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Early nitrogen supply as an alternative management for a cover crop-maize sequence under a no-till system

Letusa Momesso; Carlos A. C. Crusciol; Rogério P. Soratto; Carlos A. C. Nascimento; Ciro A. Rosolem; Luiz G. Moretti; Eiko E. Kuramae; Heitor Cantarella
Nutrient Cycling in Agroecosystems · Vol. 121, Issue 1 · pp. 1-14 · 2021

Abstract

Optimizing agronomic efficiency (AE) of nitrogen (N) fertilizer use by crops and enhancing crop yields are challenges for tropical no-tillage systems since maintaining crop residues on the soil surface alters the nutrient supply to the system. Cover crops receiving N fertilizer can provide superior biomass, N cycling to the soil and plant residue mineralization. The aims of this study were to (i) investigate N application on forage cover crops or cover crop residues as a substitute for N sidedressing (conventional method) for maize and (ii) investigate the supply of mineral N in the soil and the rates of biomass decomposition and N release. The treatments comprised two species, i.e., palisade grass [ Urochloa brizantha (Hochst. Ex A. Rich.) R.D. Webster] and ruzigrass [ Urochloa ruziziensis (R. Germ. and C.M. Evrard) Crins], and four N applications: (i) control (no N application), (ii) on live cover crops 35 days before maize seeding (35 DBS), (iii) on cover crop residues 1 DBS, and (iv) conventional method (N sidedressing of maize). The maximum rates of biomass decomposition and N release were in palisade grass. The biomass of palisade grass and ruzigrass were 81 and 47% higher in N application at 35 DBS compared with control in ruzigrass (7 Mg ha −1 ), and N release followed the pattern observed of biomass in palisade and ruzigrass receiving N 35 DBS (249 and 189 kg N ha −1 ). Mineral N in the soil increased with N application regardless of cover crop species. Maize grain yields and AE were not affected when N was applied on palisade grass 35 DBS or 1 DBS (average 13 Mg ha −1 and 54 kg N kg −1 maize grain yield) compared to conventional method. However, N applied on ruzigrass 35 DBS decreased maize grain yields. Overall, N fertilizer can be applied on palisade grass 35 DBS or its residues 1 DBS as a substitute for conventional sidedressing application for maize.

Bibliographic Information

JournalNutrient Cycling in Agroecosystems
PublisherSpringer
Publication Date2021-09-01
Publication Year2021
Volume121
Issue1
Pages1-14
Document TypeJournal Article
Print ISSN1385-1314
eISSN1573-0867
DOI10.1007/s10705-021-10158-1

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NARA Access Coverage1980-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10705
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