Symbiodinium (Dinophyceae) diversity in reef-invertebrates along an offshore to inshore reef gradient near Lizard Island, Great Barrier Reef

被引:25
作者
Tonk, Linda [1 ,2 ]
Sampayo, Eugenia M. [1 ,2 ]
LaJeunesse, Todd C. [3 ]
Schrameyer, Verena [4 ]
Hoegh-Guldberg, Ove [1 ,2 ,5 ]
机构
[1] Univ Queensland, ARC Ctr Excellence Coral Reef Studies, St Lucia, Qld 4072, Australia
[2] Univ Queensland, Sch Biol Sci, St Lucia, Qld 4072, Australia
[3] Penn State Univ, Dept Biol, University Pk, PA 16802 USA
[4] Univ Technol Sydney, Plant Funct Biol & Climate Change Cluster, Ultimo, NSW 2007, Australia
[5] Univ Queensland, Global Change Inst, St Lucia, Qld 4072, Australia
基金
美国国家科学基金会;
关键词
coral reefs; Great Barrier Reef; ITS2; Symbiodinium; symbiosis; SCLERACTINIAN CORALS; ENDOSYMBIONTS ZOOXANTHELLAE; ALGAL ENDOSYMBIONTS; SERIATOPORA-HYSTRIX; SYMBIONT DIVERSITY; CLIMATE-CHANGE; HOST; SPECIFICITY; COMMUNITIES; PATTERNS;
D O I
10.1111/jpy.12185
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Despite extensive work on the genetic diversity of reef invertebrate-dinoflagellate symbioses on the Great Barrier Reef (GBR; Australia), large information gaps exist from northern and inshore regions. Therefore, a broad survey was done comparing the community of inshore, mid-shelf and outer reefs at the latitude of Lizard Island. Symbiodinium (Freudenthal) diversity was characterized using denaturing gradient gel electrophoresis fingerprinting and sequencing of the ITS2 region of the ribosomal DNA. Thirty-nine distinct Symbiodinium types were identified from four subgeneric clades (B, C, D, and G). Several Symbiodinium types originally characterized from the Indian Ocean were discovered as well as eight novel types (C1kk, C1LL, C3nn, C26b, C161a, C162, C165, C166). Multivariate analyses on the Symbiodinium species diversity data showed a strong link with host identity, consistent with previous findings. Of the four environmental variables tested, mean austral winter sea surface temperature (SST) influenced Symbiodinium distribution across shelves most significantly. A similar result was found when the analysis was performed on Symbiodinium diversity data of genera with an open symbiont transmission mode separately with chl a and PAR explaining additional variation. This study underscores the importance of SST and water quality related variables as factors driving Symbiodinium distribution on cross-shelf scales. Furthermore, this study expands our knowledge on Symbiodinium species diversity, ecological partitioning (including host-specificity) and geographic ranges across the GBR. The accelerating rate of environmental change experienced by coral reef ecosystems emphasizes the need to comprehend the full complexity of cnidarian symbioses, including the biotic and abiotic factors that shape their current distributions.
引用
收藏
页码:552 / 563
页数:12
相关论文
共 71 条
  • [31] Long-standing environmental conditions, geographic isolation and host-symbiont specificity influence the relative ecological dominance and genetic diversification of coral endosymbionts in the genus Symbiodinium
    LaJeunesse, Todd C.
    Pettay, Daniel T.
    Sampayo, Eugenia M.
    Phongsuwan, Niphon
    Brown, Barbara
    Obura, David O.
    Hoegh-Guldberg, Ove
    Fitt, William K.
    [J]. JOURNAL OF BIOGEOGRAPHY, 2010, 37 (05) : 785 - 800
  • [32] Outbreak and persistence of opportunistic symbiotic dinoflagellates during the 2005 Caribbean mass coral 'bleaching' event
    LaJeunesse, Todd C.
    Smith, Robin T.
    Finney, Jennifer
    Oxenford, Hazel
    [J]. PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2009, 276 (1676) : 4139 - 4148
  • [33] Host genetics and Symbiodinium D diversity in a stress-tolerant scleractinian coral, Oulastrea crispata, in the West Pacific
    Lien, Yi-Ting
    Keshavmurthy, Shashank
    Nakano, Yoshikatsu
    Plathong, Sakanan
    Huang, Hui
    Hsu, Chia-Min
    Fukami, Hironobu
    Yamashita, Yoh
    Hsieh, Hernyi Justin
    Wang, Jih-Tern
    Chen, Chaolun Allen
    [J]. MARINE ECOLOGY PROGRESS SERIES, 2013, 473 : 163 - 177
  • [34] Symbiodinium Clade C Dominates Zooxanthellate Corals (Scleractinia) in the Temperate Region of Japan
    Lien, Yi-Ting
    Fukami, Hironobu
    Yamashita, Yoh
    [J]. ZOOLOGICAL SCIENCE, 2012, 29 (03) : 173 - 180
  • [35] Responses of coral-associated bacterial communities to heat stress differ with Symbiodinium type on the same coral host
    Littman, Raechel A.
    Bourne, David G.
    Willis, Bette L.
    [J]. MOLECULAR ECOLOGY, 2010, 19 (09) : 1978 - 1990
  • [36] Genetic variability of the symbiotic dinoflagellates from the wide ranging coral species Seriatopora hystrix and Acropora longicyathus in the Indo-West Pacific
    Loh, WKW
    Loi, T
    Carter, D
    Hoegh-Guldberg, O
    [J]. MARINE ECOLOGY PROGRESS SERIES, 2001, 222 : 97 - 107
  • [37] Latitudinal symbiont zonation in Stylophora pistillata from southeast Africa
    Macdonald, Angus H. H.
    Sampayo, Eugenia M.
    Ridgway, Tyrone
    Schleyer, Michael H.
    [J]. MARINE BIOLOGY, 2008, 154 (02) : 209 - 217
  • [38] Real-time PCR reveals a high incidence of Symbiodinium clade D at low levels in four scleractinian corals across the Great Barrier Reef:: implications for symbiont shuffling
    Mieog, J. C.
    van Oppen, M. J. H.
    Cantin, N. E.
    Stam, W. T.
    Olsen, J. L.
    [J]. CORAL REEFS, 2007, 26 (03) : 449 - 457
  • [39] Distributions of stress-resistant coral symbionts match environmental patterns at local but not regional scales
    Oliver, Thomas A.
    Palumbi, Stephen R.
    [J]. MARINE ECOLOGY PROGRESS SERIES, 2009, 378 : 93 - 103
  • [40] Global trajectories of the long-term decline of coral reef ecosystems
    Pandolfi, JM
    Bradbury, RH
    Sala, E
    Hughes, TP
    Bjorndal, KA
    Cooke, RG
    McArdle, D
    McClenachan, L
    Newman, MJH
    Paredes, G
    Warner, RR
    Jackson, JBC
    [J]. SCIENCE, 2003, 301 (5635) : 955 - 958