Mangan S A, Eom A H, Adler G H, et al . Diversity of arbuscular mycorrhizal fungi across a fragmented forest in Panama: Insular spore communities differ from mainland communities. Oecologia, 2004, 141(4): 687-700.
[2]
Wu Q S, Yuan F Y, Fei Y J, et al . Effects of arbuscular mycorrhizal fungi on aggregate stability, GRSP, and carbohydrates of white clover. Acta Prataculturae Sinica, 2014, 23(4): 269-275. 浏览
[3]
Wu Q S, Yuan F Y, Fei Y J, et al . Effects of arbuscular mycorrhizal fungi on root system architecture and sugar contents of white clover. Acta Prataculturae Sinica, 2014, 23(1): 199-204. 浏览
[4]
Jansa J, Mozafar A, Anken T, et al . Diversity and structure of AMF communities as affected by tillage in a temperate soil. Mycorrhiza, 2002, 12(5): 225-234.
[5]
Lugo M A, Cabello M N. Native arbuscular mycorrhizal fungi (AMF) from mountain grassland (Córdoba, Argentina) I. Seasonal variation of fungal spore diversity. Mycologia, 2002, 94(4): 579-586.
[6]
Entry J A, Fuhrmann J J, Sojka R E, et al . Influence of irrigated agriculture on soil carbon and microbial community structure. Environmental Management, 2004, 33(SUPPL. 1): 363-373.
[7]
Cai B P, Chen J Y, Zhang Q X, et al . Three new records of arbuscular mycorrhizal fungi associated with Prunus mume in China. Mycosystema, 2008, 27(4): 538-542.
[8]
Wu C H, Chen X, Wang Z Q. Lead absorption by weeds from lead-polluted soil. Chinese Journal of Applied Ecology, 2004, 15(8): 1451-1454.
[9]
Greipsson S, El-Mayas H. Arbuscular mycorrhizae of Leymus arenarius on coastal sands and reclamation sites in Iceland and response to inoculation. Restoration Ecology, 2000, 8(2): 144-150.
[10]
McHugh J M, Dighton J. Influence of mycorrhizal inoculation, inundation period, salinity, and phosphorus availability on the growth of two salt marsh grasses, Spartina alterniflora Lois. and Spartina cynosuroides (L.) Roth., in nursery systems. Restoration Ecology, 2004, 12(4): 533-545.
[11]
Richter B S, Stutz J C. Mycorrhizal inoculation of big sacaton: Implications for grassland restoration of abandoned agricultural fields. Restoration Ecology, 2002, 10(4): 607-616.
[12]
Cordoba A S, De Mendonca M M, Stuermer S L, et al . Diversity of arbuscular mycorrhizal fungi along a sand dune stabilization gradient: A case study at Praia da Joaquina, Ilha de Santa Catarina, South Brazil. Mycoscience, 2001, 42(4): 379-387.
[13]
Kiers E T, Lovelock C E, Krueger E L, et al . Differential effects of tropical arbuscular mycorrhizal fungal inocula on root colonization and tree seedling growth: Implications for tropical forest diversity. Ecology Letters, 2000, 3(2): 106-113.
[14]
Yang H X, Liu R J, Guo S X. Effects of arbuscular mycorrhizal fungus Glomus mosseae on the growth characteristics of Festuca arundinacea under salt stress conditions. Acta Prataculturae Sinica, 2014, 23(4): 195-203. 浏览
[15]
Dodd J C, Thomson B D. The screening and selection of inoculant arbuscular-mycorrhizal and ectomycorrhizal fungi. Plant and Soil, 1994, 159(1): 149-158.
[16]
Kaya C, Ashraf M, Sonmez O, et al . The influence of arbuscular mycorrhizal colonisation on key growth parameters and fruit yield of pepper plants grown at high salinity. Scientia Horticulturae, 2009, 121(1): 1-6.
[17]
Smith S E, Facelli E, Pope S, et al . Plant performance in stressful environments: Interpreting new and established knowledge of the roles of arbuscular mycorrhizas. Plant and Soil, 2010, 326(1): 3-20.
[18]
Zhang M Q, Wang Y S, Xing L J. The ecological distribution of AM fungi community in south and east coast of China. Mycosystema, 1998, 17(3): 274-277.
[19]
Sheng M, Tang M, Zhang F F, et al . Effect of soil factors on arbuscular mycorrhizal fungi in saline alkaline soils of Gansu, Inner Mongolia and Ningxia. Biodiversity Science, 2011, 19(1): 85-92.
[20]
Schenck N C, Perez Y. Manual for Identification of Vesicular Arbuscular Mycorrhizal Fungi[M]. Gainesville: University of Florida, 1988.
[21]
Mao S C, Xing J S, Song M J, et al . Reaction of two indigenous strains of VAMF on cotton. Cotton Science, 1994, 6(4): 237-242.
[22]
Sanders I R, Fitter A H. Evidence for differential responses between host-fungus combinations of vesicular-arbuscular mycorrhizas from a grassland. Mycologist Resarch, 1992, 96(6): 415-419.
[23]
Mason E. Note on the presence of mycorrhiza in the roots of salt marsh plants. New Phytologist, 1928, 27(3): 193-195.
[24]
Tang M, Huang Y H, Sheng M, et al . Diversity and distribution of arbuscular mycorrhizal fungi in saline alkaline soil, Inner Mongolia. Acta Pedologica Sinica, 2007, 44(6): 1104-1110.
[25]
Wang G J. The Symbiotic Diversity of Arbuscular Mycorrhizal in Salinized Leymus chinensis Grassland in Western Jilin Province[D]. Changchun: Northeast Normal University, 2005.
[26]
Cai B P, Zhang Y, Chen Y J, et al . Three new records of arbuscular mycorrhizal fungi associated with wild Prunus mume from Tibet in China. Mycosystema, 2007, 26(1): 36-39.
[27]
Miller S P. Arbuscular mycorrhizal colonization of semi-aquatic grasses along a wide hydrologic gradient. New Phytologist, 2000, 145(1): 145-155.
[28]
Nilsson L O, Giesler R, Bååth E, et al . Growth and biomass of mycorrhizal mycelia in coniferous forests along short natural nutrient gradients. New Phytologist, 2005, 165(2): 613-622.
[29]
Peng Y L, Yang M N, Cai X B. Influence of soil factors on species diversity of arbuscular mycorrhizal(AM) fungi in Stipa steppe of Tibet Plateau. Chinese Journal of Applied Ecology, 2010, 21(5): 1258-1263.
[30]
Hou X F, He X L. The spatio-temporal distribution of arbuscular mycorrhizal fungi from Hedysarum leave Maxim. Journal Publishing Department of Agricultural University of Hebei, 2007, 133(4): 50-54.
[31]
Phillings J M, Hayman D S. Improves procedures for clearing roots and staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid assessment of infection. Transactions of the British Mycological Society, 1970, 55(1): 158-160.
[32]
Giovannetti M, Mosse B. An evaluation of techniques for measuring vesicular arbuscular mycorrhizal infection in roots. New Phytologist, 1980, 84(3): 489-500.
[33]
Liu R J, Liu P Q, Xu K, et al . Ecological distribution of arbuscular mycorrhizal fungi in saline alkaline soils of China. Chinese Journal of Applied Ecology, 1999, 10(6): 721-724.
[34]
Carvalho L M, Caçador I, Martins-Loução M. Temporal and spatial variation of arbuscular mycorrhizas in salt marsh plants of the Tagus estuary (Portugal). Mycorrhiza, 2001, 11(6): 303-309.
[35]
Sengupta A, Chaudhuri S. Arbuscular mycorrhizal relations of mangrove plant community at the Ganges river estuary in India. Mycorrhiza, 2002, 12(4): 169-174.
[36]
Al-Karaki G N. Salt stress response of salt-sensitive and tolerant durum wheat cultivars inoculated with mycorrhizal fungi. Acta Agronomica Hungarica, 2001, 49(1): 25-34.
[37]
Thrall P H, Bever J D, Slattery J F. Rhizobial mediation of Acacia adaptation to soil salinity: Evidence of underlying trade-offs and tests of expected patterns. Journal of Ecology, 2008, 96(4): 746-755.
[38]
Beauchamp V B, Stromberg J C, Stutz J C. Interactions between Tamarix ramosissima (saltcedar), Populus fremontii (cottonwood), and mycorrhizal fungi: Effects on seedling growth and plant species coexistence. Plant and Soil, 2005, 275(1): 221-231.
[39]
Jeffries P, Gianinazzi S, Perotto S, et al . The contribution of arbuscular mycorrhizal fungi in sustainable maintenance of plant health and soil fertility. Biology and Fertility of Soils, 2003, 37(1): 1-16.
[40]
Juniper S, Abbott L K. A change in the concentration of NaCl in soil alters the rate of hyphal extension of some arbuscular mycorrhizal fungi. Canadian Journal of Botany, 2004, 82(8): 1235-1242.
[41]
Smith F A, Smith S E. Multalism and parasitism: Diversity in function and structure in the arbuscular(VA) mycorrhizal symbiosis. Advances in Botanical Research, 1996, 22: 1-43.
[42]
Gai J P, Liu R J. Effects of soil factors on arbuscular mycorrhizae(AM) fungi around roots of wild plants. Chinese Journal of Applied Ecology, 2003, 14(3): 470-472.
[43]
Zhang Y, Guo L D, Liu R J. Diversity and ecology of arbuscular mycorrhizal fungi in Dujiangyan. Chinese Journal of Plant Ecology, 2003, 27(4): 537-544.
[44]
Peason J N, Simth S E, Smith F A. Effect of photon irradiance on the development and activity of VA mycorrhizal infection in Allium porrum . Mycological Research, 1991, 101(3): 1063-1071.
[45]
Carvalho L M, Correia P M, Caçador I, et al . Effects of salinity and flooding on the infectivity of salt marsh arbuscular mycorrhizal fungi in Aster tripolium L. Biology and Fertility of Soils, 2003, 38(3): 137-143.
[46]
Li X L, Feng G. Ecology and Physiology of VA Mycorrhizaes[M]. Beijing: Huawen Press, 2001.
[47]
Feng G, Li X L, Zhang F S, et al . Effect of phosphorus and arbuscular mycorrhizal fungus on response of maize plant to saline environment. Journal of Plant Resources and Environment, 2000, 9(2): 22-26.
[48]
Sheng M, Tang M, Chen H, et al . Influence of arbuscular mycorrhizae on the root system of maize plants under salt stress. Canadian Journal of Microbiology, 2009, 55(7): 879-886.