Biological consequences of an outbreak of growth anomalies on Isopora palifera at the Cocos (Keeling) Islands

被引:0
作者
Sophie Preston
Zoe Richards
机构
[1] Curtin University,Trace Environmental DNA Laboratory, Coral Conservation and Research Group, School of Molecular and Life Science
[2] Western Australian Museum,Department of Aquatic Zoology
来源
Coral Reefs | 2021年 / 40卷
关键词
Atoll; Biology; Coral; Coral reef; Disease; Ecology; Histology; Geochemistry;
D O I
暂无
中图分类号
学科分类号
摘要
Growth anomalies (GAs), a tumour-like disease affecting scleractinian corals, have been reported across the major reef systems of the Indo-Pacific and wider Atlantic regions, predominantly affecting Acropora and Porites species. In 2018, GAs were observed for the first time on Isopora palifera, an important observation from the isolated Cocos (Keeling) Islands in the East Indian Ocean, as the species is a key reef building coral at the atoll. In this study, the local distribution and abundance of GAs was quantified to determine if this occurrence could be classified as an outbreak, and the effects of this disease on I. palifera on reproductive potential and growth was described using histological and geochemical analysis. Growth anomalies were documented at 75% of sites and affected approximately one third of the I. palifera colonies examined. This disease compromises the biological and reproductive functioning of the host, as evidenced by a significant reduction in the density of oocytes, mesenteries, polyps, and zooxanthellae in infected tissues in comparison to healthy tissue. Furthermore, geochemical analysis indicates changes to key trace elements may be the result of bioerosion processes by infecting bacteria and the reprecipitation of calcite. The results of this study indicate the division of energy to the rapid skeletal development that characterises the disease, may have occurred at the detriment of the future reproductive potential of the population.
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页码:97 / 109
页数:12
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  • [1] Aeby GS(2006)Factors affecting susceptibility of the coral Montastraea faveolata to black-band disease Mar Ecol Prog Ser 318 103-110
  • [2] Santavy DL(2011)Growth anomalies on the coral genera Acropora and Porites are strongly associated with host density and human population size across the Indo-Pacific PLoS ONE 6 e16887-391
  • [3] Aeby GS(2020)Morphological, elemental, and boron isotopic insights into pathophysiology of diseased coral growth anomalies Sci Rep 10 8252-481
  • [4] Williams GJ(2019)Calibration of portable X-ray fluorescence equipment for the geochemical analysis of carbonate matrices Sediment Geol 391 105517-543
  • [5] Franklin EC(2017)Pseudoalteromonas piratica strain OCN003 is a coral pathogen that causes a switch from chronic to acute Montipora white syndrome in Montipora capitata PLoS ONE 12 e0188319-108
  • [6] Haapkyla J(2011)Histopathology of growth anomaly affecting the coral, Montipora capitata: implications on biological functions and population viability PLoS ONE 6 e28854-215
  • [7] Harvell C(2012)Bacteria associated with skeletal tissue growth anomalies in the coral Platygyra carnosus FEMS Microbiol Ecol 79 380-1510
  • [8] Neale S(2011)Selective feeding by coral reef fishes on coral lesions associated with brown band and black band disease Coral Reefs 30 473-226
  • [9] Page CA(2017)Effects of in situ CO2 enrichment on Posidonia oceanica epiphytic community composition and mineralogy Mar Biol 164 103-261
  • [10] Raymundo L(2006)Comprehensive characterization of skeletal tissue growth anomalies of the finger coral Porites compressa Coral Reefs 25 531-1707