BIELESKI R L. Phosphate Pools, Phosphate Transport, and Phosphate Availability[J]. Annual Review of Plant Physiology, 1973, 24(1): 225-252. doi: 10.1146/annurev.pp.24.060173.001301
SMITH S E, READ D J. Mycorrhizal Symbiosis[M]. Academic Press, 2010.
SMITH F W, RAE A L, HAWKESFORD MJ. Molecular Mechanisms of Phosphate and Sulphate Transport in Plants[J]. Biochimica et Biophysica Acta (BBA)-Biomembranes, 2000, 1465(1/2): 236-245.
PAO S S, PAULSEN I T, SAIER M H. Major Facilitator Superfamily[J]. Microbiology and Molecular Biology Reviews, 1998, 62(1): 1-34.
BUCHER M, RAUSCH C, DARAM P. Molecular and Biochemical Mechanisms of Phosphorus Uptake Into Plants[J]. Plant Nutr Soil Sci, 2001, 164(2): 209-217. doi: 10.1002/(ISSN)1522-2624
JAVOT H, PUMPLIN N, AND HARRISON M J. Phosphate in the Arbuscular Mycorrhizal Symbiosis: Transport Properties and Regulatory Roles[J]. Plant Cell Environ, 2007, 30(3): 310-322. doi: 10.1111/pce.2007.30.issue-3
MUDGE S R, RAE A L, DIATLOFF E, et al. Expression Analysis Suggests Novel Roles for Members of the Pht1 Family of Phosphate Transporters in Arabidopsis[J]. The Plant Journal, 2002, 31(3): 341-353. doi: 10.1046/j.1365-313X.2002.01356.x
PASZKOWSKI U, KROKEN S, ROUX C, et al. Rice Phosphate Transporters Include an Evolutionarily Divergent Gene Specifically Activated in Arbuscular Mycorrhizal Symbiosis[J]. Proceedings of the National Academy of Sciences, 2002, 99(20): 13324-13329. doi: 10.1073/pnas.202474599
NAGY R, KARANDASHOV V, CHAGUE V, et al. The Characterization of Novel Mycorrhiza-Specific Phosphate Transporters from Lycopersicon Esculentum and Solanum Tuberosum Uncovers Functional Redundancy in Symbiotic Phosphate Transport in Solanaceous Species[J]. The Plant Journal, 2005, 42(2): 236-250. doi: 10.1111/tpj.2005.42.issue-2
马琼, 黄建国, 蒋剑波.接种外生菌根真菌对马尾松幼苗生长的影响[J].福建林业科技, 2005, 32(2): 85-88.
KARANDASHOV V, BUCHER M. Symbiotic Phosphate Transport in Arbuscular Mycorrhizas[J]. Trends in Plant Science, 2005, 10(1): 22-29. doi: 10.1016/j.tplants.2004.12.003
NAGY R, DRISSNER D, AMRHEIN N, et al. Mycorrhizal Phosphate Uptake Pathway in Tomato is Phosphorus-Repressible and Transcriptionally Regulated[J]. New Phytologist, 2009, 181(4): 950-959. doi: 10.1111/j.1469-8137.2008.02721.x
HARRISON M J. Signaling in the Arbuscular Mycorrhizal Symbiosis[J]. Annu Rev Microbiol, 2005, 59(2): 19-42.
RAUSCH C, DARAM P, BRUNNER S, et al. A Phosphate Transporter Expressed in Arbuscule-Containing Cells in Potato[J]. Nature, 2001, 414(6862): 462-470. doi: 10.1038/35106601
XU G, CHAGUE V, MELAMED-BESSUDO C, et al. Functional Characterization of LePT4: a Phosphate Transporter in Tomato with Mycorrhiza-Enhanced Expression[J]. Journal of Experimental Botany, 2007, 58(10): 2491-2501. doi: 10.1093/jxb/erm096
杨存义, 刘灵, 沈宏, 等.植物Pht1家族磷转运子的分子生物学研究进展[J].分子植物育种, 2006, 4(2): 153-159.
AI P, SUN S, ZHAO J, et al. Two Rice Phosphate Transporters, OsPht1; 2 and OsPht1; 6 Have Different Functions and Kinetic Properties in Uptake and Translocation[J]. The Plant Journal, 2009, 57(5): 798-809. doi: 10.1111/tpj.2009.57.issue-5