[1] 邹仁林. 中国动物志: 腔肠动物门: 珊瑚虫纲: 石珊瑚目: 造礁石珊瑚[M]. 北京:科学出版社, 2001: 36-55.
[2] BABCOCK R C, BULL G D, HARRISON P L, et al. Synchronous spawnings of 105 scleractinian coral species on the Great Barrier Reef[J]. Marine Biology, 1986, 90(3): 379-394.
[3] FADLALLAH Y H. Sexual reproduction, development and larval biology in scleractinian corals[J]. Coral Reefs, 1983, 2(3): 129-150.
[4] 董志军, 黄晖, 黄良民, 等. 运用PCR-RFLP方法研究三亚鹿回头岸礁造礁石珊瑚共生藻的组成[J]. 生物多样性, 2008, 16(5): 498-502.
[5] 刘瑞玉. 人类活动对底栖生物多样性的影响[C]//海岸海洋资源与环境研讨会, 1998: 39-46.
[6] 李元超, 黄晖, 董志军, 等. 鹿回头佳丽鹿角珊瑚卵母细胞发育的组织学研究[J]. 热带海洋学报, 2009,28(1): 57-60.
[7] FAN TUNGYUNG, LI JANJUNG, LE SHENGXIAN, et al. Lunar periodicity of larval release by pocilloporid corals in southern Taiwan[J]. Zoological Studies, 2002, 41(3): 288-294.
[8] VAN WOESIK R, LACHARMOISE F, KOKSAL S. Annual cycles of solar insolation predict spawning times of Caribbean corals[J]. Ecology Letters, 2006, 9(4): 390-398.
[9] BABCOCK R C, HEYWARD A J. Larval development of certain gamete-spawning scleractinian corals[J]. Coral Reefs, 1986, 5(3): 111-116.
[10] NOZAWA Y, HARRISON P L. Temporal settlement patterns of larvae of the broadcast spawning reef coral Favites chinensis and the broadcast spawning and brooding reef coral Goniastrea aspera from Okinawa, Japan[J]. Coral Reefs, 2005, 24(2): 274-282.
[11] VERMEIJ M J A, SMITH J E, SMITH C M, et al. Survival and settlement success of coral planulae: independent and synergistic effects of macroalgae and microbes[J]. Oecologia, 2009(2), 159: 325-336.
[12] OKAMOTO M, NOJIMA S, FUJIWARA S, et al. Development of ceramic settlement devices for coral reef restoration using in situ sexual reproduction of corals[J]. Fisheries Science, 2008, 74(6): 1245-1253.
[13] PETERSEN D, WIETHEGER A, LATERVEER M. Influence of different food sources on the initial development of sexual recruits of reefbuilding corals in aquaculture[J]. Aquaculture, 2008, 277(3/4): 174-178.
[14] BRADLEY P, FISHER W S, BELL H, et al. Development and implementation of coral reef biocriteria in US jurisdictions[J]. Environ Monit Assess, 2009, 150(1/4): 43-51.
[15] HEYWARD A J, NEGRI A P. Natural inducers for coral larval metamorphosis[J]. Coral Reefs, 1999, 18(3): 273-279.
[16] KRUPP D A. Sexual reproduction and early development of the solitary coral Fungia scutaria (Anthozoa: Scleractinia)[J]. Coral Reefs, 1983, 2: 159-164.
[17] OMORI NOTMM. When fragmented coral spawn? Effect of size timing on survivorship and fecundity of fragmentation in Acropora formosa[J]. Mar Biol, 2007, 151(1): 353-363.
[18] SHLESINGER Y, LOYA Y. Larval development and survivorship in the corals Favia favus and Platygyra lamellina[J]. Hydrobiologia, 1991, 216/217(1): 101-108.
[19] HARII S, YASUDA N, RODRIGUEZ-LANETTY M, et al. Onset of symbiosis and distribution patterns of symbiotic dinoflagellates in the larvae of scleractinian corals[J]. Marine Biology, 2009, 156(6): 1203-1212.
[20] HIROSE M, KINZIE R, HIDAKA M. Timing and process of entry of zooxanthellae into oocytes of hermatypic corals[J]. Coral Reefs, 2001, 20(3): 273-280.
[1] 邹仁林. 中国动物志: 腔肠动物门: 珊瑚虫纲: 石珊瑚目: 造礁石珊瑚[M]. 北京:科学出版社, 2001: 36-55.
[2] BABCOCK R C, BULL G D, HARRISON P L, et al. Synchronous spawnings of 105 scleractinian coral species on the Great Barrier Reef[J]. Marine Biology, 1986, 90(3): 379-394.
[3] FADLALLAH Y H. Sexual reproduction, development and larval biology in scleractinian corals[J]. Coral Reefs, 1983, 2(3): 129-150.
[4] 董志军, 黄晖, 黄良民, 等. 运用PCR-RFLP方法研究三亚鹿回头岸礁造礁石珊瑚共生藻的组成[J]. 生物多样性, 2008, 16(5): 498-502.
[5] 刘瑞玉. 人类活动对底栖生物多样性的影响[C]//海岸海洋资源与环境研讨会, 1998: 39-46.
[6] 李元超, 黄晖, 董志军, 等. 鹿回头佳丽鹿角珊瑚卵母细胞发育的组织学研究[J]. 热带海洋学报, 2009,28(1): 57-60.
[7] FAN TUNGYUNG, LI JANJUNG, LE SHENGXIAN, et al. Lunar periodicity of larval release by pocilloporid corals in southern Taiwan[J]. Zoological Studies, 2002, 41(3): 288-294.
[8] VAN WOESIK R, LACHARMOISE F, KOKSAL S. Annual cycles of solar insolation predict spawning times of Caribbean corals[J]. Ecology Letters, 2006, 9(4): 390-398.
[9] BABCOCK R C, HEYWARD A J. Larval development of certain gamete-spawning scleractinian corals[J]. Coral Reefs, 1986, 5(3): 111-116.
[10] NOZAWA Y, HARRISON P L. Temporal settlement patterns of larvae of the broadcast spawning reef coral Favites chinensis and the broadcast spawning and brooding reef coral Goniastrea aspera from Okinawa, Japan[J]. Coral Reefs, 2005, 24(2): 274-282.
[11] VERMEIJ M J A, SMITH J E, SMITH C M, et al. Survival and settlement success of coral planulae: independent and synergistic effects of macroalgae and microbes[J]. Oecologia, 2009(2), 159: 325-336.
[12] OKAMOTO M, NOJIMA S, FUJIWARA S, et al. Development of ceramic settlement devices for coral reef restoration using in situ sexual reproduction of corals[J]. Fisheries Science, 2008, 74(6): 1245-1253.
[13] PETERSEN D, WIETHEGER A, LATERVEER M. Influence of different food sources on the initial development of sexual recruits of reefbuilding corals in aquaculture[J]. Aquaculture, 2008, 277(3/4): 174-178.
[14] BRADLEY P, FISHER W S, BELL H, et al. Development and implementation of coral reef biocriteria in US jurisdictions[J]. Environ Monit Assess, 2009, 150(1/4): 43-51.
[15] HEYWARD A J, NEGRI A P. Natural inducers for coral larval metamorphosis[J]. Coral Reefs, 1999, 18(3): 273-279.
[16] KRUPP D A. Sexual reproduction and early development of the solitary coral Fungia scutaria (Anthozoa: Scleractinia)[J]. Coral Reefs, 1983, 2: 159-164.
[17] OMORI NOTMM. When fragmented coral spawn? Effect of size timing on survivorship and fecundity of fragmentation in Acropora formosa[J]. Mar Biol, 2007, 151(1): 353-363.
[18] SHLESINGER Y, LOYA Y. Larval development and survivorship in the corals Favia favus and Platygyra lamellina[J]. Hydrobiologia, 1991, 216/217(1): 101-108.
[19] HARII S, YASUDA N, RODRIGUEZ-LANETTY M, et al. Onset of symbiosis and distribution patterns of symbiotic dinoflagellates in the larvae of scleractinian corals[J]. Marine Biology, 2009, 156(6): 1203-1212.
[20] HIROSE M, KINZIE R, HIDAKA M. Timing and process of entry of zooxanthellae into oocytes of hermatypic corals[J]. Coral Reefs, 2001, 20(3): 273-280. |