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Nitrogen cycling in leucaena (Leucaena leucocephala) alley cropping in semi-arid tropics

II. Response of maize growth to addition of nitrogen fertilizer and plant residues

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Abstract

In an alley cropping system, prunings from the hedgerow legume are expected to supply nitrogen (N) to the associated cereal. However, this may not be sufficient to achieve maximum crop yield. Three field experiments with alley-cropped maize were conducted in a semi-arid environment in northern Australia to determine: (1) the effect of N fertilizer on maize growth in the presence of fresh leucaena prunings; (2) the effect of incorporation of leucaena and maize residues on maize yield and the fate of plant residue15N in the alley cropping system; and (3) the15N recovery by maize from15N-labelled leucaena, maize residues and ammonium sulphate fertilizer.

Leucaena residues increased maize crop yield and N uptake although they did not entirely satisfy the N requirement of the alley crop. Additional N fertilizer further increased the maize yield and N uptake in the presence of leucaena residues. Placement of leucaena residues had little effect on the availability of N to maize plants over a 2 month period. The incorporation of leucaena residues in the soil did not increase the recovery of leucaena15N by maize compared with placement of the residues on the soil surface. After 2 months, similar proportions of the residue15N were recovered by maize from mulched leucaena (6.3%), incorporated leucaena (6.1%) and incorporated maize (7.6%). By the end of one cropping season (3 months after application) about 9% of the added15N was taken up by maize from either15N-labelled leucaena as mulch or15N-labelled maize residues applied together with unlabelled fresh leucaena prunings as mulch. The recovery of the added15N was much higher (42.7%) from the15N-labelled ammonium sulphate fertilizer at 40 kg N ha-1 in the presence of unlabelled leucaena prunings. Most of the added15N recovered in the 200 cm soil profile was distributed in the top 25 cm soil with little leached below that. About 27–41% of the leucaena15N was apparently lost, largely through denitrification from the soil and plant system, in one cropping season. This compared with 35% of the fertilizer15N lost when the N fertilizer was applied in the presence of prunings. ei]H Lambers

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References

  • Catchpoole D W and Blair G J 1990 Forage tree legume. II. Investigation of nitrogen transfer to an associated grass using a split root technique. Aust. J. Agric. Res. 41, 531–537.

    Google Scholar 

  • Cogle A L, Saffigna P G, Strong W M, Ladd J N and Amato M 1987 Wheat straw decomposition in subtropical Australia. I. A comparison of14C labelling and two weight-loss methods for measuring decomposition. Aust. J. Soil Res. 25, 473–479.

    Google Scholar 

  • D'Mello J P F and Fraser K W 1981 The composition of leaf meal fromLeucaena leucocephala. Trop. Sci. 23, 75–78.

    Google Scholar 

  • Ebelhar S A, Frye W W and Blevins R L 1984 Nitrogen from legume cover crops for no-till corn. Agron. J. 76, 51–55.

    Google Scholar 

  • Fox R H, Myers R J K and Vallis I 1990 The nitrogen mineralization rate of legume residues in soil as influenced by their polyphenol, lignin and nitrogen contents. Plant and Soil 129, 251–259.

    Google Scholar 

  • Gomez K A and Gomez A A 1984 Statistical Procedures for Agricultural Research. An International Rice Research Institute Book, pp 187–233. John Wiley, Brisbane, Australia.

    Google Scholar 

  • Guevarra A B 1976 Management ofLeucaena leucocephala (Lam.) de Wit for Maximum Yield and Nitrogen Contribution to Intercropped Corn. University of Hawaii, 126 p, Ph.D. thesis, Honolulu, HI.

  • Harris G H and Hesterman O B 1990 Quantifying the nitrogen contribution from alfalfa to soil and two succeeding crops using nitrogen-15. Agron. J. 82, 129–134.

    Google Scholar 

  • Hesterman O B, Russeulle M P, Sheaffer C C and Heichel G H 1987 Nitrogen utilization from fertilizer and legume residues in legume-corn rotations. Agron. J. 79, 726–731.

    Google Scholar 

  • Hetier J M, Sarmiento G, Aldana T, Zuvia M, Acevedo D and Thiery J M 1989 The fate of nitrogen under maize and pasture cultivated on an alfisol in the western Llanos savannas, Venezuela. Plant and Soil 114, 295–302.

    Google Scholar 

  • Holderbaum J F, Decker A M, Meisinger J J, Mulford F R and Vough L R 1990 Fall-seeded legume cover crops for no-tillage corn in the humid east. Agron. J. 82, 117–124.

    Google Scholar 

  • Janzen H H and McGinn S M 1991 Volatile loss of nitrogen during decomposition of legume green manure. Soil Biol. Biochem. 23, 291–297.

    Google Scholar 

  • Kang B T, Grimme H and Lawson T L 1985 Alley cropping sequentially cropped maize and cowpea with leucaena on a sandy soil in southern Nigeria. Plant and Soil 85, 267–277.

    Google Scholar 

  • Kang B T, Sipkens L, Wilson G F and Nangiu D 1981a Leucaena (Leucaena leucocephala (Lam) de Wit) prunings as nitrogen source for maize (Zea mays L.). Fert. Res. 2, 279–287.

    Google Scholar 

  • Kang B T, Wilson G F and Sipkens L 1981b Alley cropping maize (Zea mays L.) and leucaena (Leucaena leucocephala Lam) in southern Nigeria. Plant and Soil 63, 165–179.

    Google Scholar 

  • Ladd J N, Amato M, Jackson R B and Butler J H A 1983a Utilization by wheat crops of nitrogen from legume residues decomposing in soils in the field. Soil Biol. Biochem. 15, 231–238.

    Google Scholar 

  • Ladd J N, Amato M, Jackson R B and Butler J H A 1983b Utilization by wheat crops of nitrogen from legume residues decomposing in soils sown to wheat in the field. Soil Biol. Biochem. 15, 251–256.

    Google Scholar 

  • Martinez J and Guiraud G 1990 A lysimeter study of the effects of a ryegrass catch crop, during a winter wheat/maize rotation, on nitrate leaching and on the following crop. J. Soil Sci. 41, 5–16.

    Google Scholar 

  • Mittal S P and Singn P 1989 Intercropping field crops between rows ofLeucaena leucocephala under rainfed conditions in northern India. Agrofor. Syst. 8, 165–172.

    Google Scholar 

  • Mulongoy K and Van derMeersch M K 1988 Nitrogen contribution by leucaena (Leucaena leucocephala) prunings to maize in an alley cropping system. Biol. Fertil. Soils 6, 282–285.

    Google Scholar 

  • Myers R J K 1983 The effect of plant residues on plant uptake and leaching of soil and fertilizer nitrogen in a tropical red earth soil. Fertil. Res. 4, 249–260.

    Google Scholar 

  • Ofori F, Pate J S and Stern W R 1987 Evaluation of N2-fixation and nitrogen economy of a maize/cowpea intercrop system using15N dilution methods. Plant and Soil 102, 149–160.

    Google Scholar 

  • Osuntogum B A, Adewusi S R A, Telek L and Oke O L 1987 The effect of tanin content on the nutritive value of some leaf protein concentrates. Hum. Nutr., Food Sci. Nutr. 41F(1), 41–46.

    Google Scholar 

  • Palm C A and Sanchez P A 1991 Nitrogen release from the leaves of some tropical legumes as affected by their lignin and polyphenolic contents. Soil Biol. Biochem. 23, 83–88.

    Google Scholar 

  • Peterson T A and Varvel G E 1989 Crop yield as affected by rotation and nitrogen rate. III. Corn. Agron. J. 81, 735–738.

    Google Scholar 

  • Read M D 1982 Management Alternatives for Maize-bean and Leucaena-based Cropping Systems. Ph.D thesis, Colorado State University, Fort Collins.

  • Sanginga N, Mulongoy K and Ayanaba A 1988 Nitrogen contribution of leucaena/rhizobium symbiosis to soil and a subsequent maize crop. Plant and Soil 112, 137–141.

    Google Scholar 

  • Sisworo W H, Mitrosuhardjo M M, Rasjid H and Myers R J K 1990 The relative roles of N fixation, fertilizer, crop residues and soil in supplying N in multiple cropping systems in a humid tropical upland cropping system. Plant and Soil 121, 73–82.

    Google Scholar 

  • Vallis I 1983 Uptake by grass and transfer to soil of nitrogen from15N-labelled legume materials applied to Rhodes grass pasture. Aust. J. Agric. Res. 34, 367–376.

    Google Scholar 

  • Varco J J, Frye W W, Smith M S and MacKown C T 1989 Tillage effects of nitrogen recovery by corn from a nitrogen-15 labelled cover crop. Soil Sci. Soc. Am. J. 53, 822–827.

    Google Scholar 

  • Walters D T and Malzer G L 1990 Nitrogen management and nitrification inhibitor effects on nitrogen-15 urea. I. Yield and fertilizer use efficiency. Soil Sci. Soc. Am. J. 54, 115–122.

    Google Scholar 

  • Wetselaar R and Farquhar G D 1980 Nitrogen losses from tops of plants. Adv. Agron. 33, 263–302.

    Google Scholar 

  • White P J, Saffigna P G and Vallis I 1985 Effect of stubble management during different fallow periods on nitrogen nutrition of wheat on an irrigated black earth. Aust. J. Exp. Agric. 25, 869–877.

    Google Scholar 

  • White P J, Vallis I and Saffigna P G 1986 The effect of stubble management on the availability of15N-labelled residual fertilizer N and crop stubble N in an irrigated black earth. Aust. J. Exp. Agric. 26, 99–106.

    Google Scholar 

  • Xu Z H 1991 Nitrogen Cycling in Leucaena Alley Cropping. Ph.D. Thesis, Griffith University, Brisbane, Queensland, Australia.

  • Xu Z H, Saffigna P G, Myers R J K and Chapman A L 1993 Nitrogen cycling in leucaena (Leucaena leucocephala) alley cropping in semi-arid tropics. I. Mineralization of nitrogen from leucaena residues. Plant and Soil 148, 63–72.

    Google Scholar 

  • Zoysa A K N, Keerthisinghe G and Upasena S H 1990 Effect ofLeucaena leucocephala (Lam) de Wit. as a green manure on nitrogen uptake and yield of rice. Biol. Fertil. Soils 9, 68–70.

    Google Scholar 

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Xu, Z.H., Myers, R.J.K., Saffigna, P.G. et al. Nitrogen cycling in leucaena (Leucaena leucocephala) alley cropping in semi-arid tropics. Plant Soil 148, 73–82 (1993). https://doi.org/10.1007/BF02185386

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  • DOI: https://doi.org/10.1007/BF02185386

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