two landmasses, Laurasia to the north and Gondwana to the south. This created more coastlines and shifted the continental climate from dry to humid, and many of the arid deserts of the Triassic were replaced by lush rainforests. On land, the fauna transitioned from the Triassic fauna, dominated by both dinosauromorph and crocodylomorph archosaurs, to one dominated by dinosaurs alone. The first birds also appeared during the Jurassic, having evolved from a branch of theropod dinosaurs. Other major events include the appearance of the earliest lizards, and the evolution of therian mammals, including primitive placentals. Crocodilians made the transition from a terrestrial to an aquatic mode of life. The oceans were inhabited by marine reptiles such as ichthyosaurs and plesiosaurs, while pterosaurs were the dominant flying vertebrates.

Etymology

The chronostratigraphic term "Jurassic" is directly linked to the Jura Mountains. Alexander von Humboldt recognized the mainly limestone dominated mountain range of the Jura Mountains as a separate formation that had not been included in the established stratigraphic system defined by Abraham Gottlob Werner, and he named it "Jurakalk" in 1795.[1][2][3][4] The name "Jura" is derived from the Celtic root "jor", which was Latinised into "juria", meaning forest (i.e., "Jura" is forest mountains).[2][3][5]

Divisions

The Jurassic period is divided into the Early Jurassic, Middle, and Late Jurassic epochs. The Jurassic System, in stratigraphy, is divided into the Lower Jurassic, Middle, and Upper Jurassic series of rock formations, also known as Lias, Dogger and Malm in Europe.[7] The separation of the term Jurassic into three sections goes back to Leopold von Buch.[4] The faunal stages from youngest to oldest are:

Upper/Late Jurassic
  Tithonian (149.2 ± 0.9  – 145 Mya)
  Kimmeridgian (154.8 ± 1.0  – 149.2 ± 0.9 Mya)
  Oxfordian (161.5 ± 1.0  – 154.8 ± 1.0 Mya)
Middle Jurassic
  Callovian (165.3 ± 1.2  – 161.5 ± 1.0 Mya)
  Bathonian (168.2 ± 1.3  – 165.3 ± 1.2 Mya)
  Bajocian (170.9 ± 1.4  – 168.2 ± 1.3 Mya)
  Aalenian (174.7 ± 1.0  – 170.9 ± 1.4 Mya)
Lower/Early Jurassic
  Toarcian (184.2 ± 0.7  – 174.7 ± 1.0 Mya)
  Pliensbachian (192.9 ± 1.0  – 184.2 ± 0.7 Mya)
  Sinemurian (199.5 ± 0.3  – 192.9 ± 1.0 Mya)
  Hettangian (201.4 ± 0.2  – 199.5 ± 0.3 Mya)
Various dinosaurs roamed forests of similarly large conifers during the Jurassic period.

Paleogeography and tectonics

During the early Jurassic period, the supercontinent Pangaea broke up into the northern supercontinent Laurasia and the southern supercontinent Gondwana; the Gulf of Mexico opened in the new rift between North America and what is now Mexico's Yucatan Peninsula. The Jurassic North Atlantic Ocean was relatively narrow, while the South Atlantic did not open until the following Cretaceous period, when Gondwana itself rifted apart.[8] The Tethys Sea closed, and the Neotethys basin appeared. Climates were warm, with no evidence of glaciation. As in the Triassic, there was apparently no land near either pole, and no extensive ice caps existed.

The Jurassic geological record is good in western Europe, where extensive marine sequences indicate a time when much of the continent was submerged under shallow tropical seas; famous locales include the Jurassic Coast World Heritage Site in southern England and the renowned late Jurassic lagerstätten of Holzmaden and Solnhofen in Germany.[9] In contrast, the North American Jurassic record is the poorest of the Mesozoic, with few outcrops at the surface.[10] Though the epicontinental Sundance Sea left marine deposits in parts of the northern plains of the United States and Canada during the late Jurassic, most exposed sediments from this period are continental, such as the alluvial deposits of the Morrison Formation.

The Jurassic was a time of calcite sea geochemistry in which low-magnesium calcite was the primary inorganic marine precipitate of calcium carbonate. Carbonate hardgrounds were thus very common, along with calcitic ooids, calcitic cements, and invertebrate faunas with dominantly calcitic skeletons (Stanley and Hardie, 1998, 1999).

The first of several massive batholiths were emplaced in the northern Cordillera beginning in the mid-Jurassic, marking the Nevadan orogeny.[11] Important Jurassic exposures are also found in Russia, India, South America, Japan, Australasia and the United Kingdom.

In Africa, Early Jurassic strata are distributed in a similar fashion to Late Triassic beds, with more common outcrops in the south and less common fossil beds which are predominated by tracks to the north.[12] As the Jurassic proceeded, larger and more iconic groups of dinosaurs like sauropods and ornithopods proliferated in Africa.[12] Middle Jurassic strata are neither well represented nor well studied in Africa.[12] Late Jurassic strata are also poorly represented apart from the spectacular Tendeguru fauna in Tanzania.[12] The Late Jurassic life of Tendeguru is very similar to that found in western North America's Morrison Formation.[12]

Fauna

Aquatic and marine

During the Jurassic period, the primary vertebrates living in the sea were fish and marine reptiles. The latter include ichthyosaurs, who were at the peak of their diversity, plesiosaurs, pliosaurs, and marine crocodiles of the families Teleosauridae and Metriorhynchidae.[13] Numerous turtles could be found in lakes and rivers.[14][15]

In the invertebrate world, several new groups appeared, including rudists (a reef-forming variety of bivalves) and belemnites. Calcareous sabellids (Glomerula) appeared in the Early Jurassic.[16][17] The Jurassic also had diverse encrusting and boring (sclerobiont) communities, and it saw a significant rise in the bioerosion of carbonate shells and hardgrounds. Especially common is the ichnogenus (trace fossil) Gastrochaenolites.[18]

During the Jurassic period, about four or five of the twelve clades of planktonic organisms that exist in the fossil record either experienced a massive evolutionary radiation or appeared for the first time.[7]

Terrestrial

On land, various archosaurian reptiles remained dominant. The Jurassic was a golden age for the large herbivorous dinosaurs known as the sauropodsCamarasaurus, Apatosaurus, Diplodocus, Brachiosaurus, and many others—that roamed the land late in the period; their mainstays were either the prairies of ferns, palm-like cycads and bennettitales, or the higher coniferous growth, according to their adaptations. They were preyed upon by large theropods, such as Ceratosaurus, Megalosaurus, Torvosaurus and Allosaurus. All these belong to the 'lizard hipped' or saurischian branch of the dinosaurs.[19] During the Late Jurassic, the first avialans, like Archaeopteryx, evolved from small coelurosaurian dinosaurs. Ornithischian dinosaurs were less predominant than saurischian dinosaurs, although some, like stegosaurs and small ornithopods, played important roles as small and medium-to-large (but not sauropod-sized) herbivores. In the air, pterosaurs were common; they ruled the skies, filling many ecological roles now taken by birds.[20] Within the undergrowth were various types of early mammals, as well as tritylodonts, lizard-like sphenodonts, and early lissamphibians.

The rest of the Lissamphibia evolved in this period, introducing the first salamanders and caecilians.[21]

Flora

Conifers were the dominant land plants of the Jurassic

The arid, continental conditions characteristic of the Triassic steadily eased during the Jurassic period, especially at higher latitudes; the warm, humid climate allowed lush jungles to cover much of the landscape.[22] Gymnosperms were relatively diverse during the Jurassic period.[7] The Conifers in particular dominated the flora, as during the Triassic; they were the most diverse group and constituted the majority of large trees.

Extant conifer families that flourished during the Jurassic included the Araucariaceae, Cephalotaxaceae, Pinaceae, Podocarpaceae, Taxaceae and Taxodiaceae.[23] The extinct Mesozoic conifer family Cheirolepidiaceae dominated low latitude vegetation, as did the shrubby Bennettitales.[24] Cycads were also common, as were ginkgos and Dicksoniaceous tree ferns in the forest.[7] Smaller ferns were probably the dominant undergrowth. Caytoniaceous seed ferns were another group of important plants during this time and are thought to have been shrub to small-tree sized.[25] Ginkgo plants were particularly common in the mid- to high northern latitudes.[7] In the Southern Hemisphere, podocarps were especially successful, while Ginkgos and Czekanowskiales were rare.[22][24]

In the oceans, modern coralline algae appeared for the first time.[7] However, they were a part of another major extinction that happened within the next major time period.

See also

Notes

  1. ^ Humboldt names the Jura limestone ("Jurakalkstein") deposits in: Alexander von Humboldt, Ueber die unterirdischen Gasarten und die Mittel, ihren Nachteil zu vermindern, ein Beitrag zur Physik der praktischen Bergbaukunde [On the types of subterranean gases and means of minimizing their harm, a contribution to the physics of practical mining] (Braunschweig, (Germany): Vieweg, 1799), p. 39. From p. 39: " … die ausgebreitete Formation, welche zwischen dem alten Gips und neueren Sandstein liegt, und welchen ich vorläufig mit dem Nahmen Jura-Kalkstein bezeichne." ( … the widespread formation which lies between the old gypsum and the more recent sandstone and which I provisionally designate with the name "Jura limestone".)
    He explains that he coined the name during a tour of the region in 1795 in: Alexander von Humboldt, Kosmos, volume 4 (Stuttgart, (Germany): Cotta, 1858), p. 632. From p. 632: "Ich hatte mich auf einer geognostischen Reise, die ich 1795 durch das südliche Franken, die westliche Schweiz and Ober-Italien machte, davon überzeugt, daß der Jura-Kalkstein, welchen Werner zu seinem Muschelkalk rechnete, eine eigne Formation bildete. In meiner Schrift über die unterirdischen Gasarten, welche mein Bruder Wilhelm von Humboldt 1799 während meines Aufenthalts in Südamerika herausgab, wird der Formation, die ich vorläufig mit dem Namen Jura-Kalkstein bezeichnete, zuerst (S. 39) gedacht." (On a geological tour that I made in 1795 through southern France, western Switzerland and upper Italy, I convinced myself that the Jura limestone, which Werner included in his shell limestone, constituted a separate formation. In my paper about subterranean types of gases, which my brother Wilhelm von Humboldt published in 1799 during my stay in South America, the formation, which I provisionally designated with the name "Jura limestone", is first conceived (p. 39).)
  2. ^ a b Hölder, H. 1964. Jura — Handbuch der stratigraphischen Geologie, IV. Enke-Verlag, 603 pp., 158 figs, 43 tabs; Stuttgart
  3. ^ a b Arkell, W.J. 1956. Jurassic Geology of the World. Oliver & Boyd, 806 pp.; Edinburgh und London.
  4. ^ a b Pieńkowski, G.; Schudack, M.E.; Bosák, P.; Enay, R.; Feldman-Olszewska, A.; Golonka, J.; Gutowski, J.; Herngreen, G.F.W.; Jordan, P.; Krobicki, M.; Lathuiliere, B.; Leinfelder, R.R.; Michalík, J.; Mönnig, E.; Noe-Nygaard, N.; Pálfy, J.; Pint, A.; Rasser, M.W.; Reisdorf, A.G.; Schmid, D.U.; Schweigert, G.; Surlyk, F.; Wetzel, A. & Theo E. Wong, T.E. 2008. Jurassic. In: McCann, T. (ed.): The Geology of Central Europe. Volume 2: Mesozoic and Cenozoic, Geological Society, pp.: 823-922; London.
  5. ^ Rollier, L. 1903. Das Schweizerische Juragebirge. Sonderabdruck aus dem Geographischen Lexikon der Schweiz, Verlag von Gebr. Attinger, 39 pp; Neuenburg
  6. ^ "International Chronostratigraphic Chart" (PDF). International Commission on Stratigraphy.
  7. ^ a b c d e f Kazlev, M. Alan (2002) Palaeos website Accessed July. 22, 2008
  8. ^ Late Jurassic
  9. ^ Jurassic Period
  10. ^ map
  11. ^ Monroe and Wicander, 607.
  12. ^ a b c d e Jacobs, Louis, L. (1997). "African Dinosaurs". Encyclopedia of Dinosaurs. Edited by Phillip J. Currie and Kevin Padian. Academic Press. p. 2-4.
  13. ^ Motani, R. (2000), Rulers of the Jurassic Seas, Scientific American vol.283, no. 6
  14. ^ Wings, Oliver; Rabi, Márton; Schneider, Jörg W.; Schwermann, Leonie; Sun, Ge; Zhou, Chang-Fu; Joyce, Walter G. (2012), "An enormous Jurassic turtle bone bed from the Turpan Basin of Xinjiang, China", Naturwissenschaften: The Science of Nature, 114, Bibcode:2012NW.....99..925W, doi:10.1007/s00114-012-0974-5
  15. ^ Gannon, Megan (October 31, 2012), "Jurassic turtle graveyard found in China", Livescience.com
  16. ^ Vinn, O.; Mutvei, H. (2009). "Calcareous tubeworms of the Phanerozoic" (PDF). Estonian Journal of Earth Sciences. 58 (4): 286–296. doi:10.3176/earth.2009.4.07. Retrieved 2012-09-16.
  17. ^ Vinn, O.; ten Hove, H.A.; Mutvei, H. (2008). "On the tube ultrastructure and origin of calcification in sabellids (Annelida, Polychaeta)". Palaeontology. 51: 295–301. doi:10.1111/j.1475-4983.2008.00763.x. Retrieved 2014-06-11.
  18. ^ Taylor, P. D.; Wilson, M. A. (2003). "Palaeoecology and evolution of marine hard substrate communities". Earth-Science Reviews. 62 (1–2): 1–103. Bibcode:2003ESRv...62....1T. doi:10.1016/S0012-8252(02)00131-9.
  19. ^ Haines, Tim (2000). Walking with Dinosaurs: A Natural History. New York: Dorling Kindersley. ISBN 0-7894-5187-5.
  20. ^ Feduccia, A. (1996). The Origin and Evolution of Birds. New Haven: Yale University Press. ISBN 0-300-06460-8.
  21. ^ Carroll, R. L. (1988). Vertebrate Paleontology and Evolution. New York: WH Freeman. ISBN 0-7167-1822-7.
  22. ^ a b Haines, 2000.
  23. ^ Behrensmeyer et al., 1992, 349.
  24. ^ a b Behrensmeyer et al., 1992, 352
  25. ^ Behrensmeyer et al., 1992, 353

References

  • Behrensmeyer, Damuth, J.D., DiMichele, W.A., Potts, R., Sues, H.D. & Wing, S.L. (eds.) (1992), Terrestrial Ecosystems through Time: the Evolutionary Paleoecology of Terrestrial Plants and Animals, University of Chicago Press, Chicago and London, ISBN 0-226-04154-9 (cloth), ISBN 0-226-04155-7 (paper).
  • Haines, Tim (2000) Walking with Dinosaurs: A Natural History, New York: Dorling Kindersley Publishing, Inc., p. 65. ISBN 0-563-38449-2.
  • Kazlev, M. Alan (2002) Palaeos website Accessed Jan. 8, 2006.
  • Mader, Sylvia (2004) Biology, eighth edition.
  • Monroe, James S., and Reed Wicander. (1997) The Changing Earth: Exploring Geology and Evolution, 2nd ed. Belmont: West Publishing Company, 1997. ISBN 0-314-09577-2.
  • Ogg, Jim; June, 2004, Overview of Global Boundary Stratotype Sections and Points (GSSP's), International Commission on Stratigraphy, pp. 17
  • Stanley, S.M. and Hardie, L.A. (1998). "Secular oscillations in the carbonate mineralogy of reef-building and sediment-producing organisms driven by tectonically forced shifts in seawater chemistry". Palaeogeography, Palaeoclimatology, Palaeoecology 144: 3–19.
  • Stanley, S.M. and Hardie, L.A. (1999). "Hypercalcification; paleontology links plate tectonics and geochemistry to sedimentology". GSA Today 9: 1–7.
  • Taylor, P.D. and Wilson, M.A., (2003). Palaeoecology and evolution of marine hard substrate communities. Earth-Science Reviews 62: 1–103. [1].

External links

Listen to this article
(2 parts, 14 minutes)
Spoken Wikipedia icon
These audio files were created from a revision of this article dated
Error: no date provided
, and do not reflect subsequent edits.
Preceded by
the
Proterozoic Eon
Phanerozoic Eon
Paleozoic Era Mesozoic Era Cenozoic Era
Cambrian Ordovician Silurian Devonian Carboniferous Permian Triassic Jurassic Cretaceous Paleogene Neogene 4ry