Genetic diversity along the life cycle of the cyanobacterium Microcystis: highlight on the complexity of benthic and planktonic interactions

被引:10
作者
Sabart, Marion [1 ,2 ]
Misson, Benjamin [1 ,2 ]
Jobard, Marlene [1 ,2 ]
Bronner, Gisele [1 ,2 ]
Donnadieu-Bernard, Florence [1 ,2 ]
Duffaud, Emilie [1 ,2 ]
Salencon, Marie-Jose [3 ]
Amblard, Christian [1 ,2 ]
Latour, Delphine [1 ,2 ]
机构
[1] Univ Blaise Pascal, Clermont Univ, LMGE, F-63000 Clermont Ferrand, France
[2] CNRS, UMR 6023, LMGE, F-63171 Aubiere, France
[3] EDF R&D, Dept LNHE, F-78400 Chatou, France
关键词
SPATIOTEMPORAL CHANGES; AERUGINOSA KUTZ; POPULATIONS; DYNAMICS; RECRUITMENT; DIFFERENTIATION; CYANOPHYCEAE; SEDIMENTS; UNIFRAC; WATER;
D O I
10.1111/1462-2920.12555
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Microcystis is a toxic freshwater cyanobacterium with an annual life cycle characterized by the alternation of a planktonic proliferation stage in summer and a benthic resting stage in winter. Given the importance of both stages for the development and the survival of the population, we investigated the genotypic composition of the planktonic and benthic Microcystis subpopulations from the Grangent reservoir (France) during two distinct proliferation periods. Our results showed a succession of different dominant genotypes in the sediment as well as in the water all along the study periods with some common genotypes to both compartments. Analysis of molecular variance and UniFrac analysis confirmed the similarity between some benthic and planktonic samples, thus evidencing exchanges of genotypes between water and sediment. Thanks to these data, recruitment and sedimentation were proven not to be restricted to spring and autumn, contrary to what was previously thought. Finally, genetic diversity was significantly higher in the sediment than in the water (P<0.01; Student's t-test). Taken together, our results shed light on the hidden contribution of the benthic compartment in maintaining the genetic diversity of Microcystis populations throughout their annual cycle, which could explain their ecological success in aquatic ecosystems.
引用
收藏
页码:901 / 911
页数:11
相关论文
共 45 条
  • [1] Berthon J.L., 1996, HYDROECOL APPL, V8, P99
  • [2] Population Turnover in a Microcystis Bloom Results in Predominantly Nontoxigenic Variants Late in the Season
    Bozarth, Connie S.
    Schwartz, Andrew D.
    Shepardson, Jonathan W.
    Colwell, Frederick S.
    Dreher, Theo W.
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2010, 76 (15) : 5207 - 5213
  • [3] Spatiotemporal changes in the genetic diversity of a bloom-forming Microcystis aeruginosa (cyanobacteria) population
    Briand, Enora
    Escoffier, Nicolas
    Straub, Cecile
    Sabart, Marion
    Quiblier, Catherine
    Humbert, Jean-Francois
    [J]. ISME JOURNAL, 2009, 3 (04) : 419 - 429
  • [4] Recruitment of Microcystis (Cyanophyceae) from lake sediments:: The importance of littoral inocula
    Brunberg, AK
    Blomqvist, P
    [J]. JOURNAL OF PHYCOLOGY, 2003, 39 (01) : 58 - 63
  • [5] The Western English Channel contains a persistent microbial seed bank
    Caporaso, J. Gregory
    Paszkiewicz, Konrad
    Field, Dawn
    Knight, Rob
    Gilbert, Jack A.
    [J]. ISME JOURNAL, 2012, 6 (06) : 1089 - 1093
  • [6] CYANOBACTERIA SECONDARY METABOLITES - THE CYANOTOXINS
    CARMICHAEL, WW
    [J]. JOURNAL OF APPLIED BACTERIOLOGY, 1992, 72 (06): : 445 - 459
  • [7] TCS: a computer program to estimate gene genealogies
    Clement, M
    Posada, D
    Crandall, KA
    [J]. MOLECULAR ECOLOGY, 2000, 9 (10) : 1657 - 1659
  • [8] Cyanobacterial toxins: risk management for health protection
    Codd, GA
    Morrison, LF
    Metcalf, JS
    [J]. TOXICOLOGY AND APPLIED PHARMACOLOGY, 2005, 203 (03) : 264 - 272
  • [9] Colwell R.K., 2013, ESTIMATES STAT ESTIM
  • [10] High levels of genetic diversity and low levels of genetic differentiation in North Sea Pseudo-nitzschia pungens (Bacillariophyceae) populations
    Evans, KM
    Kühn, SF
    Hayes, PK
    [J]. JOURNAL OF PHYCOLOGY, 2005, 41 (03) : 506 - 514