Quantification of algal endosymbionts (Symbiodinium) in coral tissue using real-time PCR

被引:81
|
作者
Mieog, J. C. [1 ,2 ]
Van Oppen, M. J. H. [1 ]
Berkelmans, R. [1 ]
Stam, W. T. [2 ]
Olsen, J. L. [2 ]
机构
[1] Australian Inst Marine Sci, Townsville, Qld 4810, Australia
[2] Univ Groningen, Dept Marine Benth Ecol & Evolut, Ctr Ecol & Evolutionary Studies, Ctr Biol, NL-9750 AA Haren, Netherlands
关键词
abundance quantification; coral; real-time PCR; shuffling; Symbiodinium; Zooxanthella; GREAT-BARRIER-REEF; POLYMERASE-CHAIN-REACTION; GENUS SYMBIODINIUM; MOLECULAR QUANTIFICATION; PFIESTERIA-PISCICIDA; BLEACHING EVENT; CLIMATE-CHANGE; ACROPORA; ZOOXANTHELLAE; DIVERSITY;
D O I
10.1111/j.1755-0998.2008.02222.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Understanding the flexibility of the endosymbioses between scleractinian corals and single-cell algae of the genus Symbiodinium will provide valuable insights into the future of coral reefs. Here, a real-time polymerase chain reaction (PCR) assay is presented to accurately determine the cell densities of Symbiodinium clades C and D in the scleractinian coral Acropora millepora, which can be extended to other coral-symbiont associations in the future. The assay targets single- to low-copy genes of the actin family of both the coral host and algal symbiont. Symbiont densities are expressed as the ratio of Symbiodinium cells to each host cell (S/H ratio, error within 30%), but can also be normalized to coral surface area. Greater accuracy in estimating ratios of associations involving multiple clades is achieved compared with previous real-time PCR assays based on high-copy ribosomal DNA loci (error within an order of magnitude). Healthy adult A. millepora containing 1.4 x 10(6) zooxanthellae per cm(2) (as determined by haemocytometer counts) had S/H ratios of c. 0.15, i.e. 15 symbiont cells per 100 host cells. In severely bleached colonies, this ratio decreased to less than 0.005. Because of its capacity to accurately determine both densities and ratios of multiple symbionts within one sample, the assay will open the door for novel research into the mechanisms of symbiont shuffling and switching.
引用
收藏
页码:74 / 82
页数:9
相关论文
共 50 条
  • [31] Looking into the Quantification of Forensic Samples with Real-Time PCR
    Ricci, Ugo
    Ciappi, Dario
    Carboni, Ilaria
    Centrone, Claudia
    Giotti, Irene
    Petti, Martina
    Alice, Brogi
    Pelo, Elisabetta
    GENES, 2024, 15 (06)
  • [32] Quantification of Mycosphaerella graminicola in wheat by real-time PCR
    Adhikari, T. B.
    Balaji, B.
    Breeden, J.
    Anderson, J. M.
    Goodwin, S. B.
    PHYTOPATHOLOGY, 2004, 94 (06) : S2 - S2
  • [33] Quantification of roots and seeds in soil with real-time PCR
    Ian T. Riley
    Sue Wiebkin
    Diana Hartley
    Alan C. McKay
    Plant and Soil, 2010, 331 : 151 - 163
  • [34] Real-time PCR quantification of precursor and mature microRNA
    Schmittgen, Thomas D.
    Lee, Eun Joo
    Jiang, Jinmai
    Sarkar, Anasuya
    Yang, Liuqing
    Elton, Terry S.
    Chen, Caifu
    METHODS, 2008, 44 (01) : 31 - 38
  • [35] Real-Time PCR Quantification of Methanobrevibacter oralis in Periodontitis
    Bringuier, Amelie
    Khelaifia, Saber
    Richet, Herve
    Aboudharam, Gerard
    Drancourt, Michel
    JOURNAL OF CLINICAL MICROBIOLOGY, 2013, 51 (03) : 993 - 994
  • [36] Quantification of Lentiviral Vectors Using Quantitative Real-Time PCR vs Digital Droplet PCR
    Dean, Rebecca J.
    MOLECULAR THERAPY, 2022, 30 (04) : 356 - 356
  • [37] Application of real-time PCR for quantification of soilborne pathogens
    Schroeder, K. L.
    Okubara, P. A.
    Paulitz, T. C.
    PHYTOPATHOLOGY, 2009, 99 (06) : S186 - S186
  • [38] Quantification of tree fine roots by real-time PCR
    Perez-Izquierdo, Leticia
    Clemmensen, Karina E.
    Strengbom, Joachim
    Nilsson, Marie-Charlotte
    Lindahl, Bjoern D.
    PLANT AND SOIL, 2019, 440 (1-2) : 593 - 600
  • [39] Quantification of ectomycorrhizal fungi in the soil by Real-Time PCR
    Hortal, S.
    Galipienso, L.
    Pera, J.
    Parlade, J.
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, 2005, 141 (03): : S223 - S223
  • [40] Quantification of human cytomegalovirus DNA by real-time PCR
    Gault, E
    Michel, Y
    Dehée, A
    Belabani, C
    Nicolas, JC
    Garbarg-Chenon, A
    JOURNAL OF CLINICAL MICROBIOLOGY, 2001, 39 (02) : 772 - 775