| [1] | 陈庚保,杨成芳,王向东,等. 1991. 云南石炭系顶界的研究及其䗴类化石[M]. 昆明:云南科学技术出版社:1- 136. Chen Gengbao, Yang Chengfang, Wang Xiangdong, et al. 1991. On the boundary between Carboniferous and Permian and the Fusulinids of the boundary stratigraphy in Yunnan[M]. Kunming: Yunnan Science and Technology Press: 1-136. |
| [2] | 陈旭,王建华. 1983. 广西宜山地区晚石炭世马平组的䗴类[M]. 北京:科学出版社:1-139. Chen Xu, Wang Jianhua. 1983. The fusulinids of the Maping limestone of the Upper Carboniferous from Yishan, Guangxi[M]. Beijing: Geological Publishing House:1-139. |
| [3] | 范嘉松,吴亚生. 2005. 世界二叠纪生物礁的基本特征及其古地理分布[J]. 古地理学报,7(3):287-304. Fan Jiasong, Wu Yasheng. 2005. Main features of the Permian reefs of world and their palaeogeographic distribution[J]. Journal of Palaeogeography, 7(3): 287-304. |
| [4] | 范嘉松,张维. 1985. 生物礁的基本概念、分类及识别特征[J]. 岩石学报,1(3):45-59. Fan Jiasong, Zhang Wei. 1985. On the basic concept and classification of organic reefs and their main identifying criteria[J]. Acta Petrologica Sinica, 1(3): 45-59. |
| [5] | 冯增昭,杨玉卿,金振奎,等. 1996. 中国南方二叠纪岩相古地理[J]. 沉积学报,14(2):3-12. Feng Zengzhao, Yang Yuqing, Jin Zhenkui, et al. 1996. Lithofacies paleogeography of the Permian of South China[J]. Acta Sedimentoioxgica Sinica, 14(2): 3-12. |
| [6] | 巩恩普,黄文韬,关长庆,等. 2021. 石炭纪生物礁与晚古生代冰期的耦合关系[J]. 地质学报,95(6):1671-1692. Gong Enpu, Huang Wentao, Guan Changqing, et al. 2021. The coupled relationship between Carboniferous reefs and the Late Paleozoic Ice Age[J]. Acta Geologica Sinica, 95(6): 1671-1692. |
| [7] | 贵州省地质矿产局. 1987. 贵州省区域地质志[M]. 北京:地质出版社:1-698. Guizhou provincial bureau of geology and mineral resources. Regional geology of Guizhou province[M]. Beijing: Geological Publishing House: 1- 698. |
| [8] | 沈树忠,张华,张以春,等. 2019. 中国二叠纪综合地层和时间框架[J]. 中国科学:地球科学,49(1):160-193. Shen Shuzhong, Zhang Hua, Zhang Yichun, et al. 2019. Permian integrative stratigraphy and timescale of China[J]. Science China Earth Sciences, 49(1): 160-193. |
| [9] | 史宇坤,杨湘宁,刘家润. 2012. 贵州南部宗地地区早石炭世—早二叠世的䗴类[M]. 北京:科学出版社:1-266. Shi Yukun, Yang Xiangning, Liu Jiarun. 2012. Early carboniferous to Early Permian Fusulinids from Zongdi section in southern Guizhou[M]. Beijing: Science Press: 1-266. |
| [10] | 王立芙,巩恩普,杨臻元,等. 2025. 黔南萨克马尔期珊瑚礁特征及其环境背景[J]. 沉积学报,43(2):453-466. Wang Lifu, Gong Enpu, Yang Zhenyuan, et al. 2025. Basic characteristics and palaeoenvironmental background of a Sakmarian coral reef in southern Guizhou[J]. Acta Sedimentologica Sinica, 43(2): 453-466. |
| [11] | 王立亭,陆彦邦,赵时久,等. 1994. 中国南方二叠纪岩相古地理与成矿作用[M]. 北京:地质出版社:1- 147. Wang Liting, Lu Yanbang, Zhao Shijiu, et al. 1994. Permian lithofacies, paleogeography and mineralization in South China[M]. Beijing: Geological Publishing House: 1-147. |
| [12] | 王向东,沈建伟. 2004. 华南晚泥盆世—早石炭世生物礁的灭绝和复苏[A]//戎嘉余,方宗杰. 生物大灭绝与复苏:来自华南古生代和三叠纪的证据[M]. 合肥:中国科技大学出版社:367-380. Wang Xiangdong, Shen Jianwei. 2004. Mass extinction and recovery: Evidences from the Palaeozoic and Triassic of South China[A]//Rong Jiayu, Fang Zongjie. Extinction and recovery of reefs during the Late Devonian and Early Carboniferous in South China[M]. Hefei: Press of University of Science and Technology of China: 367-380. |
| [13] | 肖伟民,王洪第,张遴信,等. 1986. 贵州南部早二叠世地层及其生物群[M]. 贵阳:贵州人民出版社:1- 364. Xiao Weiming, Wang Hongdi, Zhang Linxin, et al. 1986. Early Permian stratigraphy faunas in southern Guizhou[M]. The People’s Publishing House of Guizhou: 1-364. |
| [14] | 张遴信,周建平,盛金章. 2010. 贵州西部晚石炭世和早二叠世的䗴类[M]. 北京:科学出版社:1-296. Zhang Linxin, Zhou Jianping, Sheng Jinzhang. 2010. Upper Carboniferous and Lower Permian fusulinids from western Guizhou[M]. Beijing: Science Press:1-296. |
| [15] | 周铁明,盛金章,王玉净. 1987. 云南广南小独山石炭系—二叠系界线地层及䗴类分带[J]. 微体古生物学报,4(2):123-157. Zhou Tieming, Sheng Jinzhang, Wang Yujing, 1987. Carboniferous-Permian boundary beds and fusulinid zone at Xiaoxdushan, Guangnan, eastern Yunnan[J]. Micropaleontology, 4(2): 123-157. |
| [16] | Aretz M. 2001. The upper Viséan coral-horizons of Royseux: The development of an unusual facies in Belgian Early Carboniferous[J]. Bulletin of the Tohoku University Museum, (1): 86-95. |
| [17] | Aretz M. 2010. Habitats of colonial rugose corals: The Mississippian of western Europe as example for a general classification[J]. Lethaia, 43(4): 558-572. |
| [18] | Aretz M, Herbig H G. 2003. Coral-rich bioconstructions in the Viséan (Late Mississippian) of Southern Wales (Gower Peninsula, UK)[J]. Facies, 49(1): 221-242. |
| [19] | Buggisch W, Wang X D, Alekseev A S, et al. 2011. Carboniferous-Permian carbon isotope stratigraphy of successions from China (Yangtze Platform), USA (Kansas) and Russia (Moscow Basin and Urals)[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 301(1/2/3/4): 18-38. |
| [20] | Chappell J. 1980. Coral morphology, diversity and reef growth[J]. Nature, 286(5770): 249-252. |
| [21] | Chen B, Joachimski M M, Wang X D, et al. 2016. Ice volume and paleoclimate history of the Late Paleozoic Ice Age from conodont apatite oxygen isotopes from Naqing (Guizhou, China)[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 448: 151-161. |
| [22] | Chen J T, Montañez I P, Qi Y P, et al. 2018. Strontium and carbon isotopic evidence for decoupling of pCO2 from continental weathering at the apex of the Late Paleozoic glaciation[J]. Geology, 46(5): 395-398. |
| [23] | Copper P. 1988. Ecological succession in Phanerozoic reef ecosystems: Is it real?[J]. Palaios, 3(2): 136-151. |
| [24] | Crowley T J, Baum S K. 1992. Modeling Late Paleozoic glaciation[J]. Geology, 20(6): 507-510. |
| [25] | Fielding C R, Frank T D, Birgenheier L P, et al. 2008a. Stratigraphic imprint of the Late Palaeozoic Ice Age in eastern Australia: A record of alternating glacial and nonglacial climate regime[J]. Journal of the Geological Society, 165(1): 129-140. |
| [26] | Fielding C R, Frank T D, Birgenheier L P, et al. 2008b. Stratigraphic record and facies associations of the Late Paleozoic Ice Age in eastern Australia (New South Wales and Queensland)[M]//Fielding C R, Frank T D, Isbell J L. Resolving the Late Paleozoic Ice Age in time and space. Boulder: Geological Society of America: 41-47. |
| [27] | Fielding C R, Frank T D, Isbell J L. 2008c. The Late Paleozoic Ice Age:A review of current understanding and synthesis of global climate patterns[M]//Fielding C R, Frank T D, Isbell J L. resolving the Late Paleozoic Ice Age in time and space. Boulder: Geological Society of America: 343-354. |
| [28] | Flügel E. 2010. Microfacies of carbonate rocks: Analysis, interpretation and application[M]. 2nd ed. Berlin: Springer. 1-1006. |
| [29] | Frank T D, Shultis A I, Fielding C R. 2015. Acme and demise of the Late Palaeozoic Ice Age: A view from the southeastern margin of Gondwana[J]. Palaeogeography, Palaeoclimatology, Palaeoecology, 418: 176-192. |
| [30] | Haq B U, Schutter S R. 2008. A chronology of Paleozoic sea-level changes[J]. Science, 322(5898): 64-68. |
| [31] | Isbell J L, Henry L C, Gulbranson E L, et al. 2012. Glacial paradoxes during the Late Paleozoic Ice Age: Evaluating the equilibrium line altitude as a control on glaciation[J]. Gondwana Research, 22(1): 1-19. |
| [32] | Isbell J L, Miller M F, Wolfe K L, et al. 2003. Timing of Late Paleozoic glaciation in Gondwana: Was glaciation responsible for the development of Northern Hemisphere cyclothems?[M]//Chan M A, Archer A W. Extreme depositional environments: Mega end members in geologic time. Boulder: Geological Society of America: 5-24. |
| [33] | Kiessling W, Krause M C. 2022. PARED - An online database of Phanerozoic reefs[EB/OL]. https://www.paleo-reefs.pal.uni-erlangen.de. |
| [34] | Mii H S, Grossman E L, Yancey T E. 1999. Carboniferous isotope stratigraphies of North America: Implications for Carboniferous paleoceanography and Mississippian glaciation[J]. Geological Society of America Bulletin, 111(7): 960-973. |
| [35] | Montañez I P, Poulsen C J. 2013. The Late Paleozoic Ice Age: An evolving paradigm[J]. Annual Review of Earth and Planetary Sciences, 41: 629-656. |
| [36] | Ross C A, Ross J R P. 1988. Late Paleozoic transgressive-regressive deposition[M]//Wilgus C K, Hastings B S, Posamentier H. Sea-level changes: An integrated approach. Tulsa: Society of Economic Paleontologists and Mineralogists: 227-247. |
| [37] | Rygel M C, Fielding C R, Frank T D, et al. 2008. The magnitude of Late Paleozoic glacioeustatic fluctuations: A synthesis[J]. Journal of Sedimentary Research, 78(8): 500-511. |
| [38] | Stanley G D. 2001. The history and sedimentology of ancient reef systems[M]. New York: Springer: 1-458. |
| [39] | Wang S H, Fan J S, Rigby J K. 1994. Archaeolithoporella and tubiphytes: Affinities and paleoecology in Permian reefs of South China[J]. Science in China. Series B, Chemistry, Life Sciences & Earth Sciences, 37(6): 723-743. |
| [40] | Wang X D, Wang X J, Zhang F, et al. 2006. Diversity patterns of Carboniferous and Permian rugose corals in South China[J]. Geological Journal, 41(3/4): 329-343. |
| [41] | Webb G E. 2002. Latest Devonian and early carboniferous reefs: Depressed reef building after the Middle Paleozoic collapse[A]//Kiessling W, Flügel E, Golonka J. 2002. Phanerozoic reef patterns[C]. SEPM Society for Sedimentary Geology: 239-269. |
| [42] | West R R. 1988. Temporal changes in Carboniferous reef mound communities[J]. Palaios, 3(2): 152-169. |
| [43] | Wood R. 1995. The changing biology of reef-building[J]. Palaios, 10(6): 517-529. |
| [44] | Wood R. 1998. The ecological evolution of reefs[J]. Annual Review of Ecology, Evolution, and Systematics, 29(1): 179-206. |
| [45] | Wood R. 1999. Reef evolution[M]. Oxford: Oxford University Press: 1-414. |
| [46] | Wood R. 2001. Biodiversity and the history of reefs[J]. Geological Journal, 36(3/4): 251-263. |
| [47] | Yang J H, Cawood P A, Montañez I P, et al. 2020. Enhanced continental weathering and large igneous province induced climate warming at the Permo-Carboniferous transition[J]. Earth and Planetary Science Letters, 534: 116074. |
| [48] | Yao L, Aretz M, Wignall P B, et al. 2020. The longest delay: Re-emergence of coral reef ecosystems after the Late Devonian extinctions[J]. Earth-Science Reviews, 203: 103060. |
| [49] | Yao L, Wang X D. 2016. Distribution and evolution of Carboniferous reefs in South China[J]. Palaeoworld, 25(3): 362-376. |
| [50] | Yao L, Wang X D, Lin W, et al. 2016. Middle Viséan (Mississippian) coral biostrome in central Guizhou, southwestern China and its palaeoclimatological implications[J]. Palaeogeography, Palaeo-climatology, Palaeoecology, 448: 179-194. |