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草业科学  2015 

丛枝菌根真菌对车轴草属植物生长影响的Meta分析

DOI: 10.11829\j.issn.1001-0629.2015-0014, PP. 1576-1585

Keywords: 三叶草属,丛枝菌根真菌,Meta分析,接种,效应值

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Abstract:

?应用Meta分析(Metaanalysis)方法定量研究了接种丛枝菌根(ArbuscularMycorrhizae,AM)真菌对车轴草属(Trifolium)植物生物量和营养吸收的影响。通过WebofScience数据库检索,共收集得到30篇原始文献,提取得到525个独立样本值。结果表明,接种AM真菌能够显著增加车轴草属植物的总生物量、地上生物量和地下生物量,促进其对氮、磷的吸收。不同的AM真菌种类以及车轴草种类均对接种效果有影响,其中珠状巨孢囊霉(Gigasporamargarita)对车轴草属植物的生物量的促进效应最大;埃及车轴草(T.alexandrinum)地上、地下生物量对接种AM真菌的响应最强。胁迫处理能显著降低AM真菌对地上、地下生物量的接种效应。随培养时间延长,AM真菌能够显著增加氮、钾、锌吸收的接种效应。

References

[1]  Smith S E,Read D J.Mycorrhizal symbiosis[M].3 edition.New York:Academic Press,2010.
[2]  Ivanov S,Fedorova E E,Limpens E,De Mita S,Genre A,Bonfante P,Bisseling T.Rhizobium-legume symbiosis shares an exocytotic pathway required for arbuscule formation[J].Proceedings of the National Academy of Sciences of USA,2012,109(21):8316-8321.
[3]  van der Heijden M G A,Klironomos J N,Ursic M,Moutoglis P,Streitwolf-Engel R,Boller T,Wiemken A,Sanders I R.Mycorrhizal fungal diversity determines plant biodiversity,ecosystem variability and productivity[J].Nature,1998,396:69-72.
[4]  Chen B D,Liu Y,Shen H,Li X L,Christie P.Uptake of cadmium from an experimentally contaminated calcareous soil by arbuscular mycorrhizal maize(Zea mays L.)[J].Mycorrhiza,2004,14(6):347-354.
[5]  Sheng M,Tang M,Chen H,Yang B W,Zhang F F,Huang Y H.Influence of arbuscular mycorrhizae on photosynthesis and water status of maize plants under salt stress[J].Mycorrhiza,2008,18(6-7):287-296.
[6]  Vogel-Miku K,Pongrac P,Kump P,Neemer M,Regvar M.Colonisation of a Zn,Cd and Pb hyperaccumulator Thlaspi praecox Wulfen with indigenous arbuscular mycorrhizal fungal mixture induces changes in heavy metal and nutrient uptake[J].Environmental Pollution,2006,139(2):362-371.
[7]  Wang F,Lin X G,Yin R.Heavy metal uptake by arbuscular mycorrhizas of Elsholtzia splendens and the potential for phytoremediation of contaminated soil[J].Plant and Soil,2005,269(1-2):225-232.
[8]  Hedges L V,Gurevitch J,Curtis P S.The meta-analysis of response ratios in experimental ecology[J].Ecology,1999,80(4):1150-1156.
[9]  Treseder K K.A meta-analysis of mycorrhizal responses to nitrogen,phosphorus,and atmospheric CO2 in field studies[J].New Phytologist,2004,164(2):347-355.
[10]  Veresoglou S D,Menexes G,Rillig M C.Do arbuscular mycorrhizal fungi affect the allometric partition of host plant biomass to shoots and roots?A meta-analysis of studies from 1990 to 2010[J].Mycorrhiza,2012,22(3):227-235.
[11]  Treseder K K.The extent of mycorrhizal colonization of roots and its influence on plant growth and phosphorus content[J].Plant and Soil,2013,371(1-2):1-13.
[12]  Hoeksema J D,Chaudhary V B,Gehring C A,Johnson N C,Karst J,Koide R T,Pringle A,Zabinski C,Bever J D,Moore J C,Wilson G W T,Klironomos J N,Umbanhowar J.A meta-analysis of context-dependency in plant response to inoculation with mycorrhizal fungi[J].Ecology Letters,2010,13(3):394-407.
[13]  Lekberg Y,Koide R.Is plant performance limited by abundance of arbuscular mycorrhizal fungi?A meta-analysis of studies published between 1988 and 2003[J].New Phytologist,2005,168(1):189-204.
[14]  Koricheva J,Gange A C,Jones T.Effects of mycorrhizal fungi on insect herbivores:A meta-analysis[J].Ecology,2009,90(8):2088-2097.
[15]  Hedges L V.A random effects model for effect sizes[J].Psychological Bulletin,1983,93(2):388.
[16]  Adams D C,Gurevitch J,Rosenberg M S.Resampling tests for meta-analysis of ecological data[J].Ecology,1997,78(4):1277-1283.
[17]  Chandrasekaran M,Boughattas S,Hu S J,Oh S H,Sa T M.A meta-analysis of arbuscular mycorrhizal effects on plants grown under salt stress[J].Mycorrhiza,2014,24(8):1-15.
[18]  Mayerhofer M S,Kernaghan G,Harper K A.The effects of fungal root endophytes on plant growth:A meta-analysis[J].Mycorrhiza,2013,23(2):119-128.
[19]  Morgan P E,Ainsworth E A,Long S P.How does elevated ozone impact soybean?A meta-analysis of photosynthesis, growth and yield[J].Plant,Cell & Environment,2003,26(8):1317-1328.
[20]  van Houwelingen H C,Arends L R,Stijnen T.Advanced methods in meta-analysis:Multivariate approach and meta-regression[J].Statistics in Medicine,2002,21(4):589-624.
[21]  Giri B,Kapoor R,Mukerji K G.Influence of arbuscular mycorrhizal fungi and salinity on growth,biomass,and mineral nutrition of Acacia auriculiformis[J].Biology and Fertility of Soils,2003,38(3):170-175.
[22]  Klironomos J N,McCune J,Hart M,Neville J.The influence of arbuscular mycorrhizae on the relationship between plant diversity and productivity[J].Ecology Letters,2000,3(2):137-141.
[23]  Koller R,Rodriguez A,Robin C,Scheu S,Bonkowski M.Protozoa enhance foraging efficiency of arbuscular mycorrhizal fungi for mineral nitrogen from organic matter in soil to the benefit of host plants[J].New Phytologist,2013,199(1):203-211.
[24]  Saia S,Benítez E,García-Garrido J M,Settanni L,Amato G,Giambalvo D.The effect of arbuscular mycorrhizal fungi on total plant nitrogen uptake and nitrogen recovery from soil organic material[J].The Journal of Agricultural Science,2014,152(3):370-378.
[25]  Garg N,Manchanda G.Role of arbuscular mycorrhizae in the alleviation of ionic,osmotic and oxidative stresses induced by salinity in Cajanus cajan (L.) Millsp.(pigeonpea)[J].Journal of Agronomy and Crop Science,2009,195(2):110-123.
[26]  Fellbaum C R,Mensah J A,Pfeffer P E,Kiers E T,Bücking H.The role of carbon in fungal nutrient uptake and transport:Implications for resource exchange in the arbuscular mycorrhizal symbiosis[J].Plant Signaling & Behavior,2012,7(11):1-4.
[27]  Fellbaum C R,Gachomo E W,Beesetty Y,Choudhari S,Strahan G D,Pfeffer P E,KiersE T,Bücking H.Carbon availability triggers fungal nitrogen uptake and transport in arbuscular mycorrhizal symbiosis[J].Proceedings of the National Academy of Sciences of USA,2012,109(7):2666-2671.
[28]  George E,Marschner H,Jakobsen I.Role of arbuscular mycorrhizal fungi in uptake of phosphorus and nitrogen from soil[J].Critical Reviews in Biotechnology,1995,15(3-4):257-270.
[29]  Dumbrell A J,Ashton P D,Aziz N,Feng G,Nelson M,Dytham C,Fitter A H,Helgason T.Distinct seasonal assemblages of arbuscular mycorrhizal fungi revealed by massively parallel pyrosequencing[J].New Phytologist,2011,190(3):794-804.
[30]  Smith S E,Jakobsen L,Grnlund M,Smith F A.Roles of arbuscular mycorrhizas in plant phosphorus nutrition:Interactions between pathways of phosphorus uptake in arbuscular mycorrhizal roots have important implications for understanding and manipulating plant phosphorus acquisition[J].Plant Physiology,2011,156(3):1050-1057.
[31]  Pinochet J,Fernández C,de Carmen Jaizme M,Tenoury P.Micropropagated Banana infected with Meloidogyne javanica responds to Glomus intraradices and phosphorus[J].HortScience,1997,32(1):101-103.
[32]  Bi Y L,Li X L,Christie P,Hu Z Q,Wong M H.Growth and nutrient uptake of arbuscular mycorrhizal maize in different depths of soil overlying coal fly ash[J].Chemosphere,2003,50(6):863-869.
[33]  Giri B,Mukerji K.Mycorrhizal inoculant alleviates salt stress in Sesbania aegyptiaca and Sesbania grandiflora under field conditions:Evidence for reduced sodium and improved magnesium uptake[J].Mycorrhiza,2004,14(5):307-312.
[34]  Giri B,Kapoor R,Mukerji K.Improved tolerance of Acacia nilotica to salt stress by arbuscular mycorrhiza,Glomus fasciculatum may be partly related to elevated K/Na ratios in root and shoot tissues[J].Microbial Ecology,2007,54(4):753-760.

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