Zhou W J, Zhang Y Z, Wang K R et al. Plant phosphorus uptake in a soybean-citrus intercropping system in the red soil hilly region of South China[J]. Pedosphere, 2009, 19(2): 244-250.
[3]
Johnson M W, Mau R F L. Effects of intercropping beans and onions on populations of Liriomyza spp. and associated parasitic hymenoptera[J]. Hawaiian Entomological Society, 1986, 27(15): 95-103.
[4]
Chen Y X, Zhang F S, Tang L et al. Wheat powdery mildew and foliar N concentrations as influenced by N fertilization and belowground interactions with intercropped faba bean[J]. Plant and Soil, 2007, 291: 1-13.
Zhou X G, Wu F Z . p-Coumaric acid influenced cucumber rhizosphere soil microbial communities and the growth of fusariumoxysporum f. sp. cucumerinum Owen[J]. PLoS ONE, 2012, 7(10): 1-11.
[15]
He Y, Ding N, Shi J C et al. Profiling of microbial PLFAs: Implications for interspecific interactions due to intercropping which increase phosphorus uptake in phosphorus limited acidic soils[J]. Soil Biology & Biochemistry, 2013, (57): 625-634.
Go' mez R O, Zavaleta M E, Gonza' lez H A et al. Allelopathy and microclimatic modification of intercropping with marigold on tomato early blight disease development[J]. Field Crops Research, 2003, 83: 27-34.
Liu Y, Mi G H, Chen F J et al. Rhizosphere effect and root growth of two maize (Zea mays L.) genotypes with contrasting P efficiency at low P availability[J]. Plant Science, 2004, 167: 217-223.
[35]
Zhu J M, Lynch J P. The contribution of lateral rooting to phosphorus acquisition efficiency in maize(Zea mays) seedlings[J]. Funct Plant Biol, 2004, 31: 949-958.
[36]
Lynch J P, Brown K M. Root strategies for phosphorus acquisition[A]. The Ecophysiology of Plant-Phosphorus Interactions[C]. New York: Springer, 2008. 83-116.
[37]
Ramaekers L, Remans R, Rao I M et al. Strategies for improving phosphorus acquisition efficiency of crop plants[J]. Field Crops Research, 2010, 117: 169-176.
Gardner W K, Boundy K A. The acquisition of phosphorus by Lupines albus L. Ⅳ. The effect of interplanting wheat and white lupine on the growth and mineral composition of the two species[J]. Plant and Soil, 1983, 70: 391-402.
Rengel Z, Graham R D, Pedler J F. Manganese nutrition and accumulation of phenolics and lignin as related to differential resistance of wheat genotypes to the take-all fungus[J]. Plant and Soil, 1993, 151: 255-263.