全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
科学通报  2011 

生物地球物理学的产生与研究进展

DOI: 10.1360/972010-467, PP. 1335-1344

Keywords: 生物地球物理学,生物地磁学,地质微生物改造作用

Full-Text   Cite this paper   Add to My Lib

Abstract:

地球庞大的生物群落广泛地参与了岩石圈浅层、水圈和大气圈的物理和化学性质的改造过程.认识生物圈及其与其他各圈层相互作用,具有重要的地球系统科学意义.近年来,随着生物地球科学的发展,地球物理学方法和技术开始被应用于地质微生物改造作用、地球物理场对生物的影响等研究,从而产生了生物地球物理学这一新的分支交叉学科.本文评述了生物地球物理学的产生和一些最新研究进展,旨在促进生物地球科学的发展与深化.

References

[1]  1 戎嘉余. 生物的起源与多样性演变——华夏化石记录的启示. 北京: 科学出版社, 2006. 1-962
[2]  3 叶连俊. 生物有机质成矿作用. 北京: 海洋出版社, 1996. 1-283
[3]  4 Schlesinger W H. Biogeochemistry: An Analysis of Global Change. 2nd ed. San Diego, Calif: Academic Press, 1997
[4]  6 Wacey D. Early Life on Earth: A Practical Guide. Berlin: Springer, 2009. 1-274
[5]  10 孙枢. 对我国全球变化与地球系统科学研究的若干思考. 地球科学进展, 2005, 20: 6-9
[6]  11 殷鸿福, 杨逢清, 谢树成, 等. 生物地质学. 武汉: 湖北省科学技术出版社, 2004. 1-264
[7]  13 谢树成, 龚一鸣, 童金南, 等. 从古生物学到地球生物学的跨越. 科学通报, 2006, 51: 2327-2336
[8]  19 董海良, 于炳松, 吕国. 地质微生物学中几项最新研究进展. 地质论评, 2009, 55: 731-758
[9]  20 Banfield J F, Nealson K H. Geomicrobiology: Interactions between Microbes and Minerals. Mineral Soc Am Rev Mineral, 1997, 35: 448
[10]  23 Prodan C, Mayo F, Claycomb J R, et al. Low-frequency, low-field dielectric spectroscopy of living cell suspensions. J Appl Phys, 2004,95: 3754-3756??
[11]  28 Williams K H, Kemna A, Wilkins M J, et al. Geophysical monitoring of coupled microbial and geochemical processes during stimulatedsubsurface bioremediation. Environ Sci Technol, 2009, 43: 6717-6723??
[12]  31 Personna Y R, Ntarlagiannis D, Slater L, et al. Spectral induced polarization and electrodic potential monitoring of microbially mediatediron sulfide transformations. J Geophys Res, 2008, 113: G02020, doi: 10.1029/2007JG000614
[13]  32 Reguera G, McCarthy K D, Mehta T, et al. Extracellular electron transfer via microbial nanowires. Nature, 2005, 435: 1098-1101??
[14]  33 Carlut J, Horen H, Janots D. Impact of micro-organisms activity on the natural remanent magnetization of the young oceanic crust. EarthPlanet Sci Lett, 2007, 253: 497-506??
[15]  34 潘永信, 邓成龙, 刘青松, 等. 趋磁细菌磁小体的生物矿化作用和磁学性质研究进展. 科学通报, 2004, 49: 2505-2510
[16]  37 徐文耀. 地球电磁现象物理学. 合肥: 中国科学技术大学出版社, 2009. 1-558
[17]  41 Wiltschko W, Wiltschko R. Magnetic orientation and magnetoreception in birds and other animals. J Comp Physiol A, 2005, 191:675-693??
[18]  42 Lohmann K J, Cain S D, Dodge S A, et al. Regional magnetic fields as navigational markers for sea turtles. Science, 2001, 294: 364-366??
[19]  45 Holland R A, Thorup K, Vonhof M J, et al. Navigation: Bat orientation using Earth’s magnetic field. Nature, 2006, 444: 702??
[20]  47 Lohmann K J, Lohmann C M F, Putman N F. Magnetic maps in animals: Nature’s GPS. J Exp Biol, 2007, 210: 3697-3705??
[21]  48 田兰香. 动物地磁导航磁受体的磁学探测及其矿化机理研究. 博士学位论文. 北京: 中国科学院地质与地球物理研究所, 2008
[22]  49 Hanzlik M, Heunemann C, Holtkamp-R?tzler E, et al. Superparamagnetic magnetite in the upper beak tissue of homing pigeons. Biometals,2000, 13: 325-331??
[23]  50 Tian L X, Xiao B, Lin W, et al. Testing for the presence of magnetite in the upper-beak skin of homing pigeons. Biometals, 2007, 20:197-203??
[24]  55 Gegear R J, Foley L E, Casselman A, et al. Animal cryptochromes mediate magnetoreception by an unconventional photochemicalmechanism. Nature, 2010, 463: 804-808??
[25]  56 Blakemore R. Magnetotactic bacteria. Science, 1975, 190: 377-379??
[26]  57 Bazylinski D A, Frankel R B. Magnetosome formation in prokaryotes. Nature Rev Microbiol, 2004, 2: 217-230??
[27]  60 Lin W, Li J H, Schüler D. Diversity analysis of magnetotactic bacteria in Lake Miyun, northern China, by restriction fragment lengthpolymorphism. Syst Appl Microbiol, 2009, 32: 342-350??
[28]  62 Lin W, Tian L X, Li J H, et al. Does capillary racetrack-based enrichment reflect the diversity of uncultivatedmagnetotactic cocci in environmentalsamples? FEMS Microbiol Lett, 2008, 279: 202-206
[29]  63 Lin W, Pan Y X. Specific primers for detection of freshwater Alphaproteobacterial magnetotactic cocci. Int Microbiol, 2009, 12: 237-242
[30]  68 Lin W, Pan Y X. Temporal variation of magnetotactic bacteria communities in two freshwater sediment microcosms. FEMS MicrobiolLett, 2010, 302: 85-92??
[31]  69 张文燕, 张圣妲, 肖天, 等. 趋磁细菌的地域分布特征. 环境科学, 2010, 31: 450-458
[32]  72 Pan Y X, Petersen N, Winklhofer M, et al. Rock magnetic properties of uncultured magnetotactic bacteria. Earth Planet Sci Lett, 2005,237: 311-325??
[33]  75 McKay D S, Gibson E K, ThomasKeprta K L, et al. Search for past life on Mars: Possible relic biogenic activity in Martian meteoriteALH84001. Science, 1996, 273: 924-930??
[34]  76 Thomas-Keprta K L, Clemett S J, Bazylinski D A, et al. Magnetofossils from ancient Mars: A robust biosignature in the Martian meteoriteALH84001. Appl Environ Microbiol, 2002, 68: 3663-3672??
[35]  77 Thomas-Keprta K L, Clemett S J, McKay D S, et al. Origins of magnetite nanocrystals in Martian meteorite ALH84001. Geochim CosmochimActa, 2009, 73: 6631-6677??
[36]  78 Bonan G B. Forests and climate change: Forcings, feedbacks, and the climate benefits of forests. Science, 2008, 320: 1444-1449??
[37]  79 Bathiany S, Claussen M, Brovkin V, et al. Combined biogeophysical and biogeochemical effects of large-scale forest cover changes in theMPI earth system model. Biogeosciences, 2010, 7: 1383-1399??
[38]  80 Dekker S C, De Boer H J, Brovkin V, et al. Biogeophysical feedbacks trigger shifts in the modelled vegetation-atmosphere system atmultiple scales. Biogeosciences, 2010, 7: 1237-1245??
[39]  82 Jogler C, Schüler D. Genomics, genetics, and cell biology of magnetosome formation. Annu Rev Microbiol, 2009, 63: 501-521??
[40]  2 Courtillot V, Olson P. Mantle plumes link magnetic superchrons to phanerozoic mass depletion events. Earth Planet Sci Lett, 2007, 260:495-504??
[41]  5 Konhauser K. Introduction to Geomicrobiology. Maldon: Blackwell Publishing, 2007. 1-579
[42]  7 Johnson C M, Beard B L, Roden E E. The iron isotope fingerprints of redox and biogeochemical cycling in modern and ancient Earth.Annu Rev Earth Planet Sci, 2008, 36: 457-493??
[43]  8 中国科学院地学部“中国地球科学发展战略”研究组. 地球科学: 世纪之交的回顾与展望. 中国科学院院刊, 2001, 2: 101-105
[44]  9 汪品先. 走向地球系统科学的必由之路. 地球科学进展, 2008, 18: 795-796
[45]  12 殷鸿福, 谢树成, 秦建中, 等. 对地球生物学、生物地质学和地球生物相的一些探讨. 中国科学D 辑: 地球科学, 2008, 38:1473-1480
[46]  14 Atekwana E A, Slater L D. Biogeophysics: A new frontier in Earth science research. Rev Geophys, 2009, 47: RG4004, doi:10.1029/2009RG000285
[47]  15 Pan Y X, Lin W, Li J H, et al. Magnetic properties of magnetic minerals produced by magentotactic bacteria and their contribution tosedimentary magnetism. In: AGU Chapman Conference on Biogeophysics, 2008. 29-30
[48]  16 Whitman W B, Coleman D C, Wiebe W J. Prokaryotes: The unseen majority. Proc Natl Acad Sci USA, 1998, 95: 6578-6583??
[49]  17 高培基, 许平. 资源环境微生物技术. 北京: 化学工业出版社, 2004. 1-363
[50]  18 Nealson K H, Stahl D A. Microorganisms and biogeochemical cycles: What can we learn from layered microbial communities. Rev MineralGeochem, 1997, 35: 5-34
[51]  21 Bouwer E J, Rijnaarts H H M, Cunningham A B, et al. Biofilms in porous media. In: Bryers J D, ed. Biofilms II: Process Analysis andApplications, 2000. 123-158
[52]  22 Naudet V, Revil A, Rizzo E, et al. Groundwater redox conditions and conductivity in a contaminant plume from geoelctrical investigations.Hydrol Earth Syst Sci, 2004, 8: 8-22??
[53]  24 Davis C A, Pyrak-Nolte L J, Atekwana E A, et al. Investigating the effects of microbial growth and biofilm formation on seismic wavepropagation in sediment. In: AGU Chapman Conference on Biogeophysics, 2008
[54]  25 Brovelli A, Malaguerra F, Barry D A. Bioclogging in porous media: Model development and sensitivity to initial conditions. EnvironModell Softw, 2009, 24: 611-626
[55]  26 Revil A, Glover P W J. Nature of surface electrical conductivity in natural sands, sandstones, and clays. Geophys Res Lett, 1998, 25:691-694??
[56]  27 Williams K H, Ntarlagiannis D, Slater L, et al. Geophysical imaging of stimulated microbial biomineralization. Environ Sci Technol, 2005,39: 7592-7600??
[57]  29 Ntarlagiannis D, Williams K H, Slater L, et al. The low frequency electrical response to microbially induced sulfide precipitation. J GeophysRes, 2005, 110: G02009, doi:10.1029/2005JG000024
[58]  30 Slater L, Ntarlagiannis D, Personna Y R, et al. Pore-scale spectral induced polarization signatures associated with FeS biomineral transformations.Geophys Res Lett, 2007, 34: L21404, doi:10.1029/2007GL031840??
[59]  35 Estella A A, Eliot A A. Geophysical signatures of microbial activity at hydrocarbon contaminated sites: A review. Surv Geophys, 2010, 31:247-283??
[60]  36 Tarduno J A, Cottrell R D, Watkeys M K, et al. Geodynamo, solar wind and magnetopause 3.4 to 3.45 billion years ago. Science, 2010,327: 1238-1240
[61]  38 Dubrov A P. The Geomagnetic Field and Life: Geomagnetobiology. New York: Plenum Press, 1978. 1-318
[62]  39 朱日祥, 潘永信, 邓成龙. 地磁场与生物的磁效应. 科技导报, 2006, 24: 5-7
[63]  40 Wiltschko R, Wiltschko W. Magnetic Orientation in Animals. Berlin: Springer, 1995. 1-297
[64]  43 Wang Y N, Pan Y X, Parsons S, et al. Bats respond to polarity of a magnetic field. Proc R Soc B-Biol Sci, 2007, 274: 2901-2905??
[65]  44 Diebel C E, Proksch R, Green C R, et al. Magnetite defines a vertebrate magnetoreceptor. Nature, 2000, 406: 299-302??
[66]  46 Kirschvink J L, Walker M M, Diebel C E. Magnetite-based magnetoreception. Curr Opin Neurobiol, 2001, 11: 462-467??
[67]  51 Fleissner G, Stahl B. A novel concept of Fe-mineral-based magnetoreception: Histological and physicochemical data from the upper beakof homing pigeons. Naturwissenschaften, 2007, 94: 631-642??
[68]  52 Tian L X, Lin W, Zhang S Y, et al. Bat head contains soft magnetic particles: evidence from magnetism. Bioelectromagnetics, 2010, 31:499-503??
[69]  53 Ritz T, Adem S, Schulten K. A model for photoreceptor-based magnetoreception in birds. Biophys J, 2000, 78: 707-718??
[70]  54 Mora C V, Davison M, Wild J M, et al. Magnetoreception and its trigeminal mediation in the homing pigeon. Nature, 2004, 432: 508-511??
[71]  58 Schüler D. Magnetoreception and Magnetosomes in Bacteria. Berlin: Springer-Verlag, 2006. 1-319
[72]  59 贾蓉芬, 高梅影, 彭先芝, 等. 微生物矿化. 北京: 科学出版社, 2009. 1-335
[73]  61 Pan Y X, Petersen N, Davila A F, et al. The detection of bacterial magnetite in recent lake sediments of Lake Chiemsee (southern Germany).Earth Planet Sci Lett, 2005, 232: 109-123??
[74]  64 Lin W, Pan Y X. Uncultivated magnetotactic cocci from Yuandadu Park in Beijing, China. Appl Environ Microbiol, 2009, 75: 4046-4052??
[75]  65 Pan Y X, Lin W, Tian L X, et al. Combined approaches for characterization of an uncultivated magnetotactic coccus from the Lake Miyunnear Beijing. Geomicrobiol J, 2009, 26: 313-320??
[76]  66 李金华. 趋磁细菌AMB-1 的生物矿化和磁学研究. 博士学位论文. 北京: 中国科学院地质与地球物理研究所, 2010
[77]  67 Li J H, Pan Y X, Liu Q S, et al. Biomineralization, crystallography and magnetic properties of bullet-shaped magnetite magnetosomes ingiant rod magnetotactic bacteria. Earth Planet Sci Lett, 2010, 293: 368-376??
[78]  70 Pan Y X, Lin W, Li J H, et al. Efficiency of magnetotaxis in magnetotactic coccoid bacteria. Biophys J, 2009, 97: 986-991??
[79]  71 Kopp R E, Kirschvink J L. The identification and biogeochemical interpretation of fossil magnetotactic bacteria. Earth Sci Rev, 2008, 86:42-61??
[80]  73 Mandernack K W, Bazylinski D A, Shanks W C, et al. Oxygen and iron isotope studies of magnetite produced by magnetotactic bacteria.Science, 1999, 285: 1892-1896??
[81]  74 李金华, 潘永信, 刘青松, 等. 趋磁细菌Magnetospirillum magneticum AMB-1 全细胞和纯化磁小体的磁学比较研究. 科学通报,2009, 54: 3345-3351
[82]  81 Claussen M, Brovkin V, Ganopolski A. Biogeophysical versus biogeochemical feedbacks of large-scale land cover change. Geophys ResLett, 2001, 28: 1011-1014
[83]  83 姜伟, 付刚, 李颖. 细菌内磁纳米粒研究——细菌内磁纳米粒的特性及应用. 中国医学工程杂志, 2003, 11: 59-62
[84]  84 林巍, 田兰香, 潘永信. 趋磁细菌磁小体研究进展. 微生物学通报, 2006, 33: 133-137
[85]  85 Ding Y, Li J H, Liu J N, et al. Deletion of the ftsZ-like gene results in the production of superparamagnetic magnetite magnetosomes inMagnetospirillum gryphiswaldense. J Bacteriol, 2010, 192: 1097-1105??
[86]  86 Sun J B, Duan J H, Dai S L, et al. In vitro and in vivo antitumor effects of doxorubicin loaded with bacterial magnetosomes (DBMs) onH22 cells: The magnetic bio-nanoparticles as drug carriers. Cancer Lett, 2007, 258: 109-117??
[87]  87 Faivre D, Schuler D. Magnetotactic bacteria and magnetosomes. Chem Rev, 2008, 108: 4875-4898??
[88]  88 Cao C Q, Tian L X, Liu Q S, et al. Magnetic characterization of non-interacting, randomly oriented, nanometer-scale ferrimagnetic particles.J Geophys Res, 2010, 115: B07103, doi: 10.1029/2009JB006855

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133