用户名: 密码: 验证码:
Stress-induced selection of a single species from an entire meiobenthic nematode assemblage: is this possible using iron enrichment and does pre-exposure affect the ease of the process?
详细信息    查看全文
  • 作者:F. Boufahja (1)
    F. Semprucci (2)

    1. Laboratory of Biomonitoring of the Environment
    ; Coastal Ecology and Ecotoxicology Unit ; Faculty of Sciences of Bizerte ; Carthage University ; Zarzouna ; 7021 ; Tunisia
    2. Dipartimento di Scienze della Terra
    ; della Vita e dell鈥橝mbiente (DiSTEVA) ; Universit脿 degli Studi di Urbino 鈥楥arlo Bo鈥? loc. Crocicchia ; 61029 ; Urbino ; Italy
  • 关键词:Species selection ; Experiment ; Meiobenthic nematodes ; Oncholaimus campylocercoides ; Iron
  • 刊名:Environmental Science and Pollution Research
  • 出版年:2015
  • 出版时间:February 2015
  • 年:2015
  • 卷:22
  • 期:3
  • 页码:1979-1998
  • 全文大小:1,872 KB
  • 参考文献:1. Arts MSJ (2001) Metal stress in free-living nematodes. PhD Thesis, Wageningen University and Research Centre, Wageningen Universiteit, The Netherlands. 104p
    2. Balsamo M, Albertelli G, Ceccherelli VU, Coccioni R, Colangelo MA, Curini-Galletti M, Danovaro R, D鈥橝ddabbo R, Leonardis C, Fabiano M, Frontalini F, Gallo M, Gambi C, Guidi L, Moreno M, Pusceddu A, Sandulli R, Semprucci F, Todaro MA, Tongiorgi P (2010) Meiofauna of the Adriatic Sea: current state of knowledge and future perspective. Chem Ecol 26:45鈥?3 CrossRef
    3. Balsamo M, Semprucci F, Frontalini F, Coccioni R (2012) Meiofauna as a tool for marine ecosystem biomonitoring. In: Cruzado A (Ed) Marine ecosystems. InTech Publisher 4: 77鈥?04
    4. Beeby A (1991) Toxic metal uptake and essential metal regulation in terrestrial invertebrates: a review. In: Newman MC, McIntosh AW (eds) Metal ecotoxicology, concepts and applications. Lewis Publishers, Boca Raton, pp 65鈥?0
    5. Berry WJ, Hansen DJ, Mahony JD, Robson DL, Di Toro DM, Shipley BP, Rogers B, Corbin JM, Boothman WS (1996) Predicting the toxicity of metal spiked laboratory sediments using acid-volatile sulfide and interstitial water normalizations. Environ Toxicol Chem 15:2067鈥?079 CrossRef
    6. Beyrem H, Mahmoudi E, Essid N, Hedfi A, Boufahja F, A茂ssa P (2007) Individual and combined effects of cadmium and diesel on a nematode community in a laboratory microcosm experiment. Ecotoxicol Environ Saf 68:412鈥?18 CrossRef
    7. Beyrem H, Louati H, Essid N, A茂ssa P, Mahmoudi E (2010) Effects of two lubricant oils on marine nematode assemblages in a laboratory microcosm experiment. Mar Environ Res 69:248鈥?53 CrossRef
    8. Bik HM, Thomas WK, Lunt DH, Lambshead PJD (2010) Low endemism, continued deep-shallow interchanges, and evidence for cosmopolitan distributions in free-living marine nematodes (order Enoplida). BMC Evol Biol 10:389鈥?98 CrossRef
    9. Boeckner MJ (2009) Factors affecting meiofaunal colonization and assemblage structure in marine soft sediments. PhD thesis in Ecology, Faculty of Graduate Studies and Research, University of Alberta, Canada, 196p
    10. Boufahja F, Hedfi A, Amorri J, A茂ssa P, Beyrem H, Mahmoudi E (2011a) An assessment of the impact of chromium-amended sediment on a marine nematode assemblage using microcosm bioassays. Biol Trace Elem Res 142:242鈥?55 CrossRef
    11. Boufahja F, Hedfi A, Amorri J, A茂ssa P, Mahmoudi E, Beyrem H (2011b) Experimental validation of the 鈥楻elative Volume of the Pharyngeal Lumen (RVPL)鈥?of free-living nematodes as a biomonitoring index using sediment-associated metals and/or diesel fuel in microcosms. J Exp Mar Biol Ecol 399:142鈥?50 CrossRef
    12. Boufahja F, Sellami B, Dellali M, A茂ssa P, Mahmoudi E, Beyrem H (2011c) A microcosm experiment on the effects of permethrin on a free-living nematode assemblage. Nematology 13(8):901鈥?09 CrossRef
    13. Boufahja F, Hedfi A, Essid N, A茂ssa P, Mahmoudi E, Beyrem H (2012) An observational study on changes in biometry and generation time of / Odontophora villoti (Nematoda, Axonolaimidae) related to petroleum pollution in Bizerte bay, Tunisia. Environ Sci Pollut Res 19:646鈥?55 CrossRef
    14. Buchanan JB (1971) Measurement of the physical and chemical environment: sediments. In: Holme NA, McIntyre AD (eds) Methods for the study of marine benthos. International biological programme handbook no. 16. Blackwell Scientific Publications, Oxford, p 334
    15. Buchman MF (1999) NOAA screening quick reference tables, NOAA HAZMAT report 99鈥?. Coastal Protection and Restoration Division, National Oceanic and Atmospheric Administration, Seattle, 12聽pp
    16. Clarke KR, Gorley RN (2006) PRIMER v6: user manual/tutorial. PRIMER-E, Plymouth
    17. Cobb NA (1930) The demanian vessels in nemas of the genus / Oncholaimus; with notes on four new / Oncholaimus. J Wash Acad Sci 20:225鈥?41
    18. Commito JA, Tita G (2002) Differential dispersal rates in an intertidal meiofauna assemblage. J Exp Mar Biol Ecol 268:237鈥?56 CrossRef
    19. Deprez T, Steyaert M, Vanaverbeke J, Speybroeck J, Raes M, Derycke S, De Smet G, Ingels J, Vanreusel A, Van Gaever S, Vincx M (2005) NeMys, World Wide Web electronic publication, www.nemys.ugent.be. Department of Marine Biology, Ghent University
    20. Derycke S, Remerie T, Vierstraete A, Backeljau T, Vanfleteren J, Vincx M, Moens T (2005) Mitochondrial DNA variation and cryptic speciation within the free-living marine nematode / Pellioditis marina. Mar Ecol Prog Ser 300:91鈥?03 CrossRef
    21. Derycke S, Vanaverbeke J, Rigaux A, Backeljau T, Moens T (2010) Exploring the use of cytochrome oxidase c Subunit 1 (COI) for DNA barcoding of free-living marine nematodes. PLoS ONE 5(10):e13716 CrossRef
    22. Duarte MMMF, Moresco RN, Duarte T, Santi A, Bagatini MD, Da Cruz IBM, Schetinger MRC, Loro VL (2010) Oxidative stress in hypercholesterolemia and its association with Ala16Val superoxide dismutase gene polymorphism. Clin Biochem 43(13鈥?4):1118鈥?123 CrossRef
    23. Engelmann HD (1978) Zur Dominanzklassifizierung von Bodenarthropoden. Pedobiologia 18:378鈥?80
    24. Eskin RA, Palmer MA (1985) Suspension of marine nematodes in a turbulent tidal creek: species patterns. Biol Bull 169:615鈥?23 CrossRef
    25. Fonseca-Genevois V, Somerfield PJ, Neves MHB, Coutinho R, Moens T (2006) Colonization and early succession on artificial hard substrata by meiofauna. Mar Biol 148:1039鈥?050 CrossRef
    26. Franco MA, Steyaert M, Cabral HN, Tenreiro R, Chambel L, Vincx M, Costa MJ, Vanaverbeke J (2008) Impact of discards of beam trawl fishing on the nematode community from the Tagus estuary (Portugal). Mar Pollut Bull 56(10):1728鈥?736 CrossRef
    27. Gallucci F, Moens T, Vanreusel A, Fonseca G (2008) Active colonisation of disturbed sediments by deep-sea nematodes: evidence for the patch mosaic model. Mar Ecol Prog Ser 367:173鈥?83 CrossRef
    28. Guilini K, Soltwedel T, Van Oevelen D, Vanreusel A (2011) Deep-sea nematodes actively colonise sediments, irrespective of the presence of a pulse of organic matter: results from an in-situ experiment. PLoS ONE 6:1鈥?2 CrossRef
    29. Heip C (1996) Biodiversity of marine sediments. In: di Castri F, Youn猫s T (eds) Biodiversity, science and development: towards a new partnership. CAB International, UK, pp 139鈥?48
    30. Heip C, Vincx M, Vranken G (1985) The ecology of marine nematodes. Oceanogr Mar Biol 23:399鈥?89
    31. Hope WD, Murphy DG (1969) / Syringonornus typicus new genus, new species (Enoplida: Leptosomatidae) a marine nematode inhabiting arenaceous tubes. Proc Biol Soc Wash 82:511鈥?18
    32. Jenne EA, Zachara JM (1987) Factors influencing the sorption of metals. In: Dickson KL, Maki AW, Brungs WA (eds) Fate and effects of sediment-bound chemicals in aquatic systems. Pergammon Press, New York, pp 83鈥?8 CrossRef
    33. Jensen P (1987) Feeding ecology of free-living aquatic nematodes. Mar Ecol Prog Ser 35:187鈥?96 CrossRef
    34. Jensen P (1995) Life history of the nematode / Theristus anoxybioticus from sublittoral mussy sediment at methane seepages in the northern Kattegat, Denmark. Mar Biol 123:131鈥?36 CrossRef
    35. Jensen P (1996) Burrows of marine nematodes as centres for microbial growth. Nematologica 42:320鈥?29 CrossRef
    36. Lima PDL, Vasconcellos MC, Montenegro RC, Bahia MO, Costa ET, Antunes LMG, Burbano RR (2011) Genotoxic effects of aluminium, iron and manganese in human cells and experimental systems: a review of the literature. Hum Exp Toxicol 30(10):1435鈥?444 CrossRef
    37. Lu X, Bibby RL, Ford RB, Webster-Brown JG (2008) Creating metal-spiked bed sediments: a case study from Orewa estuary, New Zealand. Environ Toxicol Chem 27(10):2088鈥?096 CrossRef
    38. Luoma SN, Carter L (1991) Effects of trace metals in aquatic benthos. In: Newman MC, McIntosh AW (eds) Metal ecotoxicology: concepts and applications. Lewis Publishers, Chelsea
    39. Mahmoudi E, Essid N, Beyrem H, Hedfi A, Boufahja F, Vitiello P, A茂ssa P (2005) Effects of hydrocarbon contamination on a free living marine nematode community: results from microcosm experiments. Mar Pollut Bull 50:1197鈥?204 CrossRef
    40. Mahmoudi E, Essid N, Beyrem H, Hedfi A, Boufahja F, Vitiello P, A茂ssa P (2007) Individual and combined effects of lead and zinc of a free living marine nematode community: results from microcosm experiments. J Exp Mar Biol Ecol 343:217鈥?26 CrossRef
    41. Mahmoudi E, Essid N, Beyrem H, Hedfi A, Boufahja F, A茂ssa P, Vitiello P (2008) Mussel-farming effects on Mediterranean benthic nematode communities. Nematology 10(3):323鈥?33 CrossRef
    42. McMullin ER, Bergquist DC, Fisher CR (2000) Metazoans in extreme environments: tolerances of hydrothermal vent and hydrocarbon seep fauna. Gravity Space Biol Bull 13:13鈥?3
    43. Meyers SP, Hopper BE, Cefalu R (1970) Ecological investigations of the marine nematode / Metoncholaimus scissus. Mar Biol 6:43鈥?7 CrossRef
    44. Moens T, Vincx M (1997) Observations on the feeding ecology of estuarine nematodes. J Mar Biol Assoc U K 77:211鈥?27 CrossRef
    45. Moreno M, Semprucci F, Vezzulli L, Balsamo M, Fabiano M, Albertelli G (2011) The use of nematodes in assessing ecological quality status in the Mediterranean coastal ecosystems. Ecol Indic 11:328鈥?36 CrossRef
    46. Nebecker AV, Onjukka ST, Caims MA, Krawczyk DF (1986) Survival of / Daphnia magna and / Hyallela azteca in cadmium-spiked water and sediment. Environ Toxicol Chem 5910:933鈥?38 CrossRef
    47. Platt HM, Warwick RM (1983) Free-living marine nematodes. Part I. British Enoploids. Cambridge University, London, 307聽pp
    48. Platt HM, Warwick RM (1988) Free-living marine nematodes. Part II. British Chromadorids. Synopsis of the British fauna (new series) no. 38. E.J. Brill/W. Backhuys, Leiden
    49. Power RS, David HE, Mutwakil MHAZ, Fletcher K, Daniells C, Nowell MA, Dennis JL, Martinelli A, Wiseman R, Wharf E, De Pomerai DI (1998) Stress-inducible transgenic nematodes as biomonitors of soil and water pollution. J Biosci 23(4):513鈥?26 CrossRef
    50. Ramade F, Papigny A-G (2000) Dictionnaire encyclop茅dique des pollutions : les polluants de l鈥檈nvironnement 脿 l鈥檋omme. Ediscience International, Paris, p 690
    51. Riemann F, Helmke E (2002) Symbiotic relations of sediment-agglutinating nematodes and bacteria in detrital habitats: the enzyme-sharing concept. Mar Ecol 23(2):93鈥?13 CrossRef
    52. Rodrigues Da Silva NR, Da Silva MC, Fonseca Genevois V, De Esteves AM, De Ley P, Decraemer W, Rieger TT, Dos Santos Correia MT (2010) Marine nematode taxonomy in the age of DNA: the present and future of molecular tools to assess their biodiversity. Nematology 12(5):661鈥?72 CrossRef
    53. Romeo M, Gharbi-Bouraoui S, Gnassia-Barelli M, Dellal M, A蠆ssa P (2006) Responses of / Hexaplex (Murex) trunculus to selected pollutants. Sci Total Environ 359:135鈥?44 CrossRef
    54. Rzeznik-Orignac J, Fichet D, Boucher G (2004) Extracting massive numbers of nematodes from muddy marine deposits: efficiency and selectivity. Nematology 6(4):605鈥?16 CrossRef
    55. Sanchez W, Porcher JM (2009) Fish biomarkers as a useful tool for environmental monitoring within the Water Framework Directive (WFD). Trends Anal Chem 28(2):150鈥?58 CrossRef
    56. Schratzberger M, Rees HL, Boyd SE (2000) Effects of simulated deposition of dredged material on structure of nematode assemblages鈥攖he role of burial. Mar Biol 136:519鈥?30 CrossRef
    57. Schratzberger M, Whomersley P, Warr K, Bolam SG, Rees HL (2004) Colonisation of various types of sediment by estuarine nematodes via lateral infaunal migration: a laboratory study. Mar Biol 145:69鈥?8 CrossRef
    58. Schratzberger M, Warr K, Rogers SI (2007) Functional diversity of nematode communities in the southwestern North Sea. Mar Environ Res 63:368鈥?89 CrossRef
    59. Seinhorst JW (1959) A rapid method for the transfer of nematodes from fixative to anhydrous glycerine. Nematologica 4:67鈥?9 CrossRef
    60. Semprucci F (2013) Marine nematodes from the shallow subtidal coast of the Adriatic Sea: species list and distribution. Int J Biodivers 1:1鈥? CrossRef
    61. Semprucci F, Balsamo M (2012) Key role of free-living nematodes in the marine ecosystem. In: Nematodes: morphology, functions and management strategies. pp 109鈥?34
    62. Semprucci F, Boi P, Manti A, Covazzi Harriague A, Rocchi M, Colantoni P, Papa S, Balsamo M (2010) Benthic communities along a littoral of the Central Adriatic Sea (Italy). Helgol Mar Res 64:101鈥?15 CrossRef
    63. Semprucci F, Moreno M, Sbrocca S, Rocchi M, Albertelli G, Balsamo M (2013) The nematode assemblage as a tool for the assessment of marine ecological quality status: a case-study in the Central Adriatic Sea. Mediterr Mar Sci 14:48鈥?7 CrossRef
    64. Simpson SL, Angel BM, Jolley DF (2004) Metal equilibration in laboratory-contaminated (spiked) sediments used for the development of whole-sediment toxicity tests. Chemosphere 54:597鈥?09 CrossRef
    65. Soetaert K, Heip C (1995) Nematode assemblages of deep-sea and shelf break sites in the North Atlantic and Mediterranean Sea. Mar Ecol Prog Ser 125:171鈥?83 CrossRef
    66. Steyaert M, Garner N, Van Gansbeke D, Vincx M (1999) Nematode communities from the North Sea: environmental controls on species diversity and vertical distribution within the sediment. J Mar Biol Assoc UK 79:253鈥?64 CrossRef
    67. Teal JM, Wieser W (1966) The distribution and ecology of nematodes in a Georgia salt marsh. Limnol Oceanogr 11:217鈥?22 CrossRef
    68. Thiermann F, Windoffer R, Giere O (1994) Selected meiofauna around shallow water hydrothermal vents off Milos (Greece): ecological and ultrastructural aspects. Vie Milieu 44:215鈥?26
    69. Thiermann F, Vismann B, Giere O (2000) Sulphide tolerance of the marine nematode / Oncholaimus campylocercoides鈥攁 result of internal sulphur formation? Mar Ecol Prog Ser 193:251鈥?59 CrossRef
    70. Thomas MC, Da Cunha Lana P (2008) Evaluation of vital stains for free-living marine nematodes. Braz J Oceanogr 56(3):249鈥?51 CrossRef
    71. Tietjen JH (1980) Microbial鈥搈eiofaunal interrelationships: a review. Microbiology 110:335鈥?38
    72. Uhlig G (1964) Eine einfache methode zur extraktion der vagilen mesopsammalen mikrofauna. Helgol盲nder Wiss Meeresunters 11:178鈥?85 CrossRef
    73. Uhlig G (1966) Untersuchungen zur extraktion der vagilen mikrofauna aus marinen sedimenten. Zool Anz Suppl 29:151鈥?57
    74. Ullberg J, 脫lafsson E (2003) Free-living marine nematodes actively choose habitat when descending from the water column. Mar Ecol Prog Ser 260:141鈥?49 CrossRef
    75. Van Der Oost R, Beyer J, Vermeulen NPE (2003) Fish bioaccumulation and biomarkers in environmental risk assessment: a review. Environ Toxicol Pharmacol 13:57鈥?49 CrossRef
    76. Wallace HR, Doncaster CC (1964) A comparative study of the movement of some microphagous, plant-parasitic, and animal-parasitic nematodes. Phytopatology 54:313鈥?26
    77. Warwick RM, Platt HM, Somerfield PJ (1998) Free-living marine nematodes. Part III. British monohysterids. Synopsis of British fauna (new series) No. 53, Field Studies Council, Shrewsbury
    78. Wieser W (1953) Die Beziehung zwischen Mundh枚hlengestalt, Ern盲hrungsweise und Vorkommen bei freilebenden marinen Nematoden. Ark Zool 2:439鈥?84
    79. Wieser W (1959) Free-living marine nematodes. IV. General part. Reports of the Lund University Chile expedition 1948鈥?949. Univ Lund N F 55:1鈥?11
    80. Wieser W, Kanwisher J (1961) Ecological and physiological studies on marine nematodes from a small salt marsh near Woods Hole, Massachusetts. Limnol Oceanogr 6:262鈥?70 CrossRef
    81. Yoder M, De Ley IT, King IW, Mundo-Ocampo M, Mann J, Blaxter M, Poiras L, De Ley P (2006) DESS: a versatile solution for preserving morphology and extractable DNA of nematodes. Nematology 8(3):367鈥?76 CrossRef
    82. Yoshida M, Hamadi K, Ghrabi A (2002) Solid waste landfills and soil/sediment contamination around Bizerte lagoon: possible pollution sources. Study on environmental pollution of Mediterranean coastal lagoons. JICA Research Promotion Programme (RPP-SEPMCL), Initial Report, 55鈥?5
    83. Zhou H (2001) Effects of leaf litter addition on meiofaunal colonization of azoic sediments in a subtropical mangrove in Hong Kong. J Exp Mar Biol Ecol 256:99鈥?21 CrossRef
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Environment
    Environment
    Atmospheric Protection, Air Quality Control and Air Pollution
    Waste Water Technology, Water Pollution Control, Water Management and Aquatic Pollution
    Industrial Pollution Prevention
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1614-7499
文摘
The present work proposes a new experimental design using iron enrichment to select a single species from an entire meiobenthic nematode community. The high diversity of nematodes makes it impossible to study their responses to stressors in terms of chemical biomarkers, as this kind of research demands a single species as a form of biological material. Two assemblages, one from a control site (Canal) and one from an iron-contaminated site (Fouledh) in Bizerte Lagoon (Tunisia), were used to validate the protocol and to study whether pre-exposure to iron could affect the ease of the selection process. Analyses of variance suggested that the abundance and species number of nematodes from the Canal and Fouledh sites decreased discernibly with exposure to iron. Multivariate analyses performed on nematode abundances revealed that Oncholaimus campylocercoides, Sabatieria granifer, Sabatieria punctata and Theristus flevensis were the most tolerant species, probably due to their deposit-feeding behaviour. Species with a restricted feeding spectrum showed a low tolerance potential. At the end of the experiment, O. campylocercoides became the unique component of the nematode community from both sites. The complete alteration of the community was achieved with more difficulty for nematodes from Fouledh than for those from Canal. The identity of the selected species was confirmed at both the morphological levels and by sequencing the nuclear small subunit ribosomal DNA (18S rDNA).

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700