期刊文献+

Diversity history of Ordovician graptolites and its relationship with environmental change 被引量:8

Diversity history of Ordovician graptolites and its relationship with environmental change
原文传递
导出
摘要 Statistical analysis based on global data indicated that the planktonic graptolites presented a distinguished pattern from that of benthic communities during the great Ordovician biodiversification. The graptolites started to diversify from the beginning Statistical analysis based on global data indicated that the planktonic graptolites presented a distinguished pattern from that of benthic communities during the great Ordovician biodiversification. The graptolites started to diversify from the beginning of Ordovician and reached an acme in the early Middle Ordovician, but subsequently underwent a steady decline to the end of Ordovician. During the Ordovician, many clades of the graptolites made their originations, flourishing and replacements. However, in different regions and distinct environments across the world, graptolites may presumably display distinct patterns of radiation and evolution, a hypothesis to be tested. Herein a study of the graptolite diversity in the Early to Middle Ordovician in the Upper Yangtze Region (Platform) and Jiangnan Region (Slope), South China, is conducted. The results indicate that graptolites underwent a remarkable increase in both regions, but with distinct magnitude, scope, process and patterns. The diversification of graptolites in the Upper Yangtze Region, though less prominent, is divided into four stages and includes two peaks. In the Jiangnan Region, the graptolite diversification is far more prominent and includes three stages and one peak. Based on the distinct diversity histories and composition of graptolites in the two representative regions, a 'deep-water origin and shallow-water dispersal' model is proposed for the Ordovician graptolite faunas. According to the model, the major graptolite faunas of Ordovician originated in the deep-water region on the continental slope, the source of the graptolite novelties, and subsequently spread into shallow-water region on the shelf. Besides, we also conduct a comparison study of the Ordovician graptolite diversity in South China and other major regions. The results display that the graptolites diversified globally in the Early and Middle Ordovician. At the beginning of Ordovician, graptolites underwent a significant ecological innovation of graptolites: planktonic forms were derived from their benthic ancestors. This derivation resulted in the great guild expansion of graptolites. In late Early Ordovician (Floian), the global expansion of graptolites commenced. From the Floian to the end of Middle Ordovician, the graptolites diversity increased remarkably and displayed three peaks for all the regions. However, the peaks are somewhat distinct in magnitude and timing among regions. The Darriwilian peak is prominent in both South China and Baltic region, but inconspicuous in Australasia. No close relationship between the graptolite diversification and the palaeolatitudes are supported herein. Instead, the graptolite diversification seems to coincide with the global sea-level rises, suggesting a possible intrinsic relationship between them.
机构地区 LPS
出处 《Science China Earth Sciences》 SCIE EI CAS 2008年第2期161-171,共11页 中国科学(地球科学英文版)
基金 the Projects of the Chinese Academy of Sciences (Grant Nos. KZCX2-YW-122 and KZCX3-SW-149) the Ministry of Science and Technology of China (Grant No. 2006CB806400) the National Natural Science Foundation of China (Grant No. 40532009) and IGCP503
关键词 South China ORDOVICIAN GRAPTOLITE DIVERSITY DEEP-WATER origin SEA-LEVEL change South China Ordovician graptolite diversity deep-water origin sea-level change
  • 相关文献

参考文献3

二级参考文献82

  • 1张元动,陈旭.笔石复合标准序列与宏演化──以浙赣边区下奥陶统宁国组上部的笔石研究为例[J].古生物学报,1995,34(2):250-262. 被引量:6
  • 2陈旭 韩乃仁.SEM examination on Pseudoclimacograptus ( Undulograptus ) formosus Mu et Lee[J].Acta Palaeont Sinica,1988,27(2):141-149.
  • 3韩乃仁.The mode of development of Cardiograptus Intermedius (Mu et Lee)[J].Geol Rev,1986,32(2):101-107.
  • 4赵祥麟 张舜新.Reclined graptolites of the Xinchangian[J].Bull.Changchun Coll. Geol.,1985,2:13-26.
  • 5赵祥麟 张舜新.On discovery of Psigraptus in China[A].In: Palaeontological Society of China ( ed. ).Selected pagers from the 13th and 14th annual conventions of Palaeontological Society of China[C].Hefei: Anhui Science and Technology Publishing Hou,1986.79-88.
  • 6Towe K M, Urbanek A, 1972. Collagen-like structure in Ordovician graptolite periderm. Nature, 237: 443-445.
  • 7Urbanek A, Towe K M, 1974. Ultrastructural studies on graptolites, 1:Periderm and its derivatives in Dendroidea and in Mastigograptus.Smith Contr Paleobiol , 20: 1-48.
  • 8Wang X F, Chen X H, 1996. Astogeny, evolution and classification of Psigraptids-a critical review. In: Wang, H Z Wang, X L(ed.), Centennial Memoir Volume of Prof. Sun Yunzhu: Palaeontology and Stratigraphy. Wuhan: China University of Geoscienees Press. 98-103.
  • 9Wang X F, Erdtmann B D, 1987. Zonation and Correlation of the earliest Ordovician graptolites from Hunjiang, Jilin province, China. Bull Geol Soc Denmark, 35:245-257.
  • 10Williams S H, Stevens R K, 1988. Early Ordovician (Arenig) graptolites of the Cow Head Group, western Newfoundland. Palaeontogr Can , 5:1-167.

共引文献77

同被引文献98

引证文献8

二级引证文献52

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部