[1]孙 羽.丛枝菌根真菌在植物生态系统中的调控作用[J].黑龙江农业科学,2011,(08):128-131.
 SUN Yu.Role of Arbuscular Mycorrhizal Fungi in Plant Ecosystems[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):128-131.
点击复制

丛枝菌根真菌在植物生态系统中的调控作用

参考文献/References:

[1] Hayman D S.Mycorrhiza and crop production[J].Nature,1980287:487-488.

[2]Brundertt M C.Coevolution roots and mycorrhizas of land plants[J].New Phytologist,2002154:275-304.

[3]Smith S E,Smith F A,Jakobsen I.Mycorrhizal fungi can dominate phosphate supply to plants irrespective of growth responses[J].Plant Physiology,2003133:16-20.

[4]van der Heijden M G A,Streitwolf-Engel R,Riedl R,et al.The mycorrhizal contribution to plant productivity,plant nutrition and soil structure in experimental grassland[J].New Phytologist,2006172:739-752.

[5]Li Xiaolin,Geoege E,Marschner H.Phosphorus depletion and pH decrease at the root-soil and hyphae-soil interfaces of VAM white clover fertilized with amonium[J].New Phytologist,1991,119:397-404.

[6]Smith S E,Gianinazzi-Pearson V,Koide R,et al.Nutrient transport in mycorrhizas:structure,physiology and consequences for efficiency of the symbiosis[J].Plant and Soil,1994159:103-113.

[7]冯固,杨茂秋,白灯莎,等.VA菌根真菌对石灰性土壤不同形态磷酸盐有效性的影响[J].植物营养与肥料学报,19973:43-48.

[8]Hodge A,Campbell C D,Fitter A H.An arbuscular mycorrhizal fungus accelerates decomposition and acquires nitrogen directly from organic material[J].Nature,2001,413:297-299.

[9]Reynolds H L,Hartley A E,Vogelsang K M,et al.Arbuscular mycorrhizal fungi do not enhance nitrogen acquisition and growth of old-field perennials under low nitrogen supply in glasshouse culture[J].New Phytologist,2005167:869-880.

[10]Koide R T,Dickie I A.Effects of mycorrhizal fungi on plant populations[J].Plant and Soil,2002244:307-317.

[11]Mitchell R J,Karron J D,Holmquist K G,et al.The influence of Mimulus ringens?floral display size on pollinator visitation patterns[J].Function Ecology,200418:116-124.

[12]Gaura A,Gaurb A,Adholeya A.Growth and flowering in Petunia hybrida,Callistephus chinensis?and Impatiens balsamina?inoculated with mixed AM inoculation or chemical fertilizers in a soil of low P fertility[J].Scientia Horticulture,200084:151-162.

[13]Scagel C F.Inoculation with arbuscular mycorrhizal fungi alters nutrient allocation and flowering of Freesia x hybrida[J].Journal of Environmental Horticulture,200321:196-205.

[14]Trimble M R,Knowles N R.Influence of phosphorus nutrition and vesicular-arbuscular mycorrhizal fungi on growth and yield of greenhouse cucumberCucumis sativus·L.[J].Canadian Journal of Plant Science,199575:251-259.

[15]Wolfe B E,Husband B C,Klironomos J N.Effects of a belowground mutualism on an aboveground mutualism[J].Ecology Letters,20058:218-223.

[16]Ruiz-Lozano J M,Azcon R,Gomez M.Alleviation of salt stress by arbuscular mycorrhizal Glomus species in Lactuca sativa plants[J].Physiologia Plantarum,199698:767-772.

[17]Porcel R,Gómez M,Kaldenhoff R,et al.Impairment of NtAQP1 gene expression in tobacco plants does not affect root colonisation pattern by arbuscular mycorrhizal fungi but decreases their symbiotic efficiency under drought[J].Mycorrhiza,200515:417-423.

[18]Slezack S,Dumas G E,Paynot M S,et al.Is a fully established arbuscular mycorrhizal symbiosis required for bioprotection of Pisum sativum?roots against Aphanomyces euteiches?[J].Molecular Plant-Microbe Interactions,200013:238-241.

[19]Gera Hol W H,Cook R.An overview of arbuscular mycorrhizal fungi-nematode interactions[J].Basic and Applied Ecology,20056:489-503.

[20]Avio L,Pellegrino E,Bonari E,et al.Functional diversity of arbuscular mycorrhizal fungal isolates in relation to extraradical mycelial networks[J].New Phytologist,2006172:347-357.

[21]Munkvold L,Kjller R,Vestberg M,et al.High functional diversity within species of arbuscular mycorrhizal fungi[J].New Phytologist,2004164:357-364.

[22]Hart M M,Reader R J.Taxonomic basis for variation in the colonization strategy of arbuscular mycorrhizal fungi[J].New Phytologist,2002153:335-344.

[23]Hodge A,Campbell C D,Fitter A H.An arbuscular mycorrhizal fungus accelerates decomposition and acquires nitrogen directly from organic material[J].Nature,2001,413:297-299.

[24]Watkins N K,Fitter A H,Graves J D,et al.Carbon transfer between C3 and C4 plants linked by a common mycorrhizal network,quantified using stable carbon isotopes[J].Soil Biology Biochemistry,1996,28:471-477.

[25]Maherali H,Klironomos J N.Influence of Phelogeny on fungal community assemble and ecosystem function-ing[J].Science,2007316:1746-1748.

[26]van der Heijden M G A,Klironomos J N,Ursic M,et al.Mycorrhizal fungal diversity determines plant biodiversity,ecosystem variability and productivity[J].Nature,1998396:72-75.

[27]Grime J P,Mackey J M L,Hillier S H,et al.Floristic diversity in a model system using experimental micro-cosms[J].Nature,1987328:420-422.

[28]O’Connor P J,Smith S E,Smith F A.Arbuscular mycorrhizas influence plant diversity and community structure in a semiarid herbland[J].New Phytologist,2002154:209-218.

[29]Urcelay C,Díaz S.The mycorrhizal dependence of subordinates determines the effect of arbuscular mycorrhizal fungi on plant diversity[J].Ecology Letters,20036:388-391.

[30]Vogelsang K M,Reynolds H L,Bever J D.Mycorrhizal fungal identity and richness determine the diversity and productivity of a tallgrass prairie system[J].New Phytologist,2006172:554-562.


相似文献/References:

[1]赵 迪,刘仁泽,郭长虹,等.植物高温抗性转录因子基因工程研究进展[J].黑龙江农业科学,2014,(06):130.
 ZHAO Di,LIU Renze,GUO Changhong,et al.Genetic Engineering Advance for Heat Tolerance Transcription Factors of Plants[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(08):130.
[2]王志坤. 黑龙江省西北部地区土壤有机质下降的影响及改良对策[J].黑龙江农业科学,2013,(01):36.
 WANGZhi-kun.EffectofSoilOrganicMatterDeclineandItsImprovementCountermeasuresofNorthwestRegioninHeilongjiangProvince[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(08):36.
[3]秦春林.城市公园植物生态景观设计的探讨[J].黑龙江农业科学,2013,(06):90.
 QINChun-lin.DiscussionontheDesignofPlantsEcologicalLandscapeinUrbanPark[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(08):90.
[4]孙跃春,陈 鑫,殷奎德.盐胁迫下接种丛枝菌根真菌对牛蒡幼苗生长的影响[J].黑龙江农业科学,2011,(06):93.
 SUN Yue-chun,CHEN Xin,YIN Kui-de.Effects of Arbuscular Mycorrhizal Fungi on Arctium lappa L. Seedling Growth under Saline Stress[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):93.
[5]岳莉然,高春义,李永峰.人工湿地中植物的生理生态研究进展[J].黑龙江农业科学,2011,(06):143.
 YUE Li-ran,GAO Chun-yi,LI Yong-feng.Research Progress on the Physiology andEcology of Plants in Constructed Wetland[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):143.
[6]赵 芒,牛雅静,马樱宁.中国古典园林的季相景观[J].黑龙江农业科学,2011,(09):79.
 ZHAO Mang,NIU Ya-jing,MA Ying-ning.Seasonal Landscape in Classical Chinese Garden[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):79.
[7]王 芳.抑制消减杂交技术在植物病害研究中的应用[J].黑龙江农业科学,2011,(11):136.
 WANG Fang.Application of the Suppression Subtractive Hybridization Technique in Plant-Diseases[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):136.
[8]蒋冬月,李永红.植物挥发性有机物的研究进展[J].黑龙江农业科学,2011,(11):143.
 JIANG Dong-yue,LI Yong-hong.Review on Volatile Organic Compounds of Plant[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(08):143.
[9]相静波.中国古典园林中植物的应用探讨[J].黑龙江农业科学,2010,(08):101.
 XIANG Jing-bo.Preliminary Analysis of the Application of Garden Plants in Classical Gardens[J].HEILONGJIANG AGRICULTURAL SCIENCES,2010,(08):101.
[10]张勇.植物配置在城市园艺设计中的问题浅析[J].黑龙江农业科学,2013,(10):76.
 ZHANG Yong.Analysis on Problems of Plant Configuration in Urban Gardening Design[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(08):76.
[11]姜朦,杨洪一.丛枝菌根真菌对植物抗非生物胁迫研究进展[J].黑龙江农业科学,2020,(09):117.[doi:10.11942/j.issn1002-2767.2020.09.0117]
 [J].HEILONGJIANG AGRICULTURAL SCIENCES,2020,(08):117.[doi:10.11942/j.issn1002-2767.2020.09.0117]

备注/Memo

基金项目:黑龙江省农业科技创新工程重点资助项目

作者简介:孙羽(1980-),女,黑龙江省大庆市人,博士,助理研究员,从事植物营养生理研究。E-mail:sunyn_1980@tom.com。

更新日期/Last Update: 2014-11-05