[1]李晓林,冯固.丛枝菌根生理生态[M].北京:华文出版社,2001. [2]小川真.作物と土をつなぐ共生微生物菌根の生态学[M].农文协,1987. [3]刘润进,李晓林.丛枝菌根及其应用[M].北京:科学出版社,2000. [4]SMITH S E,SMITH F A,JAKOBSEN I.Mycorrhizal fungi can dominate phosphate supply to plants irresoective of growth responses[J].Plant Physiology,2003,133:16-20. [5]POZO M J,CORDIER C,DUMAS-GAUDOT E,et al.Localized versus systemic effect of arbuscular mycorrhizal fungi on defence responses to Phytophthora infection in tomato plants[J].Journal of Experimental Botany,2002,53:525-534. [6]JONER E J,BRIONES R,LEYVAL C.Metal binding capacity of arbuscular mycorrhizal mycelium[J].Plant and Soil,2000,226:227-234. [7]魏胜利,王文全,王海.我国中西部地区甘草资源及其可持续利用的研究[J].中国中药杂志,2003,28(3):202-206. [8]刘长利,王文全,李帅英.干旱胁迫对甘草生长的影响[J].中国中药杂志,2004,29(10):931-933. [9]刘长利,王文全.外源钙对人工培育甘草药材中甘草酸积累的影响[J].中华中医药学刊,2009,27(11):2281-2283. [10]孙志蓉,翟明普,王文全.密度对甘草苗生长及甘草酸含量的影响[J].中国中药杂志,2007,32(21):2222-2226. [11]唐晓敏,王文全,杨全.NaCl处理对甘草生长、生理指标及药效成分含量的影响[J].吉林农业大学学报,2008,30(2):172-175. [12]赵婧,贺学礼.河北省安国市药用植物AM真菌资源和分布研究[J].河北农业大学学报,2010,33(1):39-44. [13]刘盛林,贺学礼.水分胁迫下AM真菌对甘草生长的影响[J].核农学报,2009,23(4):692-696. [14]GRAHAM J H,LINDERMAN R G.Development of external hyphen by different isolates of mycorrhizal Glomus spp.in relation to root colonization and growth of troyer citrige[J].New Phytol,1982,91:183-189. [15]任嘉红,张晓刚.VA菌根真菌提高沙棘抗旱性机理的研究[J].晋东南师范专科学校学报,2002,19(5):17-20.